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Genetics of postzygotic reproductive isolation in plants

机译:植物后合子生殖分离的遗传学

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Postzygotic reproductive isolation, based on negative interactions of genes, is a key aspect of divergent speciation in plants and animals. The effect of the interaction manifests as a drastic reduction in fitness of hybrids of the first of subsequent generations, which is expressed as hybrid lethality, weakness or sterility. Both simple genetic control of genetic incompatibility, which includes interallelic negative complementation or epistatic interactions of a limited number of genes, and more complex control, based on epistatic interactions of many genes, have been described in plants. It is thought that genes for reproductive isolation are nonuniformly distributed over the genome and are related to differential adaptation. The mosaic organization of the genomes in this respect provides restoration of their structural and functional integrity upon interspecies hybridization in natural conditions. Many cultured and wild plant species, in contrast to animals, were found to be polymorphic at genes controlling interspecies incompatibility. This fact facilitates genetic analysis of incompatibility and broadens perspectives in studying the structure, functions, and molecular evolution of the genes controlling postzygotic reproductive isolation, in view of the possible leading role of these genes in adaptive speciation.
机译:基于基因的负面相互作用的合子后生殖隔离是动植物物种形成分化的关键方面。相互作用的影响表现为后代第一代杂种的适应性急剧降低,这表现为杂种的致死性,劣势或不育性。在植物中已经描述了遗传不相容性的简单遗传控制,其包括等位基因负互补或有限数量的基因的上位性相互作用,以及基于许多基因的上位性相互作用的更复杂的控制。认为用于生殖分离的基因在基因组上不均匀分布,并且与差异适应有关。在自然条件下,种间杂交后,基因组的镶嵌组织可恢复其结构和功能的完整性。与动物相比,许多养殖和野生植物物种在控制种间不相容性的基因上具有多态性。考虑到这些基因在适应性物种形成中的潜在领导作用,这一事实有助于对不相容性进行遗传分析,并拓宽了研究控制合子后生殖分离的基因的结构,功能和分子进化的视野。

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