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Sperm chromatin remodelling and Wolbachia-induced cytoplasmic incompatibility in Drosophila.

机译:果蝇中的精子染色质重塑和Wolbachia诱导的细胞质不相容性。

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Wolbachia pipientis is an obligate bacterial endosymbiont, which has successfully invaded approximately 20% of all insect species by manipulating their normal developmental patterns. Wolbachia-induced phenotypes include parthenogenesis, male killing, and, most notably, cytoplasmic incompatibility. In the future these phenotypes might be useful in controlling or modifying insect populations but this will depend on our understanding of the basic molecular processes underlying insect fertilization and development. Wolbachia-infected Drosophila simulans express high levels of cytoplasmic incompatibility in which the sperm nucleus is modified and does not form a normal male pronucleus when fertilizing eggs from uninfected females. The sperm modification is somehow rescued in eggs infected with the same strain of Wolbachia. Thus, D. simulans has become an excellent model organism for investigating the manner in which endosymbionts can alter reproductive programs in insect hosts. This paper reviews the current knowledge of Drosophila early development and particularly sperm function. Developmental mutations in Drosophila that are known to affect sperm function will also be discussed.incompatibility.
机译:pipientis Wolbachia pipientis是专性细菌内共生体,通过操纵其正常发育模式已成功入侵了所有昆虫种类的约20%。 Wolbachia诱导的表型包括孤雌生殖,雄性杀伤,最明显的是细胞质不相容。将来,这些表型可能会用于控制或改变昆虫种群,但这取决于我们对昆虫受精和发育的基本分子过程的了解。感染了Wolbachia的果蝇模拟物表达了高水平的细胞质不相容性,其中精子核被修饰,当从未感染的雌性卵中受精时不能形成正常的雄性原核。精子修饰可以以某种方式在感染了相同的Wolbachia菌株的卵中得以挽救。因此,D。simulans已成为研究内共生体如何改变昆虫宿主生殖程序的一种极好的模式生物。本文回顾了果蝇早期发育,特别是精子功能的最新知识。果蝇中已知会影响精子功能的发育突变也将进行讨论。

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