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二倍体 Lotus(豆科)物种中的染色体分化。

Chromosome differentiation in diploid species of Lotus (Leguminosae).

机构信息

Genetics Laboratory, Macdonald Campus of McGill University, Montreal, Canada.

出版信息

Theor Appl Genet. 1972 Jan;42(1):34-40. doi: 10.1007/BF00306076.

Abstract

Meiotic chromosome behavior was studied in seven diploid species of Lotus (L. alpinus Schleich., L. japonicus (Regel) Larsen, L. filicaulis Dur., L. schoelleri Schweinf., L. krylovii Schischk. and Serg., L. tenuis Waldst. et Kit., L. corniculatus var. minor Baker) and in 51 interspecific hybrids from 16 different crosses. Meiosis in the diploid species was quite regular. In a high proportion of the PMC's of the hybrids there was close chromosome homology with a normal association of 6 II's. However, meiotic irregularities including bridges, lagging chromosomes, univalents, and quadrivalents, occurred in a small percentage of the cells. The late separation of bivalents, the presence of quadrivalents, and inversion bridges with fragments, would indicate for some hybrids that certain chromosomes were structurally differentiated. The large number of rod bivalents observed at diakinesis was also highly suggestive that genetic nonhomology in one chromosome arm could contribute to the frequency of this type of bivalent. Therefore, the maximum number of 6 II's which occurred in a high percentage of cells may be misleading in that cryptic structural differences between chromosome arms, or segments, are not revealed. Pollen fertility in the species and hybrids was not correlated with meiotic irregularities suggesting that pollen fertility is genotypically controlled.

摘要

在 7 种二倍体 Lotus 物种(高山 Lotus (L. alpinus Schleich.)、日本 Lotus (L. japonicus (Regel) Larsen)、细梗 Lotus (L. filicaulis Dur.)、Schweinf. Lotus (L. schoelleri)、Krylov 氏 Lotus (L. krylovii Schischk. and Serg.)、纤细 Lotus (L. tenuis Waldst. et Kit.)、和短角 Lotus (L. corniculatus var. minor Baker))和 51 种来自 16 个不同杂交的种间杂种中研究了减数分裂染色体行为。二倍体物种的减数分裂非常规律。在杂种的大多数 PMC 中,存在着紧密的染色体同源性,正常联会形成 6 II。然而,在一小部分细胞中,存在着减数分裂不规则性,包括桥、滞后染色体、单价体和四价体。后期二分体的分离、四价体的存在以及带片段的倒位桥,表明某些染色体在结构上有所分化。在终变期观察到大量的棒状二分体,这也强烈表明一个染色体臂上的遗传非同源性可能导致这种类型的二分体的频率增加。因此,在高比例细胞中出现的最大 6 II 数量可能会产生误导,因为染色体臂或片段之间的隐性结构差异没有被揭示出来。在物种和杂种中,花粉育性与减数分裂不规则性无关,这表明花粉育性是由基因型控制的。

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