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Intensity of Nosema ceranae infection is associated with specific honey bee gut bacteria and weakly associated with gut microbiome structure

机译:鼻部Nosema cerenae感染的强度与特定的蜜蜂肠道细菌有关,而与肠道微生物组结构的关系较弱

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The honey bee, Apis mellifera, pollinates a wide variety of essential crops in numerous ecosystems around the world but faces many modern challenges. Among these, the microsporidian pathogen Nosema ceranae is one of the primary detriments to honey bee health. Nosema infects the honey bee gut, which harbors a highly specific, coevolved microbiota heavily involved in bee immune function and nutrition. Here, we extend previous work investigating interactions between the honey bee gut microbiome and N. ceranae by studying experimentally infected bees that were returned to their colonies and sampled 5, 10, and 21 days post-infection. We measured Nosema load with quantitative PCR and characterized microbiota with 16S rRNA gene amplicon sequencing. We found significant colony level variation in infection levels, and subtle differences between the microbiota of colonies with high infection levels versus those with low infection levels. Two exact sequence variants of Gilliamella, a core gut symbiont that has previously been associated with gut dysbiosis, were significantly more abundant in bees from colonies with high Nosema loads versus those with low Nosema loads. These bacteria deserve further study to determine if they facilitate more intense infection by Nosema ceranae.
机译:蜜蜂Apis mellifera对世界各地许多生态系统中的多种必需作物进行授粉,但面临许多现代挑战。其中,微孢子虫病原体Nosema ceranae是蜜蜂健康的主要危害之一。 Nosema感染蜜蜂的肠道,该肠道具有高度特异性,共同进化的微生物群,这些微生物群与蜜蜂的免疫功能和营养密切相关。在这里,我们通过研究经过实验感染的蜜蜂返回蜜蜂的菌落并在感染后第5、10和21天进行采样,扩展了先前的工作,以研究蜜蜂肠道微生物组与cerana.ceranae之间的相互作用。我们通过定量PCR测量了Nosema负荷,并通过16S rRNA基因扩增子测序对微生物群进行了表征。我们发现菌落水平在感染水平上有显着差异,感染水平高的菌落与菌落水平低的菌落之间的细微差别。 Gilliamella是一种先前已与肠道营养不良有关的核心肠道共生体的两个确切序列变异,其高Nosema负荷菌落的蜜蜂比低Nosema负荷的菌落中的丰富得多。这些细菌值得进一步研究,以确定它们是否有助于更广泛地由Nosema ceranae感染。

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