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首页> 外文期刊>Evolution: International Journal of Organic Evolution >What uses are mating types? The 'developmental switch' model
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What uses are mating types? The 'developmental switch' model

机译:交配类型有什么用途? “开发开关”模型

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Why mating types exist at all is subject to much debate. Among hypotheses, mating types evolved to control organelle transmission during sexual reproduction, or to prevent inbreeding or same-clone mating. Here I review data from a diversity of taxa (including ciliates, algae, slime molds, ascomycetes, and basidiomycetes) to show that the structure and function of mating types run counter the above hypotheses. I argue instead for a key role in triggering developmental switches. Genomes must fulfill a diversity of alternative programs along the sexual cycle. As a haploid gametophyte, an individual may grow vegetatively (through haploid mitoses), or initiate gametogenesis and mating. As a diploid sporophyte, similarly, it may grow vegetatively (through diploid mitoses) or initiate meiosis and sporulation. Only diploid sporophytes (and not haploid gametophytes) should switch on the meiotic program. Similarly, only haploid gametophytes (not sporophytes) should switch on gametogenesis and mating. And they should only do so when other gametophytes are ready to do the same in the neighborhood. As argued here, mating types have evolved primarily to switch on the right program at the right moment.
机译:为什么根本存在交配类型仍有许多争议。在这些假说中,交配类型进化为在有性生殖过程中控制细胞器的传播,或防止近交或同系交配。在这里,我回顾了各种分类单元(包括纤毛虫,藻类,粘液霉菌,子囊菌和担子菌)的数据,以表明交配类型的结构和功能与上述假设背道而驰。相反,我认为在触发发展转换中起关键作用。基因组必须在性周期中执行多种多样的替代方案。作为单倍体配子体,个体可以营养生长(通过单倍体有丝分裂),或启动配子发生和交配。同样,作为二倍体孢子体,它可以营养生长(通过二倍体有丝分裂)或引发减数分裂和孢子形成。只有二​​倍体孢子体(而非单倍体配子体)才应开启减数分裂程序。同样,只有单倍体配子体(而不是孢子体)才可以进行配子发生和交配。而且,只有在其他配子体准备在附近做同样的事情时,他们才应该这样做。如此处所述,交配类型的发展主要是为了在适当的时机启动正确的程序。

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