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首页> 外文期刊>The American Naturalist: Devoted to the Conceptual Unification of the Biological Sciences >Initial Invasion of Gametophytic Self-Incompatibility Alleles in the Absence of Tight Linkage between Pollen and Pistil S Alleles
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Initial Invasion of Gametophytic Self-Incompatibility Alleles in the Absence of Tight Linkage between Pollen and Pistil S Alleles

机译:花粉和雌蕊S等位基因之间缺乏紧密联系的配子体自交不亲和等位基因的初次入侵

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摘要

In honaonaorphic self-incompatibility (SI) systems of plants, the loci controlling the pollen and pistil types are tightly linked, and this prevents the generation of compatible combinations of alleles expressing pollen and pistil types, which would result in self-fertilization. We modeled the initial invasion of the first pollen and pistil alleles in gametophy tic SI to determine whether these alleles can stably coexist in a population without tight linkage. We assume pollen and pistil loci each carry an incompatibility allele S and an allele without an incompatibility function N. We assume that pollen with an S allele are incompatible with pistils carrying S alleles, whereas other crosses are compatible. Ovules in pistils carrying an S allele suffer viability costs because recognition consumes resources. We found that the cost of carrying a pistil S allele allows pollen and pistil S alleles to coexist in a stable equilibrium if linkage is partial. This occurs because parents that carry pistil S alleles but are homozygous for pollen Nalleles cannot avoid self-fertilization; however, they suffer viability costs. Hence, pollen N alleles are selected again. When pollen and pistil S alleles can coexist in a polymorphic equilibrium, selection will favor tighter linkage
机译:在植物的性腺自交不亲和(SI)系统中,控制花粉和雌蕊类型的基因座紧密相连,这会阻止表达花粉和雌蕊类型的等位基因的兼容组合的产生,从而导致自体受精。我们对配子体SI中第一个花粉和雌蕊等位基因的初始入侵进行了建模,以确定这些等位基因是否可以在没有紧密连锁的人群中稳定地共存。我们假设花粉和雌蕊基因座各自携带不相容等位基因S和没有不相容功能N的等位基因。我们假设带有S等位基因的花粉与携带S等位基因的雌蕊不相容,而其他杂交是相容的。携带S等位基因的雌蕊的胚珠会承受生存力成本,因为识别会消耗资源。我们发现携带雌蕊S等位基因的成本允许花粉和雌蕊S等位基因在部分连接的情况下稳定地共存。发生这种情况是因为携带雌蕊S等位基因但对花粉Nalleles纯合的父母无法避免自我受精。但是,它们承受了生存成本。因此,再次选择花粉N个等位基因。当花粉和雌蕊S等位基因可以多态平衡共存时,选择将有利于更紧密的连接

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