首页> 美国卫生研究院文献>PLoS Neglected Tropical Diseases >Asymmetric Wolbachia Segregation during EarlyBrugia malayi Embryogenesis Determines Its Distribution inAdult Host Tissues
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Asymmetric Wolbachia Segregation during EarlyBrugia malayi Embryogenesis Determines Its Distribution inAdult Host Tissues

机译:早期的不对称Wolbachia偏析马来布鲁氏菌的胚胎发生决定了它的分布成人宿主组织

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摘要

Wolbachia are required for filarial nematode survival and fertility and contribute to the immune responses associated with human filarial diseases. Here we developed whole-mount immunofluorescence techniques to characterize Wolbachia somatic and germline transmission patterns and tissue distribution in Brugia malayi, a nematode responsible for lymphatic filariasis. In the initial embryonic divisions, Wolbachia segregate asymmetrically such that they occupy only a small subset of cells in the developing embryo, facilitating their concentration in the adult hypodermal chords and female germline. Wolbachia are not found in male reproductive tissues and the absence of Wolbachia from embryonic germline precursors in half of the embryos indicates Wolbachia loss from the male germline may occur in early embryogenesis. Wolbachia rely on fusion of hypodermal cells to populate adult chords. Finally, we detect Wolbachia in the secretory canal lumen suggesting living worms may release bacteria and/or their products into their host.
机译:丝状线虫的生存和繁殖需要沃尔巴氏菌,它有助于与人丝虫病相关的免疫反应。在这里,我们开发了完整的免疫荧光技术来表征Wolbachia体细胞和种系的传播方式以及在马来布鲁氏菌(一种负责淋巴丝虫病的线虫)中的组织分布。在最初的胚胎分裂中,沃尔巴克氏菌不对称地分离,从而它们仅占据发育中的胚胎中一小部分细胞,从而促进了它们在成年的皮下和生系中的集中。在雄性生殖组织中未发现沃尔巴氏菌,并且一半胚胎的胚种系前体不存在沃尔巴氏菌,这表明雄性种系的沃尔巴氏菌损失可能发生在早期胚胎发生中。 Wolbachia依靠皮下细胞的融合来形成成年和弦。最后,我们在分泌管腔中检测到沃尔巴氏菌,这表明活的蠕虫可能会将细菌和/或其产物释放到宿主体内。

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