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A Tale of Transmission: Aeromonas veronii Activity within Leech-Exuded Mucus

机译:传播的故事:水Lee分泌的粘液中的veronii气单胞菌活动

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Transmission, critical to the establishment and persistence of host-associated microbiotas, also exposes symbionts to new environmental conditions. With horizontal transmission, these different conditions represent major lifestyle shifts. Yet genome-wide analyses of how microbes adjust their transcriptomes toward these dramatic shifts remain understudied. Here, we provide a comprehensive and comparative analysis of the global transcriptional profiles of a symbiont as it shifts between lifestyles during transmission. The gammaproteobacterium Aeromonas veronii is transmitted from the gut of the medicinal leech to other hosts via host mucosal castings, yet A. veronii can also transition from mucosal habitancy to a free-living lifestyle. These three lifestyles are characterized by distinct physiological constraints and consequently lifestyle-specific changes in the expression of stress-response genes. Mucus-bound A. veronii had the greatest expression in terms of both the number of loci and levels of transcription of stress-response mechanisms. However, these bacteria are still capable of proliferating within the mucus, suggesting the availability of nutrients within this environment. We found that A. veronii alters transcription of loci in a synthetic pathway that obtains and incorporates N-acetylglucosamine (NAG; a major component of mucus) into the bacterial cell wall, enabling proliferation. Our results demonstrate that symbionts undergo dramatic local adaptation, demonstrated by widespread transcriptional changes, throughout the process of transmission that allows them to thrive while they encounter new environments which further shape their ecology and evolution.
机译:对宿主相关微生物群的建立和持久性至关重要的传播,也使共生体面临新的环境条件。在水平传输的情况下,这些不同的条件代表着生活方式的重大转变。然而,关于微生物如何将其转录组朝这些急剧变化调整的全基因组分析仍未得到充分研究。在这里,我们提供了共生体在转录期间在生活方式之间转移的全局转录谱的全面和比较分析。 γ变形杆菌Aeromonas veronii从药用水ech的肠道通过宿主粘膜铸型传播到其他宿主,但是A. veronii还可从粘膜适应性转变为自由生活。这三种生活方式的特征是独特的生理限制,因此在应激反应基因的表达中特定于生活方式的变化。就位点数目和应激反应机制的转录水平而言,粘液结合的维罗纳农杆菌具有最大的表达。但是,这些细菌仍然能够在粘液中增殖,这表明该环境中营养物质的可用性。我们发现维罗氏梭菌在合成途径中改变基因座的转录,该合成途径获得并将N-乙酰氨基葡萄糖(NAG;粘液的主要成分)并入细菌细胞壁,从而实现增殖。我们的结果表明,共生体在整个传播过程中经历了广泛的转录变化,表现出极大的局部适应性,使它们在遇到新的环境时能够壮成长,而新的环境进一步影响了它们的生态和进化。

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