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The genetic structure ofTulipa

II. Structural hybridity

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References

  • Crane, M. B. &Lawrence, W. J. C. (1934).The Genetics of Garden Plants. London.

  • Dark, S. O. S. (1936). “Meiosis in diploid and triploidPaeonia species.”J. Genet. 32, 353–72.

    Google Scholar 

  • Darlington, C. D. (1929a). “Meiosis in Polyploids. II.” Ibid.21, 17–56.

    Google Scholar 

  • —— (1929b). “Chromosome behaviour and structural hybridity in the Tradescantiae.” Ibid.21, 207–86.

    Google Scholar 

  • —— (1932a). “The origin and behaviour of chiasmata. V.Chorthippus elegans.”Biol. Bull. Wood’s Hole,63, 357–67.

    Article  Google Scholar 

  • -- (1932b).Recent Advances in Cytology, 1st ed. London.

  • —— (1936a). “Crossing-over and its mechanical relationships inChorthippus andStauroderus.”J. Genet. 33, 465–500.

    Article  Google Scholar 

  • —— (1936b). “The external mechanics of the chromosomes. I–V.”Proc. roy. Soc. B,121, 264–319.

    Google Scholar 

  • -- (1937).Recent Advances in Cytology, 2nd ed. London.

  • Darlington, C. D. &Janaki-Ammal, E. K. (1932). “Origin and behaviour of chiasmata. I. Diploid and tetraploidTulipa.”Bot. Gaz. 93, 296–312.

    Article  Google Scholar 

  • Dubinin, N. P. et al. (1936). “Occurrence and distribution of chromosome aberrations in nature.”Nature, Lond.,137, 1035–6.

    Article  Google Scholar 

  • Frankel, O. H. (1937). “Inversions inFritillaria.”J. Genet. 34 (in the press).

  • Gairdner, A. E. &Darlington, C. D. (1931). “Ring formation in diploid and polyploidCampanula persicifolia.”Genetica,13, 113–50.

    Article  Google Scholar 

  • Hearne, E. M. &Huskins, C. L. (1935). “Chromosome pairing inMelanoplus femurrubrum.”Cytologia,6, 133–47.

    Google Scholar 

  • Husted, L. (1936). “An analysis of chromosome structure and behaviour with the aid of X-ray induced rearrangements.”Genetics,21, 537–53.

    PubMed  CAS  Google Scholar 

  • Koller, P. C. (1934). “The movements of chromosomes within the cell and their dynamic interpretation.”Genetica,16, 447–66.

    Article  Google Scholar 

  • —— (1935). “The internal mechanics of the chromosomes. IV. Pairing and coiling in the salivary gland nuclei ofDrosophila.”Proc. roy. Soc. B,118, 371–97.

    Google Scholar 

  • Lotsy, J. P. (1925).Evolution Considered in the Light of Hybridisation. Christchurch: New Zealand University.

    Google Scholar 

  • McClintock, B. (1932). “A correlation of ring-shaped chromosomes with variegation inZea Mays.”Proc. nat. Acad. Sci., Wash.,18, 677–81.

    Article  CAS  Google Scholar 

  • —— (1933). “The association of non-homologous parts of chromosomes in the mid-prophase of meiosis inZea Mays.”Z. Zellforsch. 19, 191–237.

    Article  Google Scholar 

  • Mather, K. (1935). “Reductional and equational separation of chromosomes in bivalents and multivalents.”J. Genet. 30, 53–78.

    Google Scholar 

  • Mather, K. &Stone, H. L. A. (1933). “The effect of X-radiation upon somatic chromosomes.” Ibid.28, 1–24.

    Article  Google Scholar 

  • Morgan, L. V. (1933). “A closed X-chromosome inDrosophila melanogaster.”Genetics,18, 250–83.

    PubMed  CAS  Google Scholar 

  • Muller, H. J., Prokofyeva, A. &Raffel, D. (1935). “Minute intergenic rearrangement as a cause of apparent ‘Gene mutation’.”Nature, Lond.,135, 253.

    Article  Google Scholar 

  • Navashin, M. (1930). “Unbalanced somatic chromosomal variation inCrepis.”Univ. Calif. Publ. Agric. Sci. 6, 95–106.

    Google Scholar 

  • —— (asNawaschin) (1933). “Altern der Samen als Ursache der Chromosomen-mutationen.”Planta,20, 233–43.

    Article  Google Scholar 

  • Newton, W. C. F. (1927). “Chromosome studies inTulipa and some related genera.”J. Linn. Soc. (Bot.),47, 339–54.

    Google Scholar 

  • Newton, W. C. F. &Darlington, C. D. (1929). “Meiosis in polyploids. I. Triploid and pentaploid tulips.”J. Genet. 21, 1–16.

    Article  Google Scholar 

  • Painter, T. S. (1934). “A new method for the study of chromosome aberrations and the plotting of chromosome maps inDrosophila melanogaster.”Genetics,19, 175–88.

    PubMed  CAS  Google Scholar 

  • Pellew, C. &Sansome, E. R. (1931). “Genetical and cytological studies on the relations between Asiatic and European varieties ofPisum sativum.”J. Genet. 25, 25–54.

    Article  Google Scholar 

  • Richardson, M. M. (1936). “Structural hybridity inLilium Martagon album × L. Hansonii.” Ibid.32, 411–50.

    Google Scholar 

  • Stadler, L. J. (1932). “On the genetic nature of induced mutations in plants.”Proc. 6th Int. Congr. Genet. 1, 274–94.

    Google Scholar 

  • Sutton, E. (1937). “Cytological studies inPisum. I. Structural hybridity inP. humili” (in the press).

  • Upcott, M. (1936a). “The parents and progeny ofAesculus carnea.”J. Genet. 33, 135–50.

    Google Scholar 

  • —— (1936b). “The mechanics of mitosis in the pollen tube ofTulipa.”Proc. roy. Soc. B,121, 207–20.

    Google Scholar 

  • Upcott, M. &La Cour, L. (1936). “Structural hybridity inTulipa. I. A chromosome survey.”J. Genet. 33, 237–54.

    Google Scholar 

  • White, M. J. D. (1936). “The chromosome cycle ofAscaris megalocephala.”Nature, Lond.,137, 783.

    Article  Google Scholar 

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Upcott, M. The genetic structure ofTulipa . Journ. of Genetics 34, 339–398 (1937). https://doi.org/10.1007/BF02982274

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