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Sexual dimorphism in Drosophila melanogaster survival of Beauveria bassiana infection depends on core immune signaling

机译:球孢白僵菌感染果蝇的性二态取决于核心免疫信号。

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摘要

In many animal species, females and males differ in physiology, lifespan, and immune function. The magnitude and direction of the sexual dimorphism in immune function varies greatly and the genetic and mechanistic bases for this dimorphism are often unknown. Here we show that Drosophila melanogaster females are more likely than males to die from infection with several strains of the fungal entomopathogen Beauveria bassiana. The sexual dimorphism is not exclusively due to barrier defenses and persists when flies are inoculated by injection as well as by surface exposure. Loss of function mutations of Toll pathway genes remove the dimorphism in survivorship. Surprisingly, loss of function mutation of relish, a gene in the Imd pathway, also removes the dimorphism, but the dimorphism persists in flies carrying other Imd pathway mutations. The robust sexual dimorphism in D. melanogaster survival to B. bassiana presents opportunities to further dissect its mechanistic details, with applications for biological control of insect vectors of human disease and insect crop pests.
机译:在许多动物物种中,雌性和雄性在生理,寿命和免疫功能方面都不同。免疫功能中性二态性的大小和方向变化很大,并且这种二态性的遗传和机制基础通常是未知的。在这里,我们显示果蝇果蝇比男性更容易死于几种真菌性昆虫病原球孢白僵菌的感染。性二态性并非仅由于屏障防御而引起,并且在通过注射以及表面暴露接种苍蝇时持续存在。 Toll通路基因功能突变的丧失消除了生存中的二态性。出乎意料的是,Imd途径中的基因津津有味的功能突变的丧失也消除了双态性,但是在携带其他Imd途径突变的果蝇中这种双态性仍然存在。 D. melanogaster到B. bassiana的生存中强大的性二态性为进一步剖析其机理细节提供了机会,并将其应用于生物控制人类疾病和害虫的病媒。

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