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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >RNA-Seq comparative analysis reveals the response of Enterococcus faecalis TV4 under fluoride exposure
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RNA-Seq comparative analysis reveals the response of Enterococcus faecalis TV4 under fluoride exposure

机译:RNA-SEQ对比分析揭示了肠球菌Faecalis TV4在氟化物暴露下的反应

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摘要

Enterococcus faecalis is one of the main components of symbiotic bacteria in the intestine of silkworm (Bombyx mori L.). The abundance of E. faecalis in the intestine of silkworm is affected by fluoride exposure. However, the response mechanism of E. faecalis toward fluoride remains largely unknown. In this study, a strain of E. faecalis (named TV4), which is a symbiotic bacteria of silkworm, was isolated and characterized. Inhibition assay showed that fluoride can significantly inhibit the growth of the TV4 strain (P < 0.05) after culture for 4 h. Finally, Illumina X-Ten platform was used to investigate the response mechanism of E. faecalis TV4 under fluoride exposure. We found that the TV4 strain demonstrated significant changes in its carbohydrate transport and metabolism and energy metabolism. The transcriptome sequencing results revealed that 237 genes were differentially expressed for TV4 grown after fluoride exposure, i.e., 92 genes were differentially up-regulated and 145 genes were differentially down-regulated. Many of the down-regulated genes were involved in cell carbohydrate transport and metabolism and energy production, whereas the up-regulated genes were mostly related to ethanolamine utilization and amino acid synthesis and metabolism. Our results revealed that strain TV4 reduced its carbohydrate metabolism and energy metabolism and increased ethanolamine utilization and amino acid metabolism to adapt and survive under fluoride exposure. This study enhances our understanding about the response mechanism of E. faecalis after fluoride exposure and has important implications for investigations on the three-way interaction among fluoride, symbiotic bacteria and silkworm.
机译:肠球菌粪便是蚕豆(Bombyx Mori L.)中共生细菌的主要成分之一。家蚕肠道的大量E.粪便受氟化物暴露的影响。然而,E. Faecalis对氟化物的响应机制仍然很大程度上是未知的。在这项研究中,被分离出并表征了一种是家蚕的共生细菌的E. Faecalis(名称TV4)的菌株。抑制测定表明,氟化物可以显着抑制培养后TV4菌株(P <0.05)的生长4小时。最后,Illumina X-Ten平台用于研究E. Faecalis TV4在氟化物暴露下的响应机制。我们发现TV4应变表现出其碳水化合物运输和代谢和能量代谢的显着变化。转录组测序结果表明,在氟化物暴露后差异表达237个基因,即氟化物暴露后生长,即92个基因差异上调,145个基因差异下调。许多下调基因涉及细胞碳水化合物运输和代谢和能量产生,而上调基因主要与乙醇胺利用和氨基酸合成和代谢相关。我们的研究结果表明,菌株TV4降低了其碳水化合物代谢和能量代谢以及增加乙醇胺利用率和氨基酸代谢,以适应和存活在氟化物暴露下。本研究提高了我们对氟化物暴露后E.粪便响应机制的理解,并对氟化物,共生细菌和家蚕的三元相互作用进行了重要意义。

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