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The potential role of the X chromosome in the emergence of male-killing from mutualistic endosymbionts

机译:X染色体在相互共生共生体杀雄中的潜在作用

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Endosymbionts infect most arthropods and cause a wide variety of phenotypes in their hosts, ranging from obligate mutualists to reproductive parasites. One of the most dramatic forms of reproductive parasitism is male-killing which involves the endosymbiont killing all of the sons of infected females. A phenotype with such a dramatic effect on host fitness is expected to provide strong selection for suppressors of male-killing, yet in many well-studied male-killer/arthropod systems, no suppressors have been found. Plausible explanations for a lack of resistance exist and include cryptic cytoplasmic incompatibility (males that survive male-killing are therefore infected and matings with uninfected females are incompatible) and deleterious pleiotropic effects of altering early embryonic development-the precise time when male-killing often occurs. Here I describe another possible scenario that sidesteps the problem: male killing may arise through an epistatic interaction between an endosymbiont and a paternally acting locus on the X chromosome. Since paternal X chromosomes never find themselves in sons, they never suffer from male-killing and instead enjoy any benefits (decreased sibling competition, inbreeding avoidance) caused by killing males. This scenario allows for the possibility that male-killing arose recently, even if there is no evidence for evolution in the endosymbiont genotype.
机译:内共生菌感染大多数节肢动物,并在其宿主中引起各种各样的表型,从专心的共产主义者到生殖寄生虫。生殖寄生病最引人注目的形式之一是杀害男性,其中涉及共生菌杀死所有感染女性的儿子。预期对宿主适应性具有如此显着影响的表型将为雄性杀伤抑制剂提供强大的选择,但是在许多经过充分研究的雄性杀手/节肢动物系统中,未发现抑菌剂。缺乏抗性的合理解释存在,包括细胞质的不相容性(男性杀死后存活的雄性被感染,与未感染雌性的交配不相容)和改变早期胚胎发育的有害多效性效应-经常发生男性杀死的确切时间。在这里,我描述了另一个可以避免该问题的情况:雄性杀手可能是通过共生体和X染色体上父系作用位点之间的上位相互作用而引起的。由于父系X染色体从未在儿子中找到自己,因此它们从未遭受过男性杀害,而是享有由杀死男性带来的任何好处(同胞竞争减少,近亲回避减少)。即使没有证据表明内共生体基因型进化,这种情况也允许最近发生男性杀戮的可能性。

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