Loss of reproductive parasitism following transfer of male-killing Wolbachia to Drosophila melanogaster and Drosophila simulans
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Wolbachia manipulates insect host biology through a variety of means that result in elevated fitness of infected females, enhancing its own transmission. A Wolbachia strain (wInn) naturally infecting D. innubila induces male-killing, while native strains of D. melanogaster and D. simulans usually induce cytoplasmic incompatibility (CI). In this study, we transferred wInn to D. melanogaster and D. simulans by embryonic microinjection, expecting conservation of the male-killing phenotype to the novel hosts, which are more suitable for genetic analysis. In contrast to our expectations, there was no effect on offspring sex ratio. Furthermore, no CI was observed in the transinfected flies. Overall, transinfected D. melanogaster lines displayed lower transmission rate and lower densities of Wolbachia than transinfected D. simulans lines, in which established infections were transmitted with near-perfect fidelity. In D. simulans, strain wInn had no effect on fecundity and egg to adult developm...
沃尔巴克氏体(Wolbachia)可通过多种途径调控昆虫宿主的生物学特性,以提升感染雌虫的适合度,进而增强自身的传播能力。自然感染Innubila果蝇(D. innubila)的沃尔巴克氏体菌株wInn可诱导杀雄表型,而黑腹果蝇(D. melanogaster)与拟果蝇(D. simulans)的本土沃尔巴克氏体菌株通常会引发细胞质不相容(cytoplasmic incompatibility, CI)。本研究通过胚胎显微注射技术,将wInn菌株转入黑腹果蝇与拟果蝇体内,预期该杀雄表型可在这两种更适用于遗传分析的新宿主中得以保留。但与预期相悖的是,wInn并未对子代性别比例产生任何影响;此外,转感染的果蝇体内也未观测到细胞质不相容现象。总体而言,转感染的黑腹果蝇品系的沃尔巴克氏体传播率与菌株密度均低于转感染的拟果蝇品系——后者的稳定感染可近乎完美地传递。在拟果蝇中,wInn菌株对宿主的繁殖力以及卵至成虫的发育过程均无显著影响……
创建时间:
2025-04-04



