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Testing the pluralist approach to sex: the influence of environment on synergistic interactions between mutation load and parasitism in Daphnia magna.

机译:测试性别多元化方法:环境对大型蚤(Daphnia magna)中突变负荷和寄生虫之间协同相互作用的影响。

摘要

Both deleterious mutations and parasites have been acknowledged as potential selective forces responsible for the evolutionary maintenance of sexual reproduction. The pluralist approach to sex proposes that these two factors may have to interact synergistically in order to stabilize sex, and one of the simplest ways this could occur is if parasites are capable of causing synergistic epistasis between mutations in their hosts. However, the effects of both deleterious mutations and parasitism are known to be influenced by a range of environmental factors, so the nature of the interaction may depend upon the organisms' environment. Using chemically mutated Daphnia magna lines, we examined the effects of mutation and parasitism under a range of temperature and food regimes. We found that although parasites were capable of causing synergistic epistasis between mutations in their hosts, these effects were dependent upon an interaction between parasite genotype and temperature.
机译:有害突变和寄生虫均被认为是负责性繁殖进化维持的潜在选择性力量。多元性行为方法提出,这两个因素可能必须协同作用才能稳定性行为,而这可能发生的最简单方式之一是,寄生虫是否能够在其宿主突变之间引起协同上位。但是,已知有害突变和寄生虫的影响都受到一系列环境因素的影响,因此相互作用的性质可能取决于生物体的环境。我们使用化学突变的水蚤(Daphnia magna)品系,研究了在一定温度和食物条件下突变和寄生的影响。我们发现,尽管寄生虫能够在其宿主的突变之间引起协同上位,但这些作用取决于寄生虫基因型和温度之间的相互作用。

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