Skip to main content
Log in

Vorarbeiten zur monographischen Darstellung von Wildpflanzensortimenten:Aegilops L.

Studies towards a monographic treatment of wild plant collections:Aegilops L.

Предварительные раб оты для монографичес кого описания коллекций д икорастущих сородичей культурны х растений:Aegilops L.

  • Published:
Die Kulturpflanze Aims and scope Submit manuscript

This is a preview of subscription content, log in via an institution to check access.

Access this article

Price excludes VAT (USA)
Tax calculation will be finalised during checkout.

Instant access to the full article PDF.

Literatur

  • Al-Mashhadani, A. N., A. S. Soliman andI. A. Al-Shehbaz, 1978: Karyotype analysis of some diploidAegilops species native to Iraq. -Caryologia31, 299–303.

    Google Scholar 

  • Alston, F. H., 1970: The addition of individual chromosomes ofAegilops squarrosa toTriticum durum. - Cytologia35, 402–408.

    Google Scholar 

  • Anioł, A., 1974: A serological investigation of wheat evolution. - Z. Pflanzenzüchtg.73, 194–203.

    Google Scholar 

  • —, 1976: Serological studies within the tribeTriticeae. VIII. Serological affinity between genera. - Genetica Polonica17, 523–529.

    Google Scholar 

  • Atashi-Rang, G. andK. A. Lucken, 1978: Variability, combining ability, and interrelationships of anther length, anther extrusion, glume tenacity, and shattering in spring wheat. - Crop Sci.18, 267–272.

    Article  Google Scholar 

  • Athwal, R. S. andG. Kimber, 1970: Anther size and pollen longevity in wheat/rye addition lines. - Wheat Inform. Serv., Kyoto,30, 30–32.

    Google Scholar 

  • Attia, T., T. Lelley andG. Röbbelen, 1977: Genotypic interaction for chiasma formation at low temperature in the hybrid betweenTriticum aestivum ‘Chinese Spring’ andAegilops speltoides deficient for chromosome 5 D.- Can. J. Gen. Cytol.19, 471–475.

    Google Scholar 

  • Avivi, L., 1976: Colchicine induced bivalent pairing of tetraploid microsporocytes inTriticum longissimum andT. speltoides. - Can. J. Genet. Cytol.18, 731–738.

    Google Scholar 

  • Ayla Sencer, H., 1978: The National Programme of Turkey. - Plant Genetic Resources Newsletter35, 2–4.

    Google Scholar 

  • Bally, W., 1912: Chromosomenzahlen beiTriticum undAegilops Arten. Ein cytologischer Beitrag zum Weizenproblem. - Ber. Deutsch. Bot. Ges.30, 163–172.

    Google Scholar 

  • Baraškova, Ė. A., E. N. Alekseeva iĖ. F. Migušova, 1977: Svjaz' morozostojkosti s genomnym sostavom pšenicy. - Genetika13, 1694–1700.

    Google Scholar 

  • Bartoš, P., 1979: Resistenzgenetik unter Berücksichtigung von Art- und Gattungskreuzung. - Arch. Zü chtungsforsch.9, 189–194.

    Google Scholar 

  • Baum, B. R., 1977: Taxonomy of the tribeTriticeae (Poaceae) using various numerical techniques. I. Historical perspectives, data accumulation, and character analysis. - Can. J. Bot.55, 1712–1740.

    Google Scholar 

  • —, 1978a: Taxonomy of the tribeTriticeae (Poaceae) using various numerical techniques. II. Classification. - Can. J. Bot.56, 27–56.

    Google Scholar 

  • —, 1978b: Taxonomy of the tribeTriticeae (Poaceae) using various numerical taxonomic techniques. III. Synoptic key to genera and synopses. - Can. J. Bot.56, 374–385.

    Google Scholar 

  • Belea, A. andO. Fejér, 1977: Recent data on the origin of wheat (Triticum L.). (Hungarian, Engl. summary). - Növénytermelés26, 213–221.

    Google Scholar 

  • —,O. Fejér ésG. Hadlaczky, 1974: SzintetikusAegilops ovata×Triticum turgidum ssp.carthlicum amphiploid genetikai vizsgálata. - Biológia, Budapest,22, 129–139.

    Google Scholar 

  • Berljand-Koževnikov, V. M. iV. F. Dorofeev, 1976: O vide i filogenetičeskich otnoš enijach v rodeTriticum L. - Trudy prikl. bot., gen. i sel.58 (2), 3–18.

    Google Scholar 

  • Bietz, J. A., K. W. Shepherd andJ. S. Wall, 1975: Single-kernel analysis of glutenin: use in wheat genetics and breeding. - Cereal Chemistry52, 513–532.

    CAS  Google Scholar 

  • Blackwell, W. H., 1976: Jointed goatgrass, a part of Ohio's flora? - Castanea41, 81–84.

    Google Scholar 

  • Bočev, B., 1975: Genetični i citogenetični proučvanija na trirodovi chibridi meždu predstaviteli naAegilops, Triticum iSecale. - Genetika i Selekcija8, 424–432.

    Google Scholar 

  • —, iV. Dončeva, 1976: Study on the inheritance of some physical and chemotechnologic grain characters inAegilops hybrids withTriticum and Secale. (Bulg., Engl. summary). - Genetika i Selekcija9, 432–438.

    Google Scholar 

  • —, iN. Peševski, 1978: Genetic and cytological studies on the character of the form developing process inAegilops L.×Triticum L. interspecies hybrids. (Bulg., Engl. summary). - Genetika i Selekcija11, 113–125.

    Google Scholar 

  • —, iL. Todorova, 1975: Genetic and cytologic investigations of triple intergeneric hybrids between representatives ofAegilops, Triticum andSecale. (Bulg., Engl. summary). - Genetika i Selekcija8, 424–432.

    Google Scholar 

  • Bodmer, H.. 1922: Über den Windpollen. - Natur und Technik3. Zitiert nachPohl (1937).

    Google Scholar 

  • Boguslavskij, R. L., 1978: Cvetenie vidov ėgilopsa v uslovijach južnogo Dagestana. - Bjull. VIR78, 10–12.

    Google Scholar 

  • Booth, T. A. andA. J. Richards, 1976: Studies inHordeum murinum aggregate. I. Morphology. - Bot. J. Linn. Soc.72, 149–159.

    Google Scholar 

  • Bor, N. L., 1968:Gramineae. - In: C. C.Townsend, E.Guest and A.Al-Rawi (eds.), Flora of Iraq9, 1–558.

  • Bowden, W. M., 1959: The taxonomy and nomenclature of the wheats, barleys, and ryes and their wild relatives. - Can. J. Bot.37, 657–684.

    Google Scholar 

  • Bozzini, A., P. Cantagalli, S. E. Piazzi andS. Sordi. 1970: An immunochemical approach to species relationship inTriticum and some related species. - Theor. Appl, Genet.40, 300–304.

    Google Scholar 

  • Breznev, D. D., 1975: Plant exploration in the USSR. - In: O. H.Frankel and J. G.Hawkes (eds.), Crop Genetic Resources for Today and Tomorrow, pp. 147–150. - Cambridge University Press.

  • Budin, K. Z., 1978: Vidovoj sostav kollekcii VIR i ego ispol'zovanie v selekcii. - Sel'skochoz. Biol.13, 678–682.

    Google Scholar 

  • Burtt, B. L., 1970: Infraspecific categories in flowering plants. - Biol. J. Linn. Soc.2, 233–238.

    Google Scholar 

  • Caldwell, K. A. andD. D. Kasarda, 1978: Assessment of genomic and species relationships inTriticum and Aegilops by PAGE and differential staining of seed albumins and globulins. - Theor. Appl. Genet.52, 273–280.

    CAS  Google Scholar 

  • Carpentier, E., J. M. Lemaire etB. Jouan, 1976: Comparaison de la réaction de différentes variétés de blé àSeptoria nodorum por une technique d'infiltation du parasite dans les feuilles.- Sci. Agron. Rennes 1976, 49–57.

    Google Scholar 

  • Cauderon, Y. andG. Ryan, 1974:Aegilops speltoides promotion of homologous pairing in oneTriticum aestivum×Agropyron intermedium derivative. - Wheat Inform. Serv., Kyoto,39, 1–5.

    Google Scholar 

  • Cetl, I., 1960: The size of pollen grain in the genusTriticum. - Biol. Plant. (Praha)2, 287–291.

    Google Scholar 

  • Chakimova, A. G., 1973: Analiz genoma D pšenicy iAe. squarrosa L. po gliadinam. - Avtoref. kand. dis., Vses. n.-i. in-t rasteniev., Leningrad.

    Google Scholar 

  • —, iI. P. Gavriljuk, 1973: Komponentnyj i antigennyj sostav gliadina raznych predstavitelejAe. squarrosa. - Trudy prikl. bot., gen. i sel.52 (1), 193–205.

    Google Scholar 

  • Chapman, V. andT. F. Miller, 1977: Haploidy in the genusAegilops. - Wheat Inform. Serv., Kyoto,44, 21–22.

    Google Scholar 

  • —,T. E. Miller andR. Riley, 1976: Equivalence of the A genome of bread wheat and that ofTriticum urartu. - Genet. Res.27, 69–76.

    Article  Google Scholar 

  • Chen, K., J. C. Gray andS. G. Wildman, 1975: Fraction I protein and the origin of polyploid wheats. - Science190, 1304–1306.

    CAS  Google Scholar 

  • Chennaveeraiah, M. S., 1960: Karyomorphologic and cytotaxonomic studies inAegilops. - Acta Horti Gotoburg.23, 85–177.

    Google Scholar 

  • Childe, V. G., 1951: Man Makes Himself. - Mentor, New York.

  • Chueca, M.-C. etY. Cauderon, 1977: Introduction d'appariements homologues entre les chromosomes du blé tendre et un télosome d'Agropyron intermedium par croisement avec desAegilops. - Ann. Amélior. Plantes27, 135–150.

    Google Scholar 

  • —,Y. Cauderon etJ. Tempé, 1977: Technique d'obtention d'hybrides Blé tendre×Aegilops par culturein vitro d'embryons immatures. - Ann. Amélior. Plantes27, 539–547.

    Google Scholar 

  • Coucoli, H. D. andE. A. Skorda, 1966: Further evidence of the karyotype ofTriticum monococcum L. andTriticum durumDesf. - Can. J. Genet. Cytol.8, 102–110.

    Google Scholar 

  • —,E. Skorda andC. Papoglou, 1975: Variation of chiasma formation in populations ofAegilops speltoides. - Cytologia40, 599–606.

    Google Scholar 

  • Cruden, R. W., 1977: Pollen-ovule ratios: a conservative indicator of breeding systems in flowering plants. - Evolution31, 32–46.

    Google Scholar 

  • Cvelev, N. N., 1971: Notae de Gramineis Florae URSS 6. - Novosti sist. vysš. rast.8, 57–83 (N).

    Google Scholar 

  • —, 1973: Conspectus specierum tribusTriticeae Dum. familiae Poaceae in flora URSS. - Novosti sist. vysš. rast.10, 19–59 (N).

    Google Scholar 

  • —, 1976: Zlaki SSSR. - „Nauka“, Leningrad (N).

    Google Scholar 

  • Cvelev, N. N., 1977: O nekotorych adventivnych rastenijach Leningradskoj oblasti. - Novosti sist. vysš. rast.13, 32–42.

    Google Scholar 

  • Danert, S., 1958: Zur Systematik vonPapaver somniferum L. - Kulturpflanze6, 61–88.

    Google Scholar 

  • —, 1961: Zur Systematik vonNicotiana tabacum L. - Kulturpflanze9, 287–363.

    Google Scholar 

  • Davis, P. H., 1978: The moving staircase: a discussion on taxonomic rank and affinity. - Notes Royal Bot. Gard. Edinburgh36, 325–340.

    Google Scholar 

  • Delibes, A. and F.Garcia-Olmedo, 1973: Biochemical evidence of gene transfer from the Mv genome ofAegilops ventricosa to hexaploid wheat. - Proc. 4th Int. Wheat Gen. Symp., Columbia (Mo.), pp. 161–166.

  • Dennell, R. W., 1973: The phylogenesis ofTriticum dicoccum — a reconsideration. - Econ. Bot.27, 329–331.

    Google Scholar 

  • Dhaliwal, H. S., 1977a.: Basis of difference between reciprocal crosses involvingTriticum boeticum andT. urartu. - Theor. Appl. Genet.49, 283–286.

    Google Scholar 

  • —, 1977b: Origin ofTriticum monococcum L. - Wheat Inform. Serv., Kyoto,44, 14–17.

    Google Scholar 

  • —, 1977c: Genetic control of seed proteins in wheat. - Theor. Appl. Genet.50, 235–239.

    CAS  Google Scholar 

  • —, 1977d: Genetic variability and improvement of seed proteins in wheat. - Theor. Appl. Genet.51, 71–79.

    CAS  Google Scholar 

  • — andB. L. Johnson, 1976: Anther morphology and the origin of the tetraploid wheats. - Amer. J. Bot.63, 363–368.

    Google Scholar 

  • Dorofeev, V. F., 1979: Otdalennaja gibridizacija i poliploidija v ėvoljucii i selekcii pšenicy. - Sel'skochoz. biol.14, 285–296.

    Google Scholar 

  • — iĖ. F. Migušova, 1966: Botaničeskoe raznoobrazie ė gilopsov (Aegilops L.) Zakavkaz'ja. - Trudy prikl. bot., gen. i sel.38, 152–158.

    Google Scholar 

  • — i —, 1971:Aegilops umbellulata v Zakavkaz'e. - Bjull. VIR19, 3–7.

    Google Scholar 

  • —, — iĖ. M. Berštejn, 1969: Botaničeskij sostav ėgilopsov Kavkaza v sborach ėkspedicij VIR. - Trudy prikl. bot., gen. i sel.40, 118–125.

    Google Scholar 

  • Dosba, F. etY. Cauderon, 1973: Analyse statistique du caryotype d'Aegilops ventricosaTausch. - Ann. Amélior. Plantes23, 133–143.

    Google Scholar 

  • — etG. Doussinault, 1978: Création de lignées de Blé présentant les caractéristiques agronomiques favorables d'Aegilops ventricosa. - Ann. Amélior. Plantes28, 27–44.

    Google Scholar 

  • Doussinault, G. andF. Dosba, 1977: An investigation into increasing the variability for resistance to eyespot in wheat. - Z. Pflanzenzüchtg.79, 122–133.

    Google Scholar 

  • -, I.Janier, F.Dosba and F.Bourgeois, 1978: Monosomic analysis of resistance to eyespot of the variety ‘Roazon’. - Proc. 5 Int. Wheat Gen. Symp., pp. 34–35. - New Delhi.

  • Dover, G. A., 1975: The heterogeneity of B-chromosome DNA: no evidence for a B-chromosome specific repetitive DNA correlated with B-chromosome effects on meiotic pairing in theTriticinae. - Chromosoma33, 153–173.

    Google Scholar 

  • — andR. Riley, 1972a: Variation at two loci affecting homoeologous meiotic pairing inTriticum aestivum×Aegilops mutica hybrids. - Nature New Biology235, 61–62.

    PubMed  CAS  Google Scholar 

  • —, —, 1972b: Prevention of pairing of homoeologous meiotic chromosomes of wheat by an activity of supernumerary chromosomes ofAegilops. - Nature240, 159–161.

    PubMed  Google Scholar 

  • D'Souza, L., 1970: Untersuchungen über die Eignung des Weizens als Pollenspender, verglichen mit Roggen,Triticale undSecalotricum. - Z. Pflanzenzüchtg.63, 246–269.

    Google Scholar 

  • —, 1972: A comparative study of size and receptivity of the stigma in wheat, rye,Secale andSecalotricum. - Z. Pflanzenzüchtg.68, 73–82.

    Google Scholar 

  • Dvořák, J., 1972: Genetic variability inAegilops speltoides affecting homoeologous pairing in wheat. - Can. J. Genet. Cytol.14, 371–380.

    Google Scholar 

  • —, 1976: The relationship between the genome ofTriticum urartu and the A and B genomes ofTriticum aestivum. - Can. J. Genet. Cytol.18, 371–377.

    Google Scholar 

  • —, 1977: Transfer of leaf rust resistance fromAegilops speltoides toTriticum aestivum.- Can. J. Genet. Cytol.19, 133–141.

    Google Scholar 

  • Dyck, P. L. andE. Kerber, 1970: Inheritance in hexaploid wheat of adult-plant leaf rust resistance derived fromAe. squarrosa. - Can. J. Genet. Cytol.12, 175–180.

    Google Scholar 

  • Eig, A., 1929: Monographisch-kritische Übersicht der GattungAegilops. - Repert. spec. nov. reg. veg., Beih.55, 1–228.

    Google Scholar 

  • —, 1936:Aegilops. - In:E. Hannig undH. Winkler (Hrsg.), Die Pflanzenareale, 4. Reihe, Heft 4, pp. 43–50. - Fischer, Jena.

    Google Scholar 

  • Ekingen, H. R., T. Attia andG. Röbbelen, 1977: Suppressor of homoeologous pairing in diploidAegilops squarrosa. - Z. Pflanzenzüchtg.79, 72–73.

    Google Scholar 

  • Endo, T. R. andK. Tsunewaki, 1975a: Sterility of common wheat withAegilops triuncialis cytoplasm. - J. Hered.66, 13–18.

    Google Scholar 

  • —, —, 1975b: Genetic diversity of the cytoplasm inTriticum andAegilops. I. On the origin of the cytoplasm ofAegilops triuncialis L. - Seiken Zihô25/26, 55–66.

    Google Scholar 

  • Faegri, K. andL. van der Pijl, 1971: The Principles of Pollination Ecology, 2nd revised edition. - Pergamon Press, Oxford.

    Google Scholar 

  • Fejér, O., G. Hadlaczky andA. Belea, 1976: Electrophoretic isoencyme studies on theAegilops ovata×Triticum turgidum ssp.carthlicum amphiploid. - Acta Agron. Acad. Sci. Hung.25, 445–448.

    Google Scholar 

  • Feldman, M., 1965a: Further evidence for natural hybridization between tetraploid species ofAegilops sectionPleionathera. - Evolution19, 162–174.

    Google Scholar 

  • —, 1965b: Fertility of interspecific F1 hybrids and hybrid derivatives involving tetraploid species ofAegilops sectionPleionathera. - Evolution19, 556–562.

    Google Scholar 

  • —, 1965c: Chromosome pairing between differential genomes in hybrids of tetraploidAegilops species. - Evolution19, 563–568.

    Google Scholar 

  • —, 1976: Wheats. - In:N. W. Simmonds (ed.), Evolution of Crop Plants, pp. 120–128. - Longman, London and New York.

    Google Scholar 

  • —, 1977a: Newevidence on the origin of genome B ofTriticum. - Can. J. Genet. Cytol.19, 572.

    Google Scholar 

  • —, 1977b: Historical aspects and significance of the discovery of wild wheats. - Stadler Symp., Vol.9, 121–145. - Univ. Missouri, Columbia.

    Google Scholar 

  • -, 1978a: New evidence on the origin of the B genome of wheat. - Proc. 5th Intern. Wheat Genetics Symp. - New Delhi.

  • -, 1978b: Genetic resources of wild wheats and their use in breeding. - Proc. of the Israeli-Italian Joint Meeting on Genetics and Breeding of Crop Plants. - Rome.

  • — andM. Kislev, 1977:Aegilops searsii, a new species of sectionSitopsis (Platystachys). - Israel J. Bot.26, 190–201 (N).

    Google Scholar 

  • —, —, 1978:Aegilops searsii, a new species from Israel and Jordan. - Wheat Inform. Serv., Kyoto,45/46, 39–40.

    Google Scholar 

  • Fowler, D. B., J. Dvorak andL. V. Gusta, 1977: Comparative cold hardiness of severalTriticum species andSecale cereale. - Crop Sci.17, 941–943.

    Article  Google Scholar 

  • Franckowiak, J. D., S. S. Maan andN. D. Williams, 1976: A proposal for hybrid wheat utilizingAegilops squarrosa cytoplasm. - Crop Sci.16, 725–728.

    Article  Google Scholar 

  • Frankel, O. H., 1977: Genetic resources. - Annals of the New York Academy of Sciences287, 332–344.

    Google Scholar 

  • — andE. Bennett, 1970: Genetic resources. - In:O. H. Frankel andE. Bennett (eds.), Genetic Resources in Plants — Their Exploration and Conservation, pp. 7–17. - Blackwell Scientific Publications, Oxford and Edinburgh.

    Google Scholar 

  • - and J. G.Hawkes, 1975: Genetic resources — the past ten years and the next. - In: O. H.Frankel and J. G.Hawkes (eds.), Crop Genetic Resources for Today and Tomorrow. - Cambridge University Press.

  • Fritsch, R., 1977a: Über die Anatomie der Wurzeln vonTriticum L. andAegilops L. - Flora166, 289–326.

    Google Scholar 

  • —, 1977b: Über morphologische Wurzelmerkmale beiTriticum L. undAegilops L. (Gramineae). - Kulturpflanze25, 45–70.

    Google Scholar 

  • Fritsch, R., J. Kruse, H. Ohle undH. I. Schäfer, 1977: Vergleichend-anatomische Untersuchungen im Verwandtschaftskreis vonTriticum L. undAegilops L. (Gramineae). - Kulturpflanze25, 155–265.

    Google Scholar 

  • Fukasawa, H., 1958: Results of genome exchange amongAegilops andTriticum species through successive backcrosses.-Wheat Inform. Serv., Kyoto,7, 24.

    Google Scholar 

  • Fursov, V. I. and Ž. I.Kambarova, 1975: The inheritance of characters of the parent forms inTriticum-Aegilops hybrids. (Russ., Engl. summary). - Genetika i selekcija rast. i životn. v Kazachstane, 18–23.

  • Furuta, Y., 1975a: Quantitative variation of nuclear DNA in genusAegilops. - Jap. J. Genetics50, 383–392.

    Google Scholar 

  • —, 1975b: Origin and differentiation of tetraploid species in the sectionPolyeides of the genusAegilops. III. Cytological variation inAe. ovata. (Jap., Engl. summary). - Jap. J. Genetics50, 458.

    Google Scholar 

  • —,N. Kozo andK. Terno, 1977: Quantitative comparison of the nuclear DNA in sectionSilopsis of the genusAegilops. - Jap. J. Genetics52, 107–116.

    Google Scholar 

  • —,K. Nishikawa andT. Kimizuka, 1977: Quantitative comparison of nuclear DNA in sectionSilopsis of the genusAegilops. - Jap. J. Genetics52, 107–115.

    Google Scholar 

  • —, — andT. Makino, 1975: Intraspecific variation of nuclear DNA content inAegilops squarrosa L. - Jap. J. Genetics50, 257–263.

    Google Scholar 

  • Gabrowska, M., 1979: Morphologische und cytologische Untersuchungen an Vertretern der GattungAegilops und ihren F1-Bastarden mit verschiedenen Saatweizensorten. - Diss., Univ. Martin Luther, Halle-Wittenberg.

    Google Scholar 

  • Gandiljan, P. A., 1972: Materialy po izučeniju vidov rodaAegilops i ėgilopso-pšeničnych gibridov v Armjanskoj SSR. - Vtoroj s-ezd vsesojuzn. obšč. gen. i sel., Vystavka III, Selekcija i semenovodstvo sel'skochozjajstvennych rastenij na geneticeskich osnovach, vyp. 1, pp. 44–45. - „Nauka“, Moskva.

    Google Scholar 

  • —, 1973a: Dve novye nachodki iz flory Armjanskoj SSR. - Biol. Žur. Armenii26, 89–92 (N).

    Google Scholar 

  • —, 1973b: Kolosovye kul'tury i ich dikorastuščie sorodiči Armjanskoj SSR. - Avtoreferat dissertacii, Erevan.

    Google Scholar 

  • —, 1975:Aegilops mutica Boiss. v Armenii. - Trudy prikl. bot., gen. i sel.54, 245–246 (N).

    Google Scholar 

  • —, 1978: K sistematike rodaAegilops L. i opredelitel' ego vidov. - Biol. Žur. Armenii31, 223–232.

    Google Scholar 

  • Garfield, E., 1978: Essays of an Information Scientist, vol.1, 2. - ISI Press, Philadelphia.

    Google Scholar 

  • Gendel's, T. V., 1976: Anatomičeskoe stroenie listaAegilops muticaBoiss. (Poaceae) v svjazi s sistematičeskim položeniem ėtogo vida. - Bot. Žur.61, 1425–1427.

    Google Scholar 

  • Gerechter-Amitai, Z. K. andW. Q. Loegering, 1974:Aegilops as a source of genes for low reaction toPuccinia graminis tritici. - Proc. Amer. Phytopathol. Soc.1, 126.

    Google Scholar 

  • Giorgi, D. andA. Bozzini, 1969: Karyotype analysis inTriticum: 1. Analysis ofTriticum turgidum (L.)Thell. and some related tetraploid wheats. - Caryologia22, 249–259.

    Google Scholar 

  • Godron, D. A., 1854: De la fécondation naturelle et artificielle desAegilops par leTriticum. - Ann. Sc. Nat., Bot. ser.4, 2, 215–222.

    Google Scholar 

  • Gol'denberg, Z. V., 1975: Content of total nitrogen and protein in some representatives of the tribeHordeeaeBent. (Russ., Engl. summary). - Bull. Acad. Sci. Georg. SSR78, 462–472.

    Google Scholar 

  • Gorastev, H. undK. Hammer, 1978: Standortbedingte Unterschiede bei bestäubungsökologischen Merkmalen von Wintergersten (Hordeum vulgare L. s. l.). - Kulturpflanze26, 283–292.

    Google Scholar 

  • Gorgidze, A. D., 1977: Filogenetika gruzinskich ėndemičnych pšenic. - „Mecniereba“, Tbilisi.

    Google Scholar 

  • Gottschalk, W., 1976: Die Bedeutung der Polyploidie für die Evolution der Pflanzen. - Gustav Fischer, Stuttgart.

    Google Scholar 

  • Grant, V., 1971: Plant Speciation. - Columbia University Press, New York and London.

    Google Scholar 

  • —, 1976: Artbildung bei Pflanzen. - Paul Parey, Berlin und Hamburg.

    Google Scholar 

  • Gregory, P. H., 1973: The Microbiology of the Atmosphere, 2nd ed. - Wiley, New York.

    Google Scholar 

  • Grenier, C. et D. A.Godron, 1856: Flore de France, vol.3. - Paris.

  • Greuter, W., 1976: The flora of Psara (E. Aegean Islands, Greece) - an annotaded catalogue. - Candollea31, 191–242 (N).

    Google Scholar 

  • - und K. H.Rechinger, 1967: Flora der Insel Kythera. - Boissiera 13, 206 pp. (N).

  • Grigor'ev, Ju. S. iL. E. Pauzner, 1963: Materialy po ėkologii vidovAegilops L. - Bot. Žur.48, 640–660.

    Google Scholar 

  • Groenewegen, L. J. M., 1977: Multilines as a tool in breeding for reliable yields. - Cereal Research Communications5, 125–132.

    Google Scholar 

  • Hammer, K., 1975: Die Variabilität einiger Komponenten der Allogamieneigung bei der Kulturgerste (Hordeum vulgare L. s. l.). Kulturpflanze23, 167–180.

    Google Scholar 

  • —, 1976a: Zur Allogamieneigung der Kulturgerste (Hordeum vulgare L.). - Tag.-Ber., Akad. Landwirtsch.-Wiss. DDR143, 221–226.

    Google Scholar 

  • —, 1976b: Vorschlag für einen Index der Allogamieneigung bei der Kulturgerste (Hordeum vulgare L. s. l.). - Kulturpflanze24, 213–220.

    Google Scholar 

  • —, 1977: Fragen der Eignung des Pollens der Kulturgerste (Hordeum vulgare L. s. l.) für die Windbestäubung. - Kulturpflanze25, 13–23.

    Google Scholar 

  • —, 1978a: Entwicklungstendenzen blütenbiologischer Merkmale beiPlantago. - Flora167, 41–56.

    Google Scholar 

  • —, 1978b: Blütenökologische Merkmale und Reproduktionssystem vonAegilops tauschii Coss. - Kulturpflanze26, 271–282.

    Google Scholar 

  • —, 1980: Zur Taxonomie und Nomenklatur der GattungAegilops L. - Feddes Rep.91, 225–258.

    Article  Google Scholar 

  • — undH. Knüpffer, 1979: Eine Methode zur Abgrenzung infraspezifischer Sippen anhand quantitativer blütenökologischer Merkmale beiAegilops tauschii Coss. - Feddes Rep.90, 179–188.

    Article  Google Scholar 

  • Hanelt, P., 1973: Merkmalsvariabilität beiVicia faba L. I. Künstliche morphologische Systeme bei Kulturpflanzenarten. - Kulturpflanze21, 55–60.

    Google Scholar 

  • Harlan, J. R., 1975: Crops and Man. - American Society of Agronomy and Crop Science Society of America, Madison, Wisconsin.

    Google Scholar 

  • —, 1976: Genetic resources in wild relatives of crops. - Crop Sci.16, 329–333.

    Article  Google Scholar 

  • — andD. Zohary, 1966: Distribution of wild wheats and barley. - Science153, 1074–1180.

    PubMed  CAS  Google Scholar 

  • Hawkes, J. G., 1977: The importance of wild germplasm in plant breeding. - Euphytica26, 615–621.

    Google Scholar 

  • Helbaek, H., 1960: Cereals and weed grasses in phase A. Appendix 2. - Excavations in the plain of Antioch 1. - Univ. Chicago Press, Chicago.

    Google Scholar 

  • Heywood, V. H. (compiler), 1964: List of botanic gardens offering seed of spontaneous plants. - Taxon13, 137–142.

    Google Scholar 

  • —, 1966: How many taxonomies? - Review Roum. Biol., Bot.11, 101–106.

    Google Scholar 

  • Hillel, J., M. W. Feldman andG. Simchen, 1973: Mating systems and population structure in two closely related species of the wheat group. 1. Variation between and within populations. - Heredity30, 141–167.

    Google Scholar 

  • Hiratsuka, N., 1959: Susceptibility of various strains or varieties ofAegilops squarrosa to yellow rust (Puccinia striiformis), brown rust (P. recondita f. sp.tritici) and black rust (P. graminis f. sp.tritici). - Wheat Inform. Serv., Kyoto,9/10, 34–41.

    Google Scholar 

  • Hyland, H. L., 1975: Recent plant exploration in the USA. - In: O. H.Frankel and J. G.Hawkes (eds.), Crop Genetic Resources for Today and Tomorrow, pp. 139–146. - Cambridge Univ. Press.

  • Ilicevici, St. şiE. Baniţă, 1977: Contributioni la ameliorarea rezistentei la malura a griului. - Probleme de Genetică Teoretică şi aplicată9, 81–93.

    Google Scholar 

  • Jaaska, V. E., 1971: Phylogenetic differentiation of tetraploid wheats. - Eesti NSV Teaduste Akadeemia Toimetised20, 200–205.

    Google Scholar 

  • —, 1974: The origin of tetraploid wheats on the basis of electrophoretic studies of enzymes. (Russ., Engl. summary). - Eesti NSV Teaduste Akadeemia Toimetised23, 201–220.

    CAS  Google Scholar 

  • —, 1976a: Aspartate aminotransferase isoenzymes in the polyploid wheats and their diploid relatives. On the origin of tetraploid wheats. - Biochem. Physiol. Pflanzen170, 159–171.

    CAS  Google Scholar 

  • —, 1976b: Alkogol'degidrogenaza poliploidnych pšenic i ich diploidnych sorodičej. K filogenezu tetraploidnoj pšenicy. - Genetika12, 22–28.

    CAS  Google Scholar 

  • —, 1978a: Electrophoretic study of acid phosphatase isoenzymes in the grass genusAegilops L. - Biochem. Physiol. Pflanzen172, 133–153.

    CAS  Google Scholar 

  • —, 1978b: NADP-dependent aromatic alcohol dehydrogenase in polyploid wheats and their diploid relatives. On the origin and phylogeny of polyploid wheats. - Theor. Appl. Genet.53, 209–217.

    CAS  Google Scholar 

  • Jackson, R., 1976: Evolution and systematic significance of polyploidy. - Ann. Rev. Ecol. Syst.7, 209–234.

    Google Scholar 

  • Jamaleev, A. M., 1974: Ustojčivost' vidov pšenicy i ėgilopsov s raznym genomnym sosta-vom k rasam pyl'noj golovni. - Avtoreferat kand. dis. - VIR, Leningrad.

    Google Scholar 

  • Janeva, Ju. N. iA. S. Antonov, 1976: Nukleotidnyj sostav DNK vidov rodovTriticum L. iAegilops L.- Biol. Nauki19, 16–19.

    Google Scholar 

  • — i —, 1977: Izučenie stepeni podobija frakcij povtorjajuš čichsja posledovatel'nostej DNK vidov rodovTriticum L. iAegilops L. metodom molekularnoj gibridizacii. - Genetika13, 578–582.

    Google Scholar 

  • Janković, M. iM. Kuburović, 1975: Neke osobineAegilops brsta. - Poljoprivreda, Beograd22, 39–44.

    Google Scholar 

  • Jenkins, J. A., 1929: Chromosome homologies in wheat andAegilops. - Amer. J. Bot.16, 238–245.

    Google Scholar 

  • Johnson, B. L., 1967: Confirmation of the genome donors ofAegilops cylindrica. - Nature216, 859–862.

    Google Scholar 

  • —, 1972a: Seed protein profiles and the origin of the hexaploid wheats. - Amer. J. Bot.59, 952–960.

    CAS  Google Scholar 

  • —, 1972b: Protein electrophoretic profiles and the origin of the B genome of wheat. - Proc. Nat. Acad. Sci. U.S.A.69, 1398–1402.

    CAS  Google Scholar 

  • -, 1973: Seed protein patterns and the gene resources of wheat. - Proc. Symp. Genet. Breed. durum wheat, pp. 153–164. - Bari.

  • —, 1975: Identification of the apparent B-genome donor of wheat. - Can. J. Genet. Cytol.17, 21–39.

    Google Scholar 

  • —,D. Barnhart andO. Hall, 1967: Analysis of genome and species relationships in the polyploid wheats by protein electrophoresis. - Amer. J. Bot.54, 1089–1098.

    CAS  Google Scholar 

  • — andH. S. Dhaliwal, 1978:Triticum urartu and genome evolution in the tetraploid wheats. - Amer. J. Bot.65, 907–918.

    Google Scholar 

  • — andO. Hall, 1966: Electrophoretic studies of species relationships inTriticum. - Acta Agric. Scand.16, 222–224.

    Google Scholar 

  • — andJ. G. Waines, 1977: Use of wild-wheat resources. - California Agriculture31 (9) 8–9.

    Google Scholar 

  • Jokova, M., E. Kondeva iR. Kostova, 1977: Biochimični izsledovanija na chibridi mežduAegilops crassaBoiss. iTriticum aestivum L. - Genetika i selekcija10(2) 91–98.

    Google Scholar 

  • Joppa, L. R., F. H. McNeal andM. A. Berg, 1968: Pollen production of hard red spring (Triticum aestivum L. em.Thell.) anddurum (T. durumDesf.) wheats. - Crop Sci8, 487–490.

    Article  Google Scholar 

  • Jošt, M., M. Glatki-Jošt andJ. Milonić, 1976: Variability in anther extrusion and pollen production of 51 different wheat cultivars or lines:Triticum aestivum L. - Poljopr. znan. smotra38 (48) 113–121.

    Google Scholar 

  • Joudrier, P. etM. Bernard, 1977: Responsabilité de génome D sur certaines isozymes ß-amylase du grain de blé tendre. - Ann. Amélior. Plantes27, 35–47.

    CAS  Google Scholar 

  • Kaltsikes, P. J. andW. Dedio, 1970a: A thin-layer Chromatographic study of the phenolics of the genusAegilops. 1. Numerical chemotaxonomy of diploid species. - Can. J. Bot.48, 1775–1780.

    Article  CAS  Google Scholar 

  • —, —, 1970b: A thin-layer Chromatographic study of the phenolics of the genusAegilops. II. Numerical chemotaxonomy of the polyploid species. - Can. J. Bot.48, 1781–1786.

    CAS  Google Scholar 

  • Karataglis, S. S., 1975a: Karyotype analysis on some diploid native greekAegilops species. - Caryologia18, 99–110.

    Google Scholar 

  • —, 1975b: Inter- and intraspecific relationship between two native greek diploidAegilops species by esterase electrophoresis. - Biochem. Physiol. Pflanzen167, 389–398.

    Google Scholar 

  • Kaschiri, M., 1974: Kreuzungsexperimente zwischen Weizen der Emmerreihe undAegilopsformen derSitopsis-Gruppe sowie cytogenetische Analyse triploider AEm, BEm, BSit-Bastarde. - Z. Pflanzenzüchtg.73, 217–232.

    Google Scholar 

  • —, 1975a: Significance of wheat-Aegilops crosses for the improvement of cultivated wheat. - Wheat Inform. Serv., Kyoto,40, 22–24.

    Google Scholar 

  • —, 1975b: Herstellung und Cytogenetik von „autoalloploiden“ Weizenformen der Genom-konstitution AEmAEmBEmBsitBsit. II. Ein weiterer Beitrag zur Phylogenie des Weizens. - Z. Pflanzenzüchtg.74, 143–161.

    Google Scholar 

  • Kerber, E. andP. L. Dyck, 1969: Inheritance in hexaploid wheat of leaf rust resistance and other characters derived fromAe. squarrosa. - Can. J. Genet. Cytol.11, 639–647.

    Google Scholar 

  • Kernick, M. D., 1961: Seed production of specific crops. - In: Agricultural and Horticultural Seeds, pp. 181–547. - FAO Agricultural Studies No. 55 - zitiert nach D. A.Levin and H. W.Kerster (1974).

    Google Scholar 

  • Kerr, Th., 1951: Transference of lint length and strength into upland cotton. - Proc. 3rd Cotton Impr. Conf. - Memphis, Tennessee.

  • Khush, G. S. andK. C. Ling, 1974: Inheritance of resistance in grassy stunt virus and its vector in rice. - J. Hered.65, 134–136.

    Google Scholar 

  • Kiem, J., 1978: Über die Verbreitung mediterraner, submediterraner und thermophiler Gräser im Etsch- und Eisacktal sowie im Gardaseegebiet. - Ber. Bayer. Bot. Ges.49, 5–30.

    Google Scholar 

  • Kihara, H., 1919: Über cytologische Studien bei einigen Getreidearten. I. Species-Bastarde des Weizens und Weizenroggen-Bastarde. - Bot. Mag., Tokyo,33, 17–38.

    Google Scholar 

  • —, 1924: Cytologische und genetische Studien bei wichtigen Getreidearten mit besonderer Rücksicht auf das Verhalten der Chromosomen und die Sterilität in den Bastarden. - Mem. Coll. Sci. Kyoto Imp. Univ. Ser. B.1, 1–200.

    Google Scholar 

  • —, 1929: Conjugation of homologous chromosomes in the genus hybridsTriticum×Aegilops and species hybrids ofAegilops. - Cytologia1, 1–15.

    Google Scholar 

  • —, 1937: Genomanalyse beiTriticum undAegilops. VII. Kurze Übersicht über die Ergebnisse der Jahre 1934–36. - Mem. Coll. Agric., Kyoto Imp. Univ.41, 1–61.

    Google Scholar 

  • —, 1940: Verwandtschaft derAegilops-Arten im Lichte der Genomanalyse. - Züchter12, 49–62.

    Google Scholar 

  • —, 1944: Die Entdeckung der DD-Analysatoren beim Weizen. - Agric. Hort. (Tokyo)19, 889–890.

    Google Scholar 

  • —, 1954: Considerations on the evolution and distribution ofAegilops species based on the analyser method.- Cytologia19, 336–357.

    Google Scholar 

  • -, 1959: Fertility and morphological variation in the substitution and restoration backcrosses of the hybridsTriticum vulgare×Aegilops caudata. - Proc. 10th Int. Genet. Congr., pp. 142–171. - Montreal.

  • Kihara, H., 1963: Interspecific relationship inTriticum andAegilops. - Seiken Zihô15, 1–12.

    Google Scholar 

  • —, 1965: The origin of wheat in the light of comparative genetics. - Jap. J. Genet.40, 45–54.

    Google Scholar 

  • —, 1966a: Factors affecting the evolution of common wheat. - Indian J. Genet.26 A, 14–28.

    Google Scholar 

  • —, 1966b: Nucleus and chromosome substitution in wheat andAegilops. I. Nucleus substitution. - Proc. 2nd Wheat Genetics Symp., Lund 1963, Hereditas suppl. vol. pp. 313–327.

    Google Scholar 

  • —, 1967: Cytoplasmic male sterility in relation to hybrid wheat breeding. - Züchter37, 86–93.

    Google Scholar 

  • -, 1973: Characteristics ofAegilops squarrosa cytoplasm. - Proc. 4th Int. Wheat Genetics Symp., pp. 351–353. - Columbia.

  • —, 1975: Origin of cultivated plants with special reference to wheat. - Seiken Zihô25/26, 1–24.

    Google Scholar 

  • Kihara, H. andS. Matsumura, 1941: Genomanalyse beiTriticum undAegilops. VIII. Rückkreuzung des BastardsAe. caudata×Ae. cylindrica zu den Eltern und seinen Nachkommen. - Cytologia11, 493–509.

    Google Scholar 

  • — andM. Tanaka, 1958: Morphological and physiological variation amongAegilops squarrosa strains collected in Pakistan, Afghanistan and Iran. - Preslia30, 241–251.

    Google Scholar 

  • —, —, 1970: Addendum to the classification of the genusAegilops by means of genomeanalysis. - Wheat Inform. Serv., Kyoto,30, 1–2.

    Google Scholar 

  • — andK. Yamashita, 1956: Wheat and its relatives. - Wheat Inform. Serv., Kyoto,4, 16–24.

    Google Scholar 

  • —, — andM. Tanaka, 1957: New geographical distribution ofAegilops columnaris. - Wheat Inform. Serv., Kyoto,6, 13.

    Google Scholar 

  • —, —, —, 1959: Genomes of 6x species ofAegilops. - Wheat Inform. Serv., Kyoto,8, 3–5.

    Google Scholar 

  • —, —, —, 1965: Morphological, physiological, genetical and cytological studies inAegilops andTriticum collected from Pakistan, Afghanistan and Iran. - Wheat Inform. Serv., Kyoto,19/20, 5–8.

    Google Scholar 

  • Kimber, G., 1966: Estimate of the number of genes involved in the genetic suppression of the cytological diploidisation in wheat. - Nature212, 317–318.

    Google Scholar 

  • —, 1974a: A reassessment of the origin of the polyploid wheats. - Genetics78, 487–492.

    PubMed  CAS  Google Scholar 

  • -, 1974b: The relationships of the S-genome diploids to polyploid wheats. - Proc. 4th Intern. Wheat Genet. Symp., pp. 81–85. - Columbia, Mo.

  • — andR. S. Athwal, 1972: A reassessment of the course of evolution in wheat. - Proc. Nat. Acad. Sci. U.S.A.69, 912–915.

    CAS  Google Scholar 

  • — andR. Riley, 1963: The relationships of the diploid progenitors of hexaploid wheat. - Can. J. Genet. Cytol.5, 83–88.

    Google Scholar 

  • Knoll, F., 1932: Über die Fernverbreitung des Blütenstaubes. - Forsch. Fortschr.8, 301–302.

    Google Scholar 

  • Konarev, V. G., 1975a: Belki, nukleinovye kisloty i morfogenez kul'turnych rastenij. - Trudy prikl. bot., gen. i sel.56, 194–204.

    Google Scholar 

  • —, 1975b: Differentiation of the first genome in polyploid wheats from the data of an immunological analysis of the alcohol-soluble fraction of the grain protein. (Russ., Engl. summary). - Bjull. VIR47, 8–11.

    Google Scholar 

  • —, 1976: Molecular biology and breeding. (Russ., Engl. summary). - Vestnik sel'skochoz. nauki2, 105–111.

    Google Scholar 

  • —,I. P. Gavriljuk andN. K. Gubareva, 1970: Protein markers of wheat genoms and their wild ancestors. (Russ., Engl. summary). - Vestnik sel'skochoz. nauki8/9, 100–114.

    Google Scholar 

  • Konarev, V. G., I. P. Gavriljuk iĖ. F. Migušova, 1974: Differenciacija diploidnych pšenic po dannym immunochimičeskogo analiza gliadina. - Dokl. VASChNIL6, 12.

    Google Scholar 

  • —, —,T. I. Peneva, A. V. Konarev, A. G. Chakimova iĖ. F. Migušova, 1976: O prirode i proischoždenii genomov pšenicy po dannym biochimii i immunochimii belkov zerna. - Sel'skochoz. biol.11, 656–665.

    Google Scholar 

  • —,N. N. Gubareva, I. P. Gavriljuk iP. Bushak, 1972: Identification of D-genome in wheat according to gliadin. (Russ., Engl. summary). - Vestn. sel'skochoz. nauki7, 108–114.

    Google Scholar 

  • — iT. I. Peneva, 1975: Gliadiny ėgilopsov sekciiSitopsis (Jaub. etSpach.)Zhuk. i struktura genoma S (B). - Sel'skochoz. biol.10, 211–219.

    CAS  Google Scholar 

  • — and —, 1977: Protein markers in the analysis ofTriticale. (Russ., Engl. summary). - Vestn. sel'skochoz. nauki10, 60–68.

    Google Scholar 

  • Konzak, C. F., 1977: Genetic control of the content, amino acid composition, and processing properties of proteins in wheat. - Advances in Genetics19, 407–582.

    PubMed  CAS  Google Scholar 

  • Krause, E. H. L., 1898: Floristische Notizen. II. Gräser. - Bot. Centralbl.73, 337–343.

    Google Scholar 

  • Krivčenko, V. I., A. M. Jamaleev iĖ. F. Migušova, 1976a: Ustojč ivost' k pyl'noj golovne i genomnyj sostav pšenicy. - Genetika12, 4, 5–11.

    Google Scholar 

  • —, — and —, 1976b: Resistance ofAegilops species to loose smut. (Russ., Engl. summary). - Sel'skochoz. biol.11, 706–710.

    Google Scholar 

  • Krull, C. F. andN. E. Borlaug, 1970: The utilization of collections in plant breeding and production. - In:O. H. Frankel andE. Bennett (eds.), Genetic Resources in Plants — Their Exploration and Conservation, pp. 427–439. - Blackwell Scientific Publications, Oxford and Edinburgh.

    Google Scholar 

  • Kruse, J., 1973: Homologiebeziehungen bei den Grannenbildungen der GattungenTriticum L. undAegilops L. - Kulturpflanze21, 195–209.

    Google Scholar 

  • Kuckuck, H., 1959: Neuere Arbeiten zur Entstehung der hexaploiden Kulturweizen. - Z. Pflanzenzüchtg.41, 205–226.

    Google Scholar 

  • —, 1964: Experimentelle Untersuchungen zur Entstehung der Kulturweizen. I. Die Variation des iranischen Spelzweizens und seine genetische Beziehung zuTriticum aestivum ssp.vulgare (Vill., Host)Mac Key, ssp.spelta (L.)Thell. and ssp.macha (Dek. etMen.)Mac Key, mit einem Beitrag zur Genetik desSpelta-Komplexes. - Z. Pflanzenzüchtg.51, 96–140.

    Google Scholar 

  • —, 1974: Bedeutung der Nutzung, Erhaltung und Weiterentwicklung der natürlichen genetischen Formenmannigfaltigkeit für die Pflanzenzüchtung — ein Beitrag zur „grünen Revolution“. - Naturw. Rundschau27, 267–272.

    Google Scholar 

  • — andG. Pohlendt, 1956: On a natural hybrid betweenAegilops triuncialis undTriticum aestivum found in Iran and its cytogenetical significance. - Wheat Inform. Serv., Kyoto,3, 15–17.

    Google Scholar 

  • Kugler, H., 1970: Blütenökologie. - Gustav Fischer, Jena.

    Google Scholar 

  • Law, C. N., C. F.Young, J. W. S.Brown, J. W.Snape and A. J.Worland, 1978: The study of grain protein control in wheat using whole chromosome substitution lines. - Seed Protein Improvement by Nuclear Techniques, IAEA (1978), 483–502.

  • Lehmann, Chr. O., 1954: Das morphologische System der Saaterbsen (Pisum sativum L. em. Gov. ssp.sativum). - Züchter24, 316–337.

    Google Scholar 

  • -, 1955: Das morphologische System der Kulturtomaten (Lycopersicon esculentum Mill.). - Züchter,3. Sonderheft, 64 pp.

  • —, 1963: Zwanzig Jahre Sortiment des Institutes für Kulturpflanzenforschung. - Kulturpflanze11, 281–294.

    Google Scholar 

  • —, 1972: Das Kulturpflanzenweltsortiment des Zentralinstituts für Genetik und Kulturpflanzenforschung in Gatersleben, ein Genreservoir füs die Pflanzenzüchtung in der DDR. - Arch. Züchtungsforsch.2, 109–127.

    Google Scholar 

  • Lehmann, Chr. O., 1977: Techniques of handling, storage and classification of the Gatersleben cereal collection. - Cereal Research Communications5, 133–138.

    Google Scholar 

  • — undK. Hammer, 1979: Bericht über die Reise nach Südwest-Spanien zur Sammlung kultivierter und wildwachsender Leguminosen im Jahre 1978. - Kulturpflanze27, 97–108.

    Google Scholar 

  • — undR. Mansfeld, 1957: Zur Technik der Sortimentserhaltung. - Kulturpflanze5, 108–138.

    Google Scholar 

  • Lelley, J., 1976: Wheat Breeding. - Akad. Kiadó, Budapest.

    Google Scholar 

  • Levin, D. A. andH. W. Kerster, 1974: Gene flow in seed plants. - In:T. Dobzhansky, M. K. Hecht, W. C. Steere (eds.), Evolutionary Biology7, pp. 139–220. - Plenum Press, New York and London.

    Google Scholar 

  • Lewis, H. T., 1972: The role of fire in the domestication of plants and animals in southeast Asia: a hypothesis. - Man7, 195–222.

    Google Scholar 

  • Lilienfeld, F. A., 1951: H.Kihara: Genome-analysis inTriticum andAegilops. X. Concluding review. - Cytologia16, 101–123.

    Google Scholar 

  • — andT. Kihara, 1934: Genomanalyse beiTriticum andAegilops. V.Triticum timopheevi Zhuk. - Cytologia6, 67–122.

    Google Scholar 

  • Maan, S. S., 1976: Cytoplasmic homology betweenAegilops squarrosa L. andA. cylindricaHost. - Crop. Sci.16, 757–761.

    Article  Google Scholar 

  • —, 1977: Cytoplasmic homology betweenAegilops mutica Boiss. andAe. ovata L. - Euphytica26, 601–613.

    Google Scholar 

  • — andT. Sasakuma, 1977: Fertility of amphihaploids inTriticinae. - J. Hered.68, 87–94.

    Google Scholar 

  • Mac Key, J., 1968: Relationships in theTriticinae. - Proc. 3rd Int. Wheat Genet. Symp., pp. 39–50. - Butterworth, Sydney.

    Google Scholar 

  • Mandy, Gy., 1970: New concept of the origin ofTriticum L. - Acta Agron. Acad. Sci. Hung.19, 413–417.

    Google Scholar 

  • Mansfeld, R., 1949: Die Technik der wissenschaftlichen Pflanzenbenennung. - Akademie-Verlag, Berlin.

    Google Scholar 

  • —, 1950: Das morphologische System der Saatgerste,Hordeum vulgare L. s. l. - Züchter20, S-24.

    Google Scholar 

  • —, 1951: Das morphologische System des Saatweizens,Triticum aestivum L. s. l. - Züchter21, 41–60.

    Google Scholar 

  • Manwell, C. and C. M. A.Baker, 1975: Protein polymorphism in domesticated species — evidence for hybrid origin. - In: S.Karlin, E.Nevo (eds.), Population Genetics and Ecology, pp. 105–140. - Philadelphia.

  • Marshall, D. R. and A. H. D.Brown, 1975: Optimum sampling strategies in genetic conservation. - In: O. H.Frankel and J. G.Hawkes (eds.), Crop Genetic Resources for Today and Tomorrow, pp. 53–80. - Cambridge University Press.

  • McFadden, E. S. andE. R. Sears, 1944: The artificial synthesis ofTriticum spelta. - Records Genet. Soc. Amer.13, 26–27.

    Google Scholar 

  • —, —, 1946: The origin ofT. spelta and its free-threshing hexaploid relatives. - J. Hered.37, 81–89, 107–116.

    Google Scholar 

  • Mello-Sampayo, T., 1971: Promotion of homoeologous pairing in hybrids ofTriticum aestivum×Aegilops longissima.- Genetica Iberica23, 1–9.

    Google Scholar 

  • Menabde, V., 1971: Has onlyAegilops squarrosa monopoly in the formation of hexaploid wheat? - Acta Agron.20, 212–219.

    Google Scholar 

  • Merfert, W., 1976: Hybridweizen und Allogamie. - Arch. Züchtungsf.6, 251–260.

    Google Scholar 

  • Mettin, D., 1964: On the intraspecific variability of baking quality components in Einkorn-wheats,Ae. speltoides andAe. squarrosa. - Wheat Inform. Serv., Kyoto,17/18, 17–19.

    Google Scholar 

  • - and W. D.Blüthner, 1978: Protein studies using wheat aneuploids andAegilops. - Seed Protein Improvement by Nuclear Techniques, IAEA (1978), 543–554.

  • Mettin, D., W. D. Blüthner, H. I. Schäfer, U. Buchholz undA. Rudolph, 1977: Untersuchungen an Samenproteinen in der GattungAegilops. - Tag.-Ber., Akad. Land-wirtsch.-Wiss. DDR, Berlin158, 95–106.

    Google Scholar 

  • Migušova, Ė. F., 1975: K voprosu o proischoždenii genomov pšenicy. - Trudy prikl. bot., gen. i sel.55, 3–26.

    Google Scholar 

  • — andA. V. Konarev, 1973: Intraspecific heterogeneity ofTriticum araraticum Jakubz. (Russ., Engl. summary). - Trudy prikl. bot., gen. i sel.52, 206–213.

    Google Scholar 

  • Milohnić, J. andM. Jošt, 1976: Pollen production and anther extrusion of wheat (Triticum aestivum L. em.Thell.) - Poljoprivr. Znanstvena Smotra38, 105–111.

    Google Scholar 

  • Morris, R. andE. R. Sears, 1967: The cytogenetics of wheat and its relatives. - In:Quisenberry, K. S. andL. P. Reitz (eds.), Wheat and Wheat Improvement, pp. 19–87. - American Society of Agronomy, Madison.

    Google Scholar 

  • Mukai, Y. andK. Tsunewaki, 1975: Genetic diversity of the cytoplasm inTriticum andAegilops. II. Comparison of the cytoplasms and their 2x relatives. - Zeiken Zihô25/26, 67–78.

    Google Scholar 

  • —, —, 1976: Genetic diversity of the cytoplasm inTriticum andAegilops. IV. Distribution of the cytoplasm inducing variegation in common wheat. Theor. Appl. Bot.48, 9–16.

    Google Scholar 

  • Murray, B. G., 1974: Breeding systems and floral biology in the genusBriza. - Heredity33, 285–292.

    Google Scholar 

  • Musaev, S. G., 1977: Sistematika azerbajdžanskich vidov rodaAegilops L. - Rukopis' in-ta bot. AN Azerb. SSR, Baku. Zit.: Ref. Žur. Biol. 1977, 8, p. 65, B 481.

    Google Scholar 

  • Mustafaev, I. D., 1976: Ways of improving the baking qualities of wheat. (Russ., Azerbaidjani). - AzSSR Elmlär Akad. Kenet. vä seleksija inst. äsärläri No. 8, 5–12 Zit.: Ref. Žur. Biol. 1976, 8, p. 55, 150.

    Google Scholar 

  • — iV. F. Dorofeev, 1964: Botaničeskoe raznoobrazie pšenicy, jač menja, rži i ėgilopsa Azerbajdžana. - Trudy prikl. bot., gen. i sel.36, 127–138.

    Google Scholar 

  • —,A. M. Šejch-Zamanov, Ju. A. Spirin iG. V. Piralov, 1976: Otdalennaja gibridizacija s ispol'zovaniem genetičeskogo fonda pšenicy, rži i ėgilopsov Azerbajdž ana. - V sb.: Otdalen. gibridizacija rast. v. Moldavii, pp. 11–13. S „Štiinca“, Kišinev.

    Google Scholar 

  • Nielsen, J., 1978: Host range of the smut speciesUstilago nuda andUstilago tritici in the tribeTriticeae. - Can. J. Bot.56, 901–915.

    Google Scholar 

  • Nishikawa, K., Y. Furuta andH. Goshima: 1975: Genetic studies ofα-amylase isozymes in wheat. II. Reconstituted AABB tetraploid,Aegilops squarrosa and their synthetic AABBDD hexaploid. - Jap. J. Genetics50, 409–416.

    Google Scholar 

  • —,S. Kudo andY. Furuta, 1975: Variation in α-amylase isozymes and differentiation of tetraploid wheat. (Engl. abstr.). - Jap. J. Genetics50, 484.

    Google Scholar 

  • Oka, H.-I. andH. Morishima, 1967: Variation in the breeding systems of a wild rice,Oryza perennis. - Evolution21, 249–258.

    Google Scholar 

  • Otsuka, I. andH. Kihara, 1976: On chromosome 1 D and its necessary relationship withAegilops squarrosa cytoplasm. (Jap., Engl. summary). - Jap. J. Genetics51, 433–434.

    Google Scholar 

  • Panajotov, I., 1976: New sources of fertility restoration in cytoplasmically male-sterile wheats with the cytoplasm ofTriticum timopheevi. (Bulg., Engl. summary). - Genetika i Selekcija9 (1) 54–61. Zit.: Plant Breed. Abstr. 46 (10) 1976, No. 8817.

    Google Scholar 

  • Pazy, B. andD. Zohary, 1965: The process of introgression betweenAegilops polyploids: natural hybridization betweenA. variabilis, A. ovata andA. biuncialis. - Evolution19, 385–394.

    Google Scholar 

  • Peneva, T. I., 1974: Gliadiny ėgilopsov sekciiSitopsis (Jaub. etSpach.)Zhuk. v svjazi s proischoždeniem genoma B pšenicy. - Avtoref. kand. dis., VIR, Leningrad.

    Google Scholar 

  • — andĖ. F. Migušova, 1973: The structure of genome S (B) inAegilopses of the groupSitopsis according to the data of electrophoretic and immunochemical analysis of gliadins. (Russ., Engl. summary). - Trudy prikl. bot., gen. i sel.52, 178–192.

    CAS  Google Scholar 

  • Percival, J., 1930: Cytological studies of some hybrids ofAegilops sp.×wheats, and of some hybrids between different species ofAegilops. - J. Genet.22, 201–278.

    Article  Google Scholar 

  • Pienaar, R. De V. andG. F. Marois, 1976: The effect of D-genome on kernel set and viability in wheat× rye crosses. - Wheat Inform. Serv., Kyoto,43, 4–9.

    Google Scholar 

  • Pohl, F., 1937: Die Pollenerzeugung der Windblütler. Untersuchungen zur Morphologie und Biologie des Pollens. VI. - Beih. Bot. Cbl.56, 365–470.

    Google Scholar 

  • Popova, G., 1923: Species ofAegilops and their mass hybridization with winter wheat in Turkestan. (Russ.). - Trudy prikl. bot., gen. i sel.13, 461–482.

    Google Scholar 

  • Preston, K. R., W. Woadbury, R. A. Orth andW. Bushuk, 1975: Comparison of gliadin and glutenin subunits in theTriticinae by SDS-polyacrylamide gel electrophoresis. - Can. J. Plant Sci.55, 667–672.

    Google Scholar 

  • Probatova, N., 1976: Novye i redkie zlaki iz vostočnoj Sibiri i Dal'nego vostoka. - Novosti sist. vysš. rast.13, 32–42.

    Google Scholar 

  • Prokudin, Ju. N., A. G. Vovk, O. A. Petrova, E. D. Ermolenko iJu. V. Vernič enko, 1977: Zlaki Ukrainy. - „Naukova Dumka“, Kiev (N).

    Google Scholar 

  • Quinlivan, B. J., 1974: Plant collecting in Israel. — 1973. - Plant Introduction Review10 (1) 11–12.

    Google Scholar 

  • Rao, A. R., 1976: Phylogenetic relationships amongTriticum andAegilops species. - Pakistan J. Agr. Sci.13, 139–146.

    Google Scholar 

  • Rapilly, F., 1977: Studies on factors of horizontal resistance to wheat glume blotch (Septoria nodorumBerk): results obtained by means of simulation. (Fr., Engl. summary).- Ann. Phytopathol.9, 1–20.

    Google Scholar 

  • Rasi-Zade, G. M., 1975: Mejoz mežrodovogo gibrida četvertogo pokolenijaT. turgidum×Ae. aucheri. - Dokl. Akad. Nauk Azerbajdž. SSR31 (7) 64–67.

    Google Scholar 

  • Raven, P. H., 1974: Proposals for the simplification of infraspecific terminology. - Taxon23, 828–831.

    Google Scholar 

  • Rawal, K. andJ. R. Harlan, 1975: Cytogenetic analysis of wild emmer populations from Turkey and Israel. - Euphytica24, 407–411.

    Google Scholar 

  • Rees, H., 1963: Desoxyribonucleic acid and the ancestry of wheat. - Nature198, 108–109.

    CAS  Google Scholar 

  • — andM. R. Walters, 1965: Nuclear DNA and the evolution of wheat. - Heredity20, 73–82.

    CAS  Google Scholar 

  • Richards, A. J., 1978: Introduction.- In: A. J.Richards (ed.), The Pollination of Flowers by Insects, pp. 1–3. - Linnean Society Symposium Series No. 6.

  • Richter, K., 1890: Plantae Europaeae. Vol.1. - W. Engelmann, Leipzig.

    Google Scholar 

  • Riley, R., 1965: Cytogenetics and evolution of wheat. - In: J. B.Hutchison (ed.), Essays on Crop Plant Evolution, pp. 103–122. - Cambridge.

  • — andV. Chapman, 1966: Estimates of the homoeology of wheat chromosomes by measurements of differential affinity at meiosis. In:R. Riley andR. K. Lewis (eds.), Chromosome Manipulations and Plant Genetics, pp. 59–85. - Oliver and Boyd, Edinburgh.

    Google Scholar 

  • —, — andR. Johnson, 1968: Introduction of yellow rust resistance ofAegilops comosa into wheat by genetically induced homoeologous recombination. - Nature217, 383–384.

    Google Scholar 

  • —,J. Unrau andV. Chapman, 1958: Evidence on the origin of the B genome of wheat. - J. Hered.49, 91–98.

    Google Scholar 

  • Rivoal, R., 1975: Le nématode à kystes des céréales,Heterodera avenaeWoll. en France: caractéristiques biologiques et perspectives suitibilité de lutte. - EPPO Bulletin5, 425–435.

    Article  Google Scholar 

  • Roberts, E. H. andR. H. Ellis, 1977: Prediction of seed longevity at sub-zero temperatures and genetic resources conservation. - Nature268, 431–433.

    PubMed  Google Scholar 

  • Roemer, Th., 1932: Über die Reichweite des Pollens beim Roggen. - Z. Pflanzenzüchtg.17, 14–35.

    Google Scholar 

  • Rothmaler, W., 1950: Allgemeine Taxonomie und Morphologie der Pflanzen. - Wilhelm Gronau Verlag, Jena.

    Google Scholar 

  • Roy, R. P., 1959: Genome analysis ofAegilops sharonensis. - Genetica29, 331–357.

    Google Scholar 

  • Sakamoto, S., 1973: Patterns of phylogenetic differentiation in the tribeTriticinae. - Seiken Zihô24, 11–31.

    Google Scholar 

  • Samborski, D. J., 1976: Leaf rust of wheat in Canada in 1976. - Canad. Plant Disease Survey56 (4) 123–125.

    Google Scholar 

  • Sarkar, P. andG. L. Stebbins, 1956: Morphological evidence concerning the origin of the B genome in wheat. - Amer. J. Bot.43, 297–304.

    Google Scholar 

  • Šaryechmetov, I. F., 1975: Specific albumin in some forms of wheat and its wild relatives. (Russ.). - Bjull. VIR47, 11–13.

    Google Scholar 

  • Sasaki, M., Y. Yasumuro andN. Nakata, 1977: The effect of nucleo-cytoplasmic interaction on the endosperm protein in wheat (preliminary). - Wheat Inform. Serv., Kyoto,44, 7–9.

    Google Scholar 

  • Sasakuma, T. andS. S. Maan, 1978: Male sterility-fertility restoration systems inTriticum durum. - Can. J. Genet. Cytol.20, 389–398.

    Google Scholar 

  • Sax, K., 1922: Sterility in wheat hybrids. II. Chromosome behavior in partially sterile hybrids. - Genetics7, 513–552.

    PubMed  CAS  Google Scholar 

  • Schiemann, E., 1947: ÜberMcFadden - Sear's Theorie zur Phylogenie des Weizens. - Züchter17/18, 385–391.

    Google Scholar 

  • Sears, E. R., 1941: Chromosome pairing and fertility in hybrids and amphiploids in theTriticinae. - Univ. Missouri Agr. Exp. Station Bulletin, No.337, 1–20.

    Google Scholar 

  • —, 1948: The cytology and genetics of the wheats and their wild relatives. - Adv. Genet.2, 239–270.

    Article  Google Scholar 

  • —, 1956a: The transfer of leaf-rust resistance fromAegilops umbellulata to wheat. - In: Genetics in Plant Breeding, Brookhaven Symp. in Biology9, 1–22.

    Google Scholar 

  • —, 1956b: The B genome ofTriticum. - Wheat Inform. Serv., Kyoto,4, 8–10.

    Google Scholar 

  • —, 1959: The systematics, cytology and genetics of wheat. - In:H. Kappert undW. Rudorf (eds.), Handbuch der Pflanzenzüchtung, Vol.2, pp. 164–187. - Parey, Berlin.

    Google Scholar 

  • —, 1969: Wheat cytogenetics. - Ann. Rev. Genet.3, 451–468.

    Google Scholar 

  • —, 1976: A synthetic hexaploid wheat with fragile rachis. - Wheat Inform. Serv., Kyoto,41/42, 31–32.

    Google Scholar 

  • Semenov, O. G. and M. I.Rjabinina, 1976: Study of the interaction between cytoplasm and nucleus in alloplasmic hybrids of wheat. (Russ.). - In: III. Vses. Simpoz. „Molekuljar. mechanizmy genet. processov“, Tezisy dokl. - Moskva.

  • Senjanina-Korčagina, M., 1932: Karyo-systematical investigation of the genusAegilops L. (Russ., Engl. summary). - Trudy prikl. bot., gen. i sel.11 (1) 67–90.

    Google Scholar 

  • Shands, H. and G.Kimber, 1973: Reallocation of the genome ofTriticum timopheeviZhuk. - Proc. 4th Int. Wheat Genet. Symp., pp. 101–108. - Columbia, Mo.

  • Shigenobu, T. andS. Sakamoto, 1977: Production of a polyhaploid plant ofAegilops crassa (6x) pollinated byHordeum bulbosum. - Jap. J. Genetics52, 397–401.

    Google Scholar 

  • Simmons, J. B., R. I. Beyer, P. E. Bradham, G. Ll. Lucas andV. T. H. Parry (eds.), 1976: Conservation of Threatened Plants. - Plenum Press, New York and London.

    Google Scholar 

  • Soderstrom, R. T. andE. E. Calderon, 1971: Insect pollination in tropical rain forest grasses. - Biotropica3, 1–16.

    Google Scholar 

  • Sorokina, O. N., 1928: On the chromosomes ofAegilops species. (Russ.). - Trudy prikl. bot., gen. i sel.19, 523–532.

    Google Scholar 

  • Stace, C. A., 1976: The study of intraspecific variation. - Current Advances in Plant Science, 513–523.

  • Stebbins, G. L., 1956: Taxonomy and evolution of genera, with special reference to the familyGramineae. - Evolution10, 235–245.

    Google Scholar 

  • —, 1971: Chromosomal Evolution in Higher Plants. - Edward Arnold Ltd., London.

    Google Scholar 

  • Stubbe, H., 1970: Das Institut für Kulturpflanzenforschung Gatersleben (Aufgaben, Ergebnisse, Probleme) 1943– 1968. - Kulturpflanze, Beih.6, 29–52.

    Google Scholar 

  • Tachtadžjan, A. L. (Herausgeber), 1975: Krasnaja kniga. - „Nauka“, Leningrad.

    Google Scholar 

  • Tanaka, M., 1975: GenusAegilops. - In:T. Matsuo (ed.), JIBP Synthesis, vol.5, Gene Conservation — Exploration, Collection, Preservation and Utilisation of Genetic Resources, pp. 180–183. - Univ. of Tokyo Press, Tokyo.

    Google Scholar 

  • —, 1978: A report of the Kyoto University scientific exploration to the eastern Turkey, 1976. - Report of Plant Germ-Plasm Institute Faculty of Agriculture Kyoto University3, 1–31.

    Google Scholar 

  • Ter-Avanesian, D. V., 1978: Significance of pollen amount for fertilization. - Bull. Torr. Bot. Club105, 2–8.

    Google Scholar 

  • Thompson, R. C., E. J. Britten andJ. C. Harding, 1943: The artificial synthesis of a 42-chromosome species resembling common wheat. - Canad. J. Res.2C, 134–144.

    Google Scholar 

  • Trottet, M., F. Dosba etG. Doussinault, 1975: Conséquences d'une attaque deSeptoria nodorum (Berk.) sur la formation du grain chezTriticum aestivum (L.) et chezAegilops ventricosa (Tausch.). Incidences en sé lection. - Ann. Amél. Plantes25, 265–276.

    Google Scholar 

  • Tsitsin, N. V., 1978: Remote Hybridization of Plants. - „Nauka“, Moskva.

    Google Scholar 

  • Tsunewaki, K., 1968: Origin and phylogenetic differentiation of common wheat revealed by comparative gene analysis. - Proc. 3rd Int. Wheat Genet. Symp., pp. 71–85. - Canberra.

  • —, 1976: On the possibility of developing new male-fertility restorer systems using the cytoplasms of threeAegilops species. (Jap., Engl. summary). - Jap. J. Genetics51, 447–448.

    Google Scholar 

  • —,Y. Mukai, R. Endo, S. Tsuji andM. Murata, 1975: Genetic differentiation of the cytoplasms inTriticum andAegilops. (Jap., Engl. summary). - Jap. J. Genetics50, 501.

    Google Scholar 

  • Valentine, D. H., 1975: The taxonomic treatment of polymorphic variation. - Watsonia10, 385–390.

    Google Scholar 

  • Vandam, J., 1975: Amélioration de la résistance du blé au piétin-verse,Cercosporella herpotrichoides (Fron). - OEPP Bulletin5, 385–394.

    Google Scholar 

  • — etL. Defosse, 1974: Observations sur la sensibilité d'une collection d'Aegilops sp. àCercosporella herpotrichoides Fron, agent du piétin-verse. - Parasitica30, 58–62.

    Google Scholar 

  • Vardi, A. andD. Zohary, 1967: Introgression in wheat via triploid hybrids. - Heredity22, 541–560.

    Google Scholar 

  • Vavilov, N. I., 1935: Naučnye osnovy selekcii pšenicy. - „Sel'chozgiz“, Moskva i Leningrad.

    Google Scholar 

  • Vedel, F., F. Quetier, F. Dosba andG. Doussinault, 1978: Study of wheat phylogeny by EcoRI analysis of chloroplastic and mitochondrial DNAs. - Plant Science Letters13, 97–102.

    Google Scholar 

  • Vitozzi, L. andV. Silano, 1976: The phylogenesis of protein α-amylase inhibitors from wheat seed and the speciation of polyploid wheat. - Theor. Appl. Bot.48, 279–284.

    Google Scholar 

  • Wagenaar, F. B., 1966: Studies on the genome constitution ofTriticum timopheeviZhuk. 2. TheT. timopheevi complex and its origin. - Evolution20, 150–154.

    Google Scholar 

  • Waines, J. G., 1976a: Genotypes of wild diploid and tetraploid wheats with solid stems. - J. Hered.67, 315–316.

    Google Scholar 

  • —, 1976b: A model for the origin of diploidizing mechanisms in polyploid species. - Amer. Nat.110, 415–430.

    Google Scholar 

  • —, 1978: Accessions collected by BMUK identified asAegilops searsii Feldman etKislev. - Wheat Inform. Serv., Kyoto,45/46, 38.

    Google Scholar 

  • - and B. L.Johnson, 1969:Triticum×sharonense (Eig)Waines etJohnson, a hybrid species in the wheat group. - Abstr. Papers, 11th Int. Bot. Congr., p. 231. - Seattle.

  • —, —, 1975: Incomplete concurrence of evidence from protein electrophoresis and genome analysis regarding the origin ofAegilops ovata. - Can. J. Genet. Cytol.17, 1–8.

    Google Scholar 

  • — andG. Kimber, 1973: Satellite number and size inTriticum monococeum and the evolution of polyploid wheats. - Can. J. Genet. Cytol.15, 117–122.

    Google Scholar 

  • Werner, K., 1962: Die kultiviertenDigitalis-Arten. - Kulturpflanze, Beih.3, 167–182.

    Google Scholar 

  • Wilkes, H. G., 1972: Maize and its wild relatives. - Science177, 1071–1077.

    PubMed  CAS  Google Scholar 

  • Wilson, J. A. andW. M. Ross, 1961: Cross breeding in wheat,Triticum aestivum. I. Frequency of the pollen-restoring character in hybrid wheats havingAegilops ovata cytoplasm. - Crop Sci.1, 191–193.

    Article  Google Scholar 

  • Yamashita, K., 1965: Origin of cultivated wheats. - Science in Japan1965, 305–313.

    Google Scholar 

  • Yeung, K. C. andE. N. Larter, 1972: Pollen production and dissemination properties ofTriticale relative to wheat. - Canad. J. Plant Sci.52, 569–574.

    Article  Google Scholar 

  • Zeller, F. J. undG. W. Fischbeck, 1974: Chromosomenadditionen, -substitutionen und -translokationen als Grundlage für die Übertragung artfremden Erbmaterials in den Saatweizen (Triticum aestivum L.). - Fortschr. Pflanzenzü chtg.4, 1–55.

    Google Scholar 

  • Zeven, A. C. andA. M. van Harten (eds.), 1979: Proceedings of the Conference “Broadening the Genetic Base of Crops”, Wageningen, Netherlands 3–7 July 1978. - Wageningen, Centre for Agricultural Publishing and Documentation.

    Google Scholar 

  • Zohary, D., 1965: Colonizer species in the wheat group. - In:H. G. Baker andG. L. Stebbins (eds.), The Genetics of Colonizing Species, pp. 403–419. - Academic Press, New York and London.

    Google Scholar 

  • —, 1966: The evolution of genomes inAegilops andTriticum. - Proc. 2nd Int. Wheat Genet. Symp., Hereditas, Suppl.2, 207–217.

    Google Scholar 

  • — andM. Feldman, 1962: Hybridization between amphidiploids and the evolution of polyploids in wheat (Aegilops-Triticum) group. - Evolution16, 44–61.

    Google Scholar 

  • —,J. R. Harlan andA. Vardi, 1969: The wild diploid progenitors of wheat and their breeding value. - Euphytica18, 58–65.

    Google Scholar 

  • — andD. Imber, 1963: Genetic dimorphism in fruit types inAegilops speltoides. - Heredity18, 223–231.

    Google Scholar 

  • Žukovskij, P. M., 1928: Kritiko-sistematičeskij obzor vidov rodaAegilops L. - Trudy prikl. bot., gen. i sel.18, 417–609.

    Google Scholar 

Download references

Author information

Authors and Affiliations

Authors

Additional information

Diese Arbeit wurde im Zentralinstitut für Genetik und Kulturpflanzenforschung der Akademie der Wissenschaften der DDR, Querschnittsbereich Kulturpflanzenweltsortiment, angefertigt. Dem Direktor des Instituts, Herrn Prof. Dr. H.Böhme, danke ich für ausgezeichnete Arbeitsmöglichkeiten und vielseitige Unterstützungen. Dem Leiter des Querschnittsbereiches Kulturpflanzenweltsortiment, Herrn Dr.Chr. O.Lehmann, bin ich für zahlreiche Anregungen und die kritische Durchsicht des Manuskripts zu Dank verpflichtet. Der Mühe des Manuskriptstudiums haben sich außerdem Herr Dr. P.Hanelt und Herr Dipl.-Math. H.Knüpffer, der mir auch für den mathematischen Teil tatkräftig zur Seite stand, unterzogen. Ihnen gilt mein besonderer Dank. Die Kollegen der benach-barten Forschungsgruppe Taxonomie und Evolution haben durch Diskussionen und ihre inhaltsreiche Publikation (vgl.Fritsch et al. 1977) dazu beigetragen, mir die Attraktivität des Forschungsobjektes bewußt zu machen. Herr Dr. J.Kruse unterstützte mich sehr bei der Einarbeitung in die systematische Problematik der Gattung. Die Betreuung desAegilops- Sortimentes durch Herrn K.Köhler und seine Mitarbeiterin E.Gerloff erleichterte die Untersuchungen sehr. Meine bewährte Assistentin, FräuleinChr. Schmidt, war mir über ihr engeres Arbeitsgebiet hinaus oft in technischen Fragen eine unersetzliche Hilfe. Für die exakte Ausführung der Zeichnungen danke ich dem wissenschaftlichen Zeichner Herrn R.Pertack. Die fotografischen Aufnahmen wurden von Frau G.Terpe und Frau I.Kuntze ausgeführt. Allen, die weiterhin zur Fertigstellung der Arbeit beitrugen, möchte ich ebenfalls herzlich danken.

Rights and permissions

Reprints and permissions

About this article

Cite this article

Hammer, K. Vorarbeiten zur monographischen Darstellung von Wildpflanzensortimenten:Aegilops L.. Die Kulturpflanze 28, 33–180 (1980). https://doi.org/10.1007/BF02014641

Download citation

  • Received:

  • Issue Date:

  • DOI: https://doi.org/10.1007/BF02014641

Navigation