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Functional Divergence of Former Alleles in an Ancient Asexual Invertebrate

机译:古代无性无脊椎动物中前等位基因的功能差异

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Theory suggests it should be difficult for asexual organisms to adapt to a changing environment because genetic diversity can only arise from mutations accumulating within direct antecedents and not through sexual exchange. In an asexual microinvertebrate, the bdelloid rotifer, we have observed a mechanism by which such organisms could acquire the diversity needed for adaptation. Gene copies most likely representing former alleles have diverged in function so that the proteins they encode play complementary roles in survival of dry conditions. One protein prevents desiccation-sensitive enzymes from aggregating during drying, whereas its counterpart does not have this activity, but is able to associate with phospholipid bilayers and is potentially involved in maintenance of membrane integrity. The functional divergence of former alleles observed here suggests that adoption of asexual reproduction could itself be an evolutionary mechanism for the generation of diversity.
机译:理论表明,无性生物很难适应不断变化的环境,因为遗传多样性只能来自直接先例中积累的突变,而不能通过有性交换来积累。在无性的微脊椎动物无脊椎动物轮虫中,我们观察到了一种机制,通过这种机制,这种生物可以获取适应所需的多样性。最有可能代表先前等位基因的基因拷贝在功能上有所不同,因此它们编码的蛋白质在干燥条件下的存活中起互补作用。一种蛋白质可防止干燥期间干燥敏感的酶聚集,而另一种蛋白质则不具有此活性,但能够与磷脂双层结合,并可能参与维持膜的完整性。在这里观察到的前等位基因的功能差异表明,无性繁殖的采用本身可能是多样性产生的进化机制。

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