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首页> 外文期刊>Microbial Ecology: An International Journal >Acquisition of Uropygial Gland Microbiome by Hoopoe Nestlings
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Acquisition of Uropygial Gland Microbiome by Hoopoe Nestlings

机译:霍普索雏鸟采集uCopygial腺体微生物

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Mutualistic symbioses between animals and bacteria depend on acquisition of appropriate symbionts while avoiding exploitation by non-beneficial microbes. The mode of acquisition of symbionts would determine, not only the probability of encountering but also evolutionary outcomes of mutualistic counterparts. The microbiome inhabiting the uropygial gland of the European hoopoe (Upupa epops) includes a variety of bacterial strains, some of them providing antimicrobial benefits. Here, the mode of acquisition and stability of this microbiome is analyzed by means of Automated rRNA Intergenic Spacer Analysis and two different experiments. The first experiment impeded mothers' access to their glands, thus avoiding direct transmission of microorganisms from female to offspring secretions. The second experiment explored the stability of the microbiomes by inoculating glands with secretions from alien nests. The first experiment provoked a reduction in similarity of microbiomes of mother and nestlings. Interestingly, some bacterial strains were more often detected when females had not access to their glands, suggesting antagonistic effects among bacteria from different sources. The second experiment caused an increase in richness of the microbiome of receivers in terms of prevalence of Operational Taxonomic Units (OTUs) that reduced differences in microbiomes of donors and receivers. That occurred because OTUs that were present in donors but not in receivers incorporated to the microbiome of the latter, which provoked that cross-inoculated nestlings got similar final microbiomes that included the most prevalent OTUs. The results are therefore consistent with a central role of vertical transmission in bacterial acquisition by nestling hoopoes and support the idea that the typical composition of the hoopoe gland microbiome is reached by the incorporation of some bacteria during the nestling period. This scenario suggests the existence of a coevolved core microbiome composed by a mix of specialized vertically transmitted strains and facultative symbionts able to coexist with them. The implications of this mixed mode of transmission for the evolution of the mutualism are discussed.
机译:动物和细菌之间的互动性共生取决于收购适当的共生,同时避免通过非有益微生物剥削。 ASIMBION的获取方式将决定,不仅确定遇到的概率,而且是互相互动同行的进化结果。居住欧洲霍普奥(UPUPA EPOPS)的ubropygial腺体的微生物组包括各种细菌菌株,其中一些是提供抗微生物效果。这里,通过自动RRNA代族间隔分析和两个不同的实验分析该微生物组的采集和稳定性。第一个实验阻碍了母亲对其腺体的访问,从而避免将微生物直接传递给女性到后代分泌物。第二个实验通过将腺体与外星人巢穴分泌物接种腺体来探讨了微生物的稳定性。第一个实验激发了母亲和雏鸟的微生物体的相似性降低。有趣的是,当雌性没有进入他们的腺体时,更多地检测到一些细菌菌株,表明来自不同来源的细菌之间的拮抗作用。第二个实验在运作分类单位(OTUS)的流行方面导致接收器微生物微生物的丰富性增加,这些单位(OTUS)降低了捐助者和接收者微生物微生物差异的差异。发生这种情况,因为在施主中存在但不包含在后者的微生物组中的OTU,这激起了交叉接种嵌腹物质的最终微生物,其中包括最普遍的OTU。因此,结果一致地通过嵌入箍靴垂直透射在细菌采集中的核心作用,并支持套筒腺微生物组的典型组成通过在雏鸟期间掺入一些细菌来达到。这种情况表明,存在于能够与它们共存的专用垂直透射的菌株和兼容兼容的兼容性Symbion组成的共同核心微生物组。讨论了这种混合传播模式对共同主义演变的影响。

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