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基因型变异和种间相互作用改变了反刍叶菌的基因表达和生物膜形成。

Genotypic variations and interspecific interactions modify gene expression and biofilm formation of Xanthomonas retroflexus.

机构信息

Agroécologie, INRAE, Institut Agro Dijon, Université de Bourgogne, University Bourgogne Franche-Comté, Dijon, France.

Section of Microbiology, Department of Biology, University of Copenhagen, Copenhagen, Denmark.

出版信息

Environ Microbiol. 2023 Dec;25(12):3225-3238. doi: 10.1111/1462-2920.16503. Epub 2023 Sep 22.

DOI:10.1111/1462-2920.16503
PMID:37740256
Abstract

Multispecies biofilms are important models for studying the evolution of microbial interactions. Co-cultivation of Xanthomonas retroflexus (XR) and Paenibacillus amylolyticus (PA) systemically leads to the appearance of an XR wrinkled mutant (XRW), increasing biofilm production. The nature of this new interaction and the role of each partner remain unclear. We tested the involvement of secreted molecular cues in this interaction by exposing XR and XRW to PA or its supernatant and analysing the response using RNA-seq, colony-forming unit (CFU) estimates, biofilm quantification, and microscopy. Compared to wild type, the mutations in XRW altered its gene expression and increased its CFU number. These changes matched the reported effects for one of the mutated genes: a response regulator part of a two-component system involved in environmental sensing. When XRW was co-cultured with PA or its supernatant, the mutations effects on XRW gene expression were masked, except for genes involved in sedentary lifestyle, being consistent with the higher biofilm production. It appears that the higher biofilm production was the result of the interaction between the genetic context (mutations) and the biotic environment (PA signals). Regulatory genes involved in environmental sensing need to be considered to shed further light on microbial interactions.

摘要

多物种生物膜是研究微生物相互作用进化的重要模型。黄单胞菌(XR)和解淀粉芽孢杆菌(PA)的共培养系统会导致 XR 出现褶皱突变体(XRW),从而增加生物膜的产生。这种新的相互作用的性质和每个伙伴的作用尚不清楚。我们通过将 XR 和 XRW 暴露于 PA 或其上清液中,并使用 RNA-seq、集落形成单位(CFU)估计、生物膜定量和显微镜分析来检测分泌分子线索在这种相互作用中的参与情况。与野生型相比,XRW 的突变改变了其基因表达并增加了其 CFU 数量。这些变化与一个突变基因的报告效应相匹配:一个参与环境感应的双组分系统的反应调节剂部分。当 XRW 与 PA 或其上清液共培养时,除了与静止生活方式相关的基因外,XRW 基因表达的突变效应被掩盖,这与更高的生物膜产量一致。似乎更高的生物膜产量是遗传背景(突变)和生物环境(PA 信号)之间相互作用的结果。需要考虑涉及环境感应的调节基因,以进一步阐明微生物相互作用。

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