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一个亚种间水稻(Oryza sativa L.)群体中杂种不育和杂种衰败的遗传学研究

Genetics of hybrid sterility and hybrid breakdown in an intersubspecific rice (Oryza sativa L.) population.

作者信息

Li Z, Pinson S R, Paterson A H, Park W D, Stansel J W

机构信息

Department of Soil and Corp Science, Texas A&M University, College Station 77843-2474, USA.

出版信息

Genetics. 1997 Apr;145(4):1139-48. doi: 10.1093/genetics/145.4.1139.

Abstract

F1 hybrid sterility and "hybrid breakdown" of F2 and later generations in rice (Oryza sativa L.) are common and genetically complicated. We used a restriction fragment length polymorphism linkage map and F4 progeny testing to investigate hybrid sterility and hybrid breakdown in a cross between "widely compatible" O. sativa ssp. japonica cultivar Lemont from the Southern U.S. and ssp. indica cultivar Teqing from China. Our results implicate different genetic mechanisms in hybrid sterility and hybrid breakdown, respectively. Hybrid sterility appeared to be due to recombination within a number of putative differentiated "supergenes" in the rice genome, which may reflect cryptic structural rearrangements. The cytoplasmic genome had a large effect on fertility of both male and female gametes in the F1 hybrids. There appeared to be a pair of complementary genes that behaved like "wide compatibility" genes. This pair of genes and the "gamete eliminator" (S1) or "egg killer" (S-5) may influence the phenotypic effects of presumed supergenes in hybrids. Hybrid breakdown appeared to be largely due to incompatibilities between indica and japonica alleles at many unlinked epistatic loci in the genome. These proposed mechanisms may partly account for the complicated nature of postreproductive barriers in rice.

摘要

水稻(Oryza sativa L.)中F1杂种不育以及F2及后代的“杂种衰败”现象普遍存在且遗传机制复杂。我们利用限制性片段长度多态性连锁图谱和F4后代检测,研究了美国南部“广亲和”的粳稻品种Lemont与中国籼稻品种特青杂交中的杂种不育和杂种衰败现象。我们的结果分别揭示了杂种不育和杂种衰败中不同的遗传机制。杂种不育似乎是由于水稻基因组中一些假定的分化“超级基因”内的重组,这可能反映了隐秘的结构重排。细胞质基因组对F1杂种中雄配子和雌配子的育性都有很大影响。似乎存在一对表现得像“广亲和”基因的互补基因。这对基因与“配子消除者”(S1)或“卵细胞杀手”(S-5)可能会影响杂种中假定超级基因的表型效应。杂种衰败似乎很大程度上是由于基因组中许多不连锁上位位点上籼稻和粳稻等位基因之间的不相容性。这些提出的机制可能部分解释了水稻生殖后障碍的复杂性。

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