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在三个甲基杆菌科物种中的比较转录组学揭示了不同的环境适应策略。

Comparative transcriptomics in three Methylophilaceae species uncover different strategies for environmental adaptation.

机构信息

Department of Chemical Engineering, University of Washington , Seattle, WA , USA.

出版信息

PeerJ. 2013 Jul 25;1:e115. doi: 10.7717/peerj.115. Print 2013.

Abstract

We carried out whole transcriptome analysis of three species of Methylophilaceae, Methylotenera mobilis, Methylotenera versatilis and Methylovorus glucosotrophus, in order to determine which metabolic pathways are actively transcribed in cultures grown in laboratory on C1 substrates and how metabolism changes under semi-in situ conditions. Comparative analyses of the transcriptomes were used to probe the metabolic strategies utilized by each of the organisms in the environment. Our analysis of transcript abundance data focused on changes in expression of methylotrophy metabolic modules, as well as on identifying any functional modules with pronounced response to in situ conditions compared to a limited set of laboratory conditions, highlighting their potential role in environmental adaptation. We demonstrate that transcriptional responses to environmental conditions involved both methylotrophy and non-methylotrophy metabolic modules as well as modules responsible for functions not directly connected to central metabolism. Our results further highlight the importance of XoxF enzymes that were previously demonstrated to be highly expressed in situ and proposed to be involved in metabolism of methanol by Methylophilaceae. At the same time, it appears that different species employ different homologous Xox systems as major metabolic modules. This study also reinforces prior observations of the apparent importance of the methylcitric acid cycle in the Methylotenera species and its role in environmental adaptation. High transcription from the respective gene clusters and pronounced response to in situ conditions, along with the reverse expression pattern for the ribulose monophosphate pathway that is the major pathway for carbon assimilation in laboratory conditions suggest that a switch in central metabolism of Methylotenera takes place in response to in situ conditions. The nature of the metabolite(s) processed via this pathway still remains unknown. Of the functions not related to central metabolism, flagellum and fimbria synthesis functions appeared to be of significance for environmental adaptation, based on their high abundance and differential expression. Our data demonstrate that, besides shared strategies, the organisms employed in this study also utilize strategies unique to each species, suggesting that the genomic divergence plays a role in environmental adaptation.

摘要

我们对三甲基杆菌科的三个物种(灵活甲基杆菌、运动甲基杆菌和葡萄糖氧化甲基杆菌)进行了全转录组分析,以确定在实验室用 C1 底物培养时哪些代谢途径被积极转录,以及在半原位条件下代谢如何变化。对转录组的比较分析用于探究每种生物体在环境中利用的代谢策略。我们对转录丰度数据的分析侧重于甲基营养代谢模块的表达变化,以及确定任何对原位条件有明显响应的功能模块与有限的实验室条件相比,突出它们在环境适应中的潜在作用。我们证明,对环境条件的转录反应既涉及甲基营养代谢模块,也涉及非甲基营养代谢模块,以及与中心代谢没有直接联系的功能模块。我们的研究结果进一步强调了 XoxF 酶的重要性,这些酶先前被证明在原位高度表达,并被提议参与甲基杆菌科甲醇的代谢。与此同时,似乎不同的物种使用不同的同源 Xox 系统作为主要代谢模块。这项研究还加强了先前关于甲基柠檬酸循环在 Methylotenera 物种中的重要性及其在环境适应中的作用的观察。各自基因簇的高转录和对原位条件的明显响应,以及与实验室条件下主要碳同化途径核酮糖-1,5-二磷酸途径相反的表达模式表明,Methylotenera 的中心代谢发生了变化以响应原位条件。通过该途径处理的代谢物的性质仍不清楚。在与中心代谢无关的功能中,鞭毛和菌毛合成功能似乎因其高丰度和差异表达而对环境适应具有重要意义。我们的数据表明,除了共享策略外,本研究中使用的生物体还利用了每种物种特有的策略,这表明基因组的分化在环境适应中发挥了作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4fdc/3728764/062e48630549/peerj-01-115-g001.jpg

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