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首页> 外文期刊>Cellular microbiology >Spiroplasma and host immunity: activation of humoral immune responses increases endosymbiont load and susceptibility to certain Gram-negative bacterial pathogens in Drosophila melanogaster
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Spiroplasma and host immunity: activation of humoral immune responses increases endosymbiont load and susceptibility to certain Gram-negative bacterial pathogens in Drosophila melanogaster

机译:螺旋体和宿主免疫:体液免疫应答的激活增加了果蝇内共生菌的负荷和对某些革兰氏阴性细菌病原体的敏感性

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摘要

Spiroplasma poulsonii and its relatives are facultative, vertically transmitted endosymbionts harboured by several Drosophila species. Their longterm survival requires not only evasion of host immunity, but also that Spiroplasma does not have a net detrimental effect on host fitness. These requirements provide the central framework for interactions between host and endosymbiont. We use Drosophila melaogaster as a model to unravel aspects of the mechanistic basis of endosymbiont–host immune interactions. Here we show that Spiroplasma does not activate an immune response in Drosophila and is not susceptible to either the cellular or humoral arms of the Drosophila immune system. We gain unexpected insight into host factors that can promote Spiroplasma growth by showing that activation of Toll and Imd immune pathways actually increases Sprioplasma titre. Spiroplasma-mediated protection is not observed for variety of fungal and bacterial pathogens and Spiroplasma actually increases susceptibility of Drosophila to certain Gram-negative pathogens. Finally, we show that the growth of endosymbiotic Spiroplasma is apparently self-regulated, as suggested by the unhindered proliferation of non-endosymbiotic Spiroplasma citri in fly haemolymph.
机译:Poulsonii螺旋体及其亲属是兼性的,由果蝇几个物种携带的垂直传播的内共生体。它们的长期生存不仅需要逃避宿主免疫力,而且还需要螺旋藻对宿主健康没有净有害影响。这些要求提供了宿主与内共生体之间相互作用的中心框架。我们使用果蝇果蝇(Drosophila melaogaster)作为模型来揭示内共生体-宿主免疫相互作用的机械基础方面。在这里,我们显示螺旋藻不会激活果蝇的免疫反应,并且对果蝇免疫系统的细胞或体液均不敏感。通过显示Toll和Imd免疫途径的激活实际上会增加螺旋体的滴度,我们获得了可以促进螺旋体生长的宿主因素的意外发现。对于多种真菌和细菌病原体,未观察到螺旋体介导的保护作用,而螺旋体实际上增加了果蝇对某些革兰氏阴性病原体的敏感性。最后,我们证明内生共生螺旋体的生长显然是自我调节的,这是由非内生柠檬酸螺旋体在蝇血淋巴中的无阻碍增殖所暗示的。

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