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Comparative Analysis of Xenorhabdus koppenhoeferi Gene Expression during Symbiotic Persistence in the Host Nematode

机译:Xenorhabdus koppenhoeferi基因表达在宿主线虫共生过程中的比较分析

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摘要

Species of Xenorhabdus and Photorhabdus bacteria form mutualistic associations with Steinernema and Heterorhabditis nematodes, respectively and serve as model systems for studying microbe-animal symbioses. Here, we profiled gene expression of Xenorhabdus koppenhoeferi during their symbiotic persistence in the newly formed infective juveniles of the host nematode Steinernema scarabaei through the selective capture of transcribed sequences (SCOTS). The obtained gene expression profile was then compared with other nematode-bacteria partnerships represented by Steinernema carpocapsae—Xenorhabdus nematophila and Heterorhabditis bacteriophora—Photorhabdus temperata. A total of 29 distinct genes were identified to be up-regulated and 53 were down-regulated in X. koppenhoeferi while in S. scarabaei infective juveniles. Of the identified genes, 8 of the up-regulated and 14 of the down-regulated genes were similarly expressed in X. nematophila during persistence in its host nematode S. carpocapsae. However, only one from each of these up- and down-regulated genes was common to the mutualistic partnership between the bacterium P. temperata and the nematode H. bacteriophora. Interactive network analysis of the shared genes between X. koppenhoeferi and X. nematophila demonstrated that the up-regulated genes were mainly involved in bacterial survival and the down-regulated genes were more related to bacterial virulence and active growth. Disruption of two selected genes pta (coding phosphotransacetylase) and acnB (coding aconitate hydratase) in X. nematophila with shared expression signature with X. koppenhoeferi confirmed that these genes are important for bacterial persistence in the nematode host. The results of our comparative analyses show that the two Xenorhabdus species share a little more than a quarter of the transcriptional mechanisms during persistence in their nematode hosts but these features are quite different from those used by P. temperata bacteria in their nematode host H. bacteriophora.
机译:Xenorhabdus和Photorhabdus细菌的种类分别与Steinernema和线虫Heterorhabditis线虫形成相互联系,并作为研究微生物-动物共生的模型系统。在这里,我们通过选择性捕获转录序列(SCOTS),对Xenorhabdus koppenhoeferi在共生持续存在于寄主线虫Steinernema scarabaei的新形成的感染少年中的共生期间进行了基因表达分析。然后将获得的基因表达谱与以线虫Steinernema carpocapsae-Xenorhabdus nematophila和Heterorhabditis bacteriophora-Photorhabdustempata代表的其他线虫-细菌伙伴关系进行比较。总共有29个不同的基因被鉴定为在X. koppenhoeferi中被上调,而53个被下调,而在金龟链球菌感染性少年中。在已鉴定的基因中,在其宿主线虫S. carpocapsae中持续存在的过程中,在线虫中相似地表达了8个上调基因和14个下调基因。但是,在这些 P 细菌之间的互助伙伴关系中,每个上调和下调基因中只有一个是共有的。 temperata 和线虫 H 噬菌体 X 之间共享基因的交互式网络分析。 koppenhoeferi X nematophila 表明,上调的基因主要参与细菌的存活,而下调的基因与细菌的毒力和活跃的生长更相关。 X 中两个选定的基因 pta (编码磷酸转乙酰酶)和 acnB (编码乌头酸水合酶)的破坏。与 X 共享表达签名的 nematophila koppenhoeferi 证实这些基因对于线虫宿主中的细菌持久性很重要。我们的比较分析结果表明,两个 Xenorhabdus 物种在持久存在于其线虫宿主中共有略高于四分之一的转录机制,但这些特征与 P所使用的特征完全不同。 。线虫宿主 H 中的 temperata 细菌。 噬菌体

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