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Early gut colonizers shape parasite susceptibility and microbiota composition in honey bee workers

机译:早期肠道定植者塑造了蜜蜂工蜂的寄生虫敏感性和微生物群组成

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摘要

Microbial symbionts living within animal guts are largely composed of resident bacterial species, forming communities that often provide benefits to the host. Gut microbiomes of adult honey bees (Apis mellifera) include core residents such as the betaproteobacterium Snodgrassella alvi, alongside transient parasites such as the protozoan Lotmaria passim. To test how these species affect microbiome composition and host physiology, we administered S. alvi and/or L. passim inocula to newly emerged worker bees from four genetic backgrounds (GH) and reared them in normal (within hives) or stressed (protein-deficient, asocial) conditions. Microbiota acquired by normal bees were abundant but quantitatively differed across treatments, indicating treatment-associated dysbiosis. Pretreatment with S. alvi made normal bees more susceptible to L. passim and altered developmental and detoxification gene expression. Stressed bees were more susceptible to L. passim and were depauperate in core microbiota, yet supplementation with S. alvi did not alter this susceptibility. Microbiomes were generally more variable by GH in stressed bees, which also showed opposing and comparatively reduced modulation of gene expression responses to treatments compared with normal bees. These data provide experimental support for a link between altered gut microbiota and increased parasite and pathogen prevalence, as observed from honey bee colony collapse disorder.
机译:生活在动物肠道内的微生物共生体主要由常驻细菌组成,形成了常常为宿主带来好处的群落。成年蜜蜂的肠道微生物群(蜜蜂)包括核心居民,例如β变形蛋白细菌Snodgrassella alvi,以及瞬时寄生虫,例如原生动物Lotmaria passim。为了测试这些物种如何影响微生物组组成和宿主生理,我们对来自四个遗传背景(GH)的新出现的工蜂施行了S. alvi和/或Passim接种,并以正常(蜂巢内)或压力(蛋白质-缺乏,社交的)条件。正常蜜蜂获得的微生物群丰富,但在不同处理之间在数量上存在差异,表明与治疗相关的营养不良。用al。S. alvi预处理使正常蜜蜂更易受L. Passim感染,并改变了发育和排毒基因的表达。受应激的蜜蜂更容易受到钝角乳杆菌的侵害,并且在核心菌群中会退化,但是补充链球菌不会改变这种敏感性。生长激素通常在应激蜜蜂中对微生物群的影响更大,与正常蜜蜂相比,这也显示了对处理的基因表达响应的相反和相对减少的调节。这些数据为改变蜜蜂的肠道菌群与增加的寄生虫和病原体患病率之间的联系提供了实验支持,正如从蜜蜂蜂群塌陷症中观察到的那样。

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