首页> 外文期刊>Genetic Resources and Crop Evolution >Selection at the Ms locus in open pollinated onion (Allium cepa L.) populations possessing S-cytoplasm or mixtures of N- and S-cytoplasms.
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Selection at the Ms locus in open pollinated onion (Allium cepa L.) populations possessing S-cytoplasm or mixtures of N- and S-cytoplasms.

机译:在具有S细胞质或N和S细胞质混合物的开放授粉洋葱(Allium cepa L.)种群中Ms位点的选择。

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摘要

The bulb onion (Allium cepa L.) was historically seed propagated by open pollination (OP). Cytoplasmic-genic male sterility (CMS) and protandry encourage outcrossing among individual onion plants. The most common source of CMS in onion is conditioned by the interaction of sterile (S) cytoplasm with a single nuclear male-fertility restoration (Ms) locus. We previously reported that the majority of OP onion populations possess normal (N) male-fertile cytoplasm and varying frequencies of the dominant Ms allele. It was unclear why N-cytoplasmic onion populations often possess relatively high frequencies of the Ms allele, which has no obvious function. We used computer simulations to estimate changes in allelic frequencies at Ms for onion populations possessing S-cytoplasm or a mixture of N- and S-cytoplasms, and to determine if frequencies of the Ms allele stay constant or change due to failure of male gamete production from male-sterile (S msms) plants. The models revealed selection against the recessive ms allele over generations in onion populations possessing S-cytoplasm and varying amounts of self pollination and inbreeding depression. These models were consistent with field and molecular analyses documenting that N-cytoplasm and the dominant Ms allele predominate in OP onion populations..
机译:历史上,鳞茎洋葱(葱属洋葱)是通过开放授粉(OP)繁殖的。细胞质遗传的雄性不育(CMS)和脯氨酸促进了洋葱个体间的异交。洋葱中CMS的最常见来源是通过无菌(S)细胞质与单个核雄性育性恢复(Ms)基因座的相互作用来调节的。我们先前曾报道大多数OP洋葱种群拥有正常的(N)雄性可育细胞质和占主导地位的Ms等位基因的频率不同。目前尚不清楚为什么N-胞质洋葱种群经常具有相对较高的Ms等位基因频率,而Ms等位基因没有明显的功能。我们使用计算机模拟来估计拥有S细胞质或N细胞和S细胞质混合物的洋葱群体在Ms处等位基因频率的变化,并确定Ms等位基因的频率是否保持恒定或由于雄配子生产失败而改变来自雄性不育(S msms)植物。该模型揭示了在具有S细胞质以及不同数量的自花授粉和近交抑制作用的洋葱种群中针对隐性ms等位基因的选择。这些模型与现场和分子分析相吻合,后者证明N胞质和显性Ms等位基因在OP洋葱种群中占主导地位。

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