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Unexpected Mechanism of Symbiont-Induced Reversal of Insect Sex: Feminizing Wolbachia Continuously Acts on the Butterfly Eurema hecabe during Larval Development

机译:共生体诱导的昆虫性逆转的意外机制:女性化Wolbachia在幼虫发育过程中持续作用于蝴蝶Eurema hecabe

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摘要

When the butterfly Eurema hecabe is infected with two different strains (wHecCI2 and wHecFem2) of the bacterial endosymbiont Wolbachia, genetic males are transformed into functional females, resulting in production of all-female broods. In an attempt to understand how and when the Wolbachia endosymbiont feminizes genetically male insects, larval insects were fed an antibiotic-containing diet beginning at different developmental stages until pupation. When the adult insects emerged, strikingly, many of them exhibited sexually intermediate traits in their wings, reproductive organs, and genitalia. The expression of intersexual phenotypes was strong in the insects treated from first instar, moderate in the insects treated from third instar, and weak in the insects treated from fourth instar. The insects treated from early larval instar grew and pupated normally but frequently failed to emerge and died in the pupal case. The dead insects in the pupal case contained lower densities of the feminizing Wolbachia endosymbiont than the successfully emerged insects, although none of them were completely cured of the symbiont infection. These results suggest the following: (i) the antibiotic treatment suppressed the population of feminizing Wolbachia endosymbionts; (ii) the suppression probably resulted in attenuated feminizing activity of the symbiont, leading to expression of intersexual host traits; (iii) many of the insects suffered pupal mortality, possibly due to either intersexual defects or Wolbachia-mediated addiction; and hence (iv) the feminizing Wolbachia endosymbiont continuously acts on the host insects during larval development for expression of female phenotypes under a male genotype. Our finding may prompt reconsideration of the notion that Wolbachia-induced reproductive manipulations are already complete before the early embryonic stage and provide insights into the mechanism underlying the symbiont-induced reversal of insect sex.
机译:当蝴蝶Eurema hecabe被细菌内共生菌Wolbachia的两种不同株(wHecCI2和wHecFem2)感染时,遗传上的雄性转化为有功能的雌性,导致产生全雌性亲鱼。为了了解沃尔巴氏菌内共生菌如何以及何时使遗传上的雌性昆虫女性化,对幼虫昆虫从不同的发育阶段开始喂饲含抗生素的食物,直到化脓为止。令人惊讶的是,当成虫出现时,许多昆虫的翅膀,生殖器官和生殖器都表现出性中间性状。在第一龄幼虫处理的昆虫中,性交表型的表达较强,在第三龄幼虫处理的昆虫中,性表达的表达弱,而在第四龄幼虫处理的昆虫中,性表达的表达弱。从幼虫期幼虫处理的昆虫正常生长和化up,但在frequently病例中经常未能出现并死亡。 case虫中的死亡昆虫比成功出现的昆虫具有更低密度的女性化Wolbachia内共生体,尽管它们都不能完全治愈共生体感染。这些结果表明:(i)抗生素治疗抑制了女性化的沃尔巴氏菌内共生菌的种群; (ii)抑制可能导致共生体的女性化活性减弱,导致两性宿主特征的表达; (iii)许多昆虫的p死亡可能是由于两性缺陷或沃尔巴克氏体介导的成瘾;因此,(iv)女性化的沃尔巴氏菌内共生体在幼虫发育期间连续作用于宿主昆虫,以在男性基因型下表达女性表型。我们的发现可能会促使人们重新考虑沃尔巴克氏菌引起的生殖操作在胚胎早期之前就已经完成的观点,并为共生体诱导的昆虫性逆转的潜在机制提供了见识。

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