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Een genetisch-chemisch onderzoek van eschscholtzia californica cham

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Literatuur

  • Asahina, Y. undMototaro Inubuse,1931. Darstellung des Cyanidins aus Quercetin. (Ber. d. deut. Chem. Gesell.64 2: 1256).

    Google Scholar 

  • Bancroft, W. D. andJ. E. Rutzler Jr.,1938 a. The colloid chemistry of leaf and flower pigments. The precursors of the anthocyanins. (J. of amer. Chem. Soc.60 II: 2738).

    Google Scholar 

  • Bancroft, W. D. andJ. E. Rutzler Jr.,1938 b. Colloïd chemistry of leaf and flower pigments. II. Qualitative Analysis of leaf pigments. (J. of amer. Chem. Soc.60 II: 2945).

    Google Scholar 

  • Beadle, G. W. andB. Ephrussi,1936. The differentiation of eye pigments in Drosophila as studied by transplantation. (Genetics,21: 225).

    Google Scholar 

  • Beale, G. N., G. M. Robinson, R. Robinson andR. Scott-Moncrieff,1939. Genetics and chemistry of flower colour variation inLathyrus odoratus. (J. of Genetics,37: 375).

    Google Scholar 

  • Beatty, A. V.,1936. Genetic studies on the Californian Poppy. (Journ. of Hered.27: 331).

    Google Scholar 

  • Beatty, A. V.,1937. A statistical study of flower doubling inEschscholtzia californica Cham. (Genetica19: 447).

    Google Scholar 

  • Euler, H. v.,P. Karrer, E. Klussmann undR. Morf,1932. Spektrometrische Messungen an Carotinoiden. (Helvet. chim. Acta15: 502).

    Google Scholar 

  • Everest, A. E.,1914. The production of Anthocyanins and Anthocyanidins. (Proc. Roy. Soc. London B87: 444).

    Google Scholar 

  • Everest, A. E.,1919. The production of anthocyanins and anthocyanidins. (Proc. Roy. Soc. London B90: 251).

    Google Scholar 

  • Fedde, F.,1909. Eschscholtzia in: Papaveraceae-Hypecoideae et Papaveraceae-Papaveroideae. (Das Pflanzenreich, herausgeg. v. A. Engler. IV.104: 144).

  • Fujita, Akiji, Tsunesaburo Narita undMasanobu Ajisaka,1941. Über die Bestimmung des Pro-vitamins A: Bestimmung des Carotins. (Biochem. Zeitschr.308: 420).

    Google Scholar 

  • Hagiwara, F.,1932. On the genetico-phsyiological studies of the colour development of flowers inPharbitis Nil. (Proc. imp. Acad. Japan8: 54).

    Google Scholar 

  • Haldane, J. B. S.,1937. The biochemistry of the individual. (Perspectives in Biochemistry. Cambridge,1937: 1).

    Google Scholar 

  • Harder, R.,1939. The formation of pattern in flowers. (Research and Progress5: 381).

    Google Scholar 

  • Hattori, S. undK. Hayashi,1937. Studien über Anthocyane. II. Über die Farbstoffe aus den roten Herbstblättern von einigenAcer-arten. (Acta Phystochim.10: 129).

    Google Scholar 

  • Hayashi, Kôzô,1937. Studien über Anthocyane. III. Über den Farbstoff aus den scharlachroten Blüten vonLycoris radiata. (Acta Phytochim.10: 139).

    Google Scholar 

  • Hayashi, Kôzô,1939. Studien über Anthocyane. IV. Isolierung des Paeonins aus den Blüten vonPaeonia albiflora var.hortensis. (Acta Phytochim.11: 81).

    Google Scholar 

  • Hayashi, Kôzô,1939. Studien über Anthocyane. V. Über die Farbstoffe der Beeren vonFatsia japonica. (Acta Phytochim.11: 91).

    Google Scholar 

  • Janssen, L. W.,1939. Biosynthesis and the outline of protein structures. (Protoplasma33: 410).

    Google Scholar 

  • Janssen, L. W.,1940. Biosynthese en Genetika. (Erfelijkheid in Praktijk.5: 225).

    Google Scholar 

  • Jordan, D. S.,1922. The Californian Poppy,Eschscholtzia californica Cham. (Science56: 168).

    Google Scholar 

  • Karrer, P. undA. Notthafft,1932. Zur Kenntnis der Carotinoide der Blüten. (Helv. chim. Acta,15: 1195).

    Google Scholar 

  • Karrer, P. andA. Helfenstein,1933. Plant Pigments. (Ann. Review of Biochemistry,2: 397).

    Google Scholar 

  • Karstens, W. K. H.,1938. Anthocyanin and Anthocyanin formation in seedlings of Fagopyrum esculentum. Moench. (Diss. Leiden; Rec. trav. bot. neerl.36: 87).

    Google Scholar 

  • Klein, G.,1931–1933. Handbuch der Pflanzenanalyse (unter Mitwirkung von vielen Autoren). (Wien: Julius Springer,1931–1933).

    Google Scholar 

  • Kuhn, R. undA. Winterstein,1931. Violaxanthin, das Xanthophyll des gelben Stiefmütterchen (Viola tricolor). (Ber. d. deut. Chem. Gesell.64: 326).

    Google Scholar 

  • Kuhn, R. undH. Brockmann,1932. Bestimmung von Carotinoiden. (Z. physiol. Chemie206: 41).

    Google Scholar 

  • Kuilman, L. W.,1930. Physiol. Unters. über die Anthocyane. (Diss. Amsterdam; Rec. trav. bot. neerl.27: 287).

    Google Scholar 

  • Lawrence, W. J. C. andR. Scott-Moncrieff,1935. The genetics and chemistry of flower colour in Dahlia, a new Thoery of specific pigmentation. (Journ. Gen.30: 155).

    Google Scholar 

  • Lawrence, W. J. C., J. R. Price, G. M. Robinson andR. Robinson,1938. A survey of anthocyanins V. (Biochem. Journ.32: 1661).

    Google Scholar 

  • Lawrence, W. J. C., J. R. Price, G. M. Robinson andR. Robinson,1939. Distribution of anthocyanins in flowers, fruits and leaves. (Phil. Trans. of the Roy. Soc. of London, B230: 149).

    Google Scholar 

  • Lawrence, W. J. C. andJ. R. Price,1940. The genetics and chemistry of flower colour variation. (Biol. Reviews15: 35).

    Google Scholar 

  • Levy, L. F. andR. Robinson,1931. Experiments on the synthesis of anthocyanins. Observations on the distribution numbers of the anthocyanins. (J. of the Chem. Soc.11: 2715).

    Google Scholar 

  • Mackinney, G.,1940. Plant Pigments. (Ann. Rev. of Biochem.9: 459).

    Google Scholar 

  • Miller, E. S.,1934. Improved methodes for the purification of the common carotenoids, and the quantitative measurements of their absorption spectra. (Bot. Gaz.96: 447).

    Google Scholar 

  • Noack, K.,1918. Untersuchungen über die Anthocyan-stoffwechsel auf Grund der chemischen Eigenschaften der Anthocyangruppe. (Zeitschr. f. Bot.10: 561).

    Google Scholar 

  • Noack, K.,1922. Physiologische Untersuchungen an Flavonolen und Anthocyanen. (Zeitschr. f. Bot.14: 7).

    Google Scholar 

  • Onslow, M. Wheldale (M. Wheldale),1914. Our present knowledge of the chemistry of the Mendelian factors for flower colours. (J. Genet.4: 109).

    Google Scholar 

  • Price, J. R. andV. C. Sturgess,1938. A survey of anthocyanins. VI. (Bioch. Journal32 2: 1658).

    Google Scholar 

  • Price, J. R., V. C. Sturgess, G. M. Robinson andR. Robinson,1938. Some new Anthocyanin Types. (Nature,142: 356).

    Google Scholar 

  • Peterson, W. J., J. S. Hughes andL. F. Payne,1939. The carotinoid pigments. (Kansas agric. exp. Stat. Technical Bulletin,46: 74 pp.).

    Google Scholar 

  • Robinson, G. M. andR. Robinson,1931. A survey of anthocyanins. I (Biochem. J.25: 1687).

    Google Scholar 

  • Robinson, G. M., andR. Robinson,1932. A survey of anthocyanins. II. (Biochem. J.26: 1647).

    Google Scholar 

  • Robinson, G. M. andR. Robinson,1933. A survey of anthocyanins. III. (Biochem. J.27: 206).

    Google Scholar 

  • Robinson, G. M. andR. Robinson,1934. A survey of anthocyanins. IV. (Biochem. J.28: 1712).

    Google Scholar 

  • Robinson, R.,1936. Formation of anthocyanin in plants. (Nature,137: 172).

    Google Scholar 

  • Robinson, R.,1940. Distribution of anthocyanins in flowers, fruits and leaves. (Phil. Trans. Roy. Soc. London,1940).

  • Russell, W. C., M. W. Taylor andD. F. Chichester,1935. Colorimetric determination of carotene in plant tissue. (Plant Physiol.10: 325).

    Google Scholar 

  • Sando, Ch. E. andH. H. Bartlett,1920. Rutin, the flavone pigment ofEschscholtzia californica, Cham. (J. of biol. Chem.41: 495).

    Google Scholar 

  • Milner, R. T. andM. S. Sherman,1935. Pigments of the mendelian colour types in maize. Chrysanthemin from the husked maize. (J. of Biol. Chem.109: 203).

    Google Scholar 

  • Saunders, E. R.,1928. “Matthiola”. (Bibliogr. genet.4: 141).

    Google Scholar 

  • Scott-Moncrieff, R.,1932. A note on the anthocyanin pigments of the Primrose,Primula acaulis. (J. of Genet.25: 206).

    Google Scholar 

  • Scott-Moncrieff, R.,1936. A biochemical survey of some Mendelian factors for flower colour. (J. of Genet.32: 117).

    Google Scholar 

  • Scott-Moncrieff, R.,1937. The biochemistry of flower colour variation. (Perspectives in Biochemistry, Cambridge,1937: 230).

    Google Scholar 

  • Scott-Moncrieff, R.,1939 a. The genetics and biochemistry of flower colour variation. (Ergebn. d. Enzymforschung8: 277).

    Google Scholar 

  • Scott-Moncrieff, R.,1939 b. Genetics and chemistry of flower colour variation inLathyrus odoratus. (J. of Genetics37: 375).

    Google Scholar 

  • Seybold, A., K. Egle undW. Hülsbruck,1941. Chlorophyll und Carotinoidbestimmungen an Süsswasseralgen. (Bot. Archiv42: 239).

    Google Scholar 

  • Sirks, M. J.,1933. Handboek der algemeene erfelijkheidsleer. (Tweede druk. Den Haag, Nijhoff,1933).

  • Smith, J. C. H., andH. W. Milner,1934. Carotene: physical properties of carotenes from different plant sources. (J. of biol. Chem.104: 437).

    Google Scholar 

  • Smith, J. C. H.,1937. Plant Pigments. (Ann. Rev. of Biochem.6: 489).

    Google Scholar 

  • Spohn, H.,1935. Eine einfache methode zur Trennung der Blattfarbstoffe. (Planta23: 657).

    Google Scholar 

  • Störmer, J. undH. v.Witsch,1937. Chemische und Entwicklungs-physiologisch-genetische Untersuchungen über das Blütenfarbmuster der Gartenpetunie. (Planta27: 1).

    Google Scholar 

  • Strain, H. H.,1934. Carotene. VIII. Separating of carotenes by absorption. (J. of biol. Chem.105: 523).

    Google Scholar 

  • Strain, H. H.,1935. Carotene. IX. Carotenes from different sources and some properties of α- and β-carotene. (J. of Biol. Chem.111: 85).

    Google Scholar 

  • Strain, H. H.,1938 a. Eschscholtzxanthin. (J. of Biol. Chem.123: 425).

    Google Scholar 

  • Strain, H. H.,1938 b. Leaf xanthophylls. (Washington, Carnegie Institution,1938).

    Google Scholar 

  • Tammes, T.,1922. Genetic analysis, schemes of co-operation and multiple allelomorphs ofLinum usitatissimum. (J. of Genet.12: 19).

    Google Scholar 

  • Thaler, H. undK. E. Schulte,1940. Die Carotinoide der gelben Pfirsiche. (Bioch. Zeitschr.306: 1).

    Google Scholar 

  • Tschermak, E. v.,1904. Weitere Kreuzungsstudien an Erbsen, Levkojen und Bohnen. (Z. landw. Vers. Wes. Öst.7: 533).

    Google Scholar 

  • Uphof, J. C. Th.,1921. Die Farbenfaktoren von Eschscholtzia mexicana. Greene. (Zeitschr. f. ind. Abst. und Vererb.L.27: 227).

    Google Scholar 

  • Weber, H. M.,1939. Über die Trennung von Anthocyanen. (Ing. Diss. Basel.1939).

  • Wester, D. H.,1921. Over anthoxanthinen en anthocyanen. (Chem. Weekblad.18: 568).

    Google Scholar 

  • Wheldale(zieOnslow)..

    Google Scholar 

  • Willstaedt, H. undT. K. With,1938. Über die chromatografische Adsorptionsanalyse kleiner Carotinoidmengen (Mikro-chromatografie) mit besonderer Berücksichtigung der Carotinoiden der Milch und des Serums. (Zeitschr. f. physiol. Chemie253: 40).

    Google Scholar 

  • Willstätter, R. undA. E. Everest,1913. Über den Farbstoff der Kornblume. (Liebigs Ann.401: 189).

    Google Scholar 

  • Wit, F.,1937. Contributions to the genetics of the China aster. (Genetica19: 1).

    Google Scholar 

  • Zechmeister, L.,1934. Carotinoìde. (Berlin, Julius Springer,1934).

    Google Scholar 

  • Zechmeister, L. und L. v.Cholnoky,1937. Die chromatografische Adsorptionsmethode. (Wien, Julius Springer,1937).

    Google Scholar 

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Douwes, H. Een genetisch-chemisch onderzoek van eschscholtzia californica cham. Genetica 23, 353–464 (1943). https://doi.org/10.1007/BF01763814

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