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转录组学揭示了曼氏肠球菌在斜纹夜蛾肠道中的生存策略。

Transcriptomics Reveal the Survival Strategies of Enterococcus mundtii in the Gut of Spodoptera littoralis.

机构信息

Department of Bioorganic Chemistry, Max Planck Institute for Chemical Ecology, Jena, Germany.

Department of Microbiology, Friedrich Schiller University, Jena, Germany.

出版信息

J Chem Ecol. 2021 Feb;47(2):227-241. doi: 10.1007/s10886-021-01246-1. Epub 2021 Jan 18.

Abstract

The complex interaction between a higher organism and its resident gut flora is a subject of immense interest in the field of symbiosis. Many insects harbor a complex community of microorganisms in their gut. Larvae of Spodoptera littoralis, a lepidopteran pest, house a bacterial community that varies both spatially (along the length of the gut) and temporally (during the insect's life cycle). To monitor the rapid adaptation of microbes to conditions in the gut, a GFP-tagged reporter strain of E. mundtii, a major player in the gut community, was constructed. After early-instar S. littoralis larvae were fed with the tagged microbes, these were recovered from the larval fore- and hindgut by flow cytometry. The fluorescent reporter confirmed the persistence of E. mundtii in the gut. RNA-sequencing of the sorted bacteria highlighted various strategies of the symbiont's survival, including upregulated pathways for tolerating alkaline stress, forming biofilms and two-component signaling systems for quorum sensing, and resisting oxidative stress. Although these symbionts depend on the host for amino acid and fatty acids, differential regulation among various metabolic pathways points to an enriched lysine synthesis pathway of E. mundtii in the hindgut of the larvae.

摘要

高等生物与其肠道常驻菌群之间的复杂相互作用是共生领域中极富研究意义的课题。许多昆虫的肠道中都寄居着复杂的微生物群落。鳞翅目害虫斜纹夜蛾的幼虫肠道中存在着一个细菌群落,其结构在空间(沿肠道长度)和时间(在昆虫生命周期中)上均存在差异。为了监测微生物对肠道内环境的快速适应,构建了携带 GFP 标签的肠道优势菌群成员埃氏巨型球菌的报告菌株。在给早期龄斜纹夜蛾幼虫喂食标记微生物后,通过流式细胞术从幼虫的前肠和后肠中回收这些微生物。荧光报告证实了埃氏巨型球菌在肠道中的存在。对分选细菌进行 RNA 测序突出了共生体生存的各种策略,包括耐受碱性应激、形成生物膜和群体感应的双组分信号系统以及抵抗氧化应激的上调途径。尽管这些共生体依赖宿主获取氨基酸和脂肪酸,但各种代谢途径的差异调节表明,埃氏巨型球菌在后肠中富含赖氨酸合成途径。

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