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Community assembly of the native C. elegans microbiome is influenced by time, substrate and individual bacterial taxa

机译:Native C. Elegans Microbiome的社区组装受时间,底物和个体细菌分类群的影响

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Microbiome communities are complex assemblages of bacteria. The dissection of their assembly dynamics is challenging because it requires repeated sampling of both host and source communities. We used the nematode Caenorhabditis elegans as a model to study these dynamics. We characterized microbiome variation from natural worm populations and their substrates for two consecutive years using 16S rDNA amplicon sequencing. We found conservation in microbiome composition across time at the genus, but not amplicon sequencing variant (ASV) level. Only three ASVs were consistently present across worm samples (Comamonas ASV10859, Pseudomonas ASV7162 and Cellvibrio ASV9073). ASVs were more diverse in worms from different rather than the same substrates, indicating an influence of the source community on microbiome assembly. Surprisingly, almost 50% of worm-associated ASVs were absent in corresponding substrates, potentially due to environmental filtering. Ecological network analysis revealed strong effects of bacteria-bacteria interactions on community composition: While a dominant Erwinia strain correlated with decreased alpha-diversity, predatory bacteria of the Bdellovibrio and like organisms associated with increased alpha-diversity. High alpha-diversity was further linked to high worm population growth, especially on species-poor substrates. Our results highlight that microbiomes are individually shaped and sensitive to dramatic community shifts in response to particular competitive species.
机译:微生物组合是细菌的复杂化合物。他们的装配动态的解剖是挑战性的,因为它需要对主机和源社区的重复采样。我们使用了Nematode Caenorhabditis elegans作为研究这些动态的模型。我们使用16S RDNA扩增子测序将微生物组在自然蠕虫种群及其基材中的含量分化。我们发现在Genus的时间横跨微生物组合物,但未扩增子测序变量(ASV)水平。只有三个ASV始终存在于蠕虫样品上(Comamonas ASV10859,假单胞菌ASV7162和Cellvibrio ASV9073)。 ASV在不同而不是相同的底物中的蠕虫更多样化,表明源界对微生物组件的影响。令人惊讶的是,在相应的基材中不存在近50%的蠕虫相关的ASV,可能是由于环境过滤。生态网络分析揭示了细菌 - 细菌相互作用对群落成分的强烈影响:而主导的Erwinia菌株与α-多样性降低,BDelloviro的谓性细菌以及与α-多样性相关的生物相关。高α-多样性进一步与高蠕虫种群增长相连,特别是在物种贫困的基材上。我们的结果突出显示微生物体在响应特定竞争物种的戏剧性群落变化中单独形状和敏感。

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