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基因组分析和组学方法为研究节杆菌的生物降解潜力提供了新的见解。

Genome analysis and -omics approaches provide new insights into the biodegradation potential of Rhodococcus.

机构信息

Department of Biotechnology and Biosciences, University of Milano-Bicocca, Piazza della Scienza 2, 20126, Milan, Italy.

出版信息

Appl Microbiol Biotechnol. 2019 Feb;103(3):1069-1080. doi: 10.1007/s00253-018-9539-7. Epub 2018 Dec 15.

Abstract

The past few years observed a breakthrough of genome sequences of bacteria of Rhodococcus genus with significant biodegradation abilities. Invaluable knowledge from genome data and their functional analysis can be applied to develop and design strategies for attenuating damages caused by hydrocarbon contamination. With the advent of high-throughput -omic technologies, it is currently possible to utilize the functional properties of diverse catabolic genes, analyze an entire system at the level of molecule (DNA, RNA, protein, and metabolite), simultaneously predict and construct catabolic degradation pathways. In this review, the genes involved in the biodegradation of hydrocarbons and several emerging plasticizer compounds in Rhodococcus strains are described in detail (aliphatic, aromatics, PAH, phthalate, polyethylene, and polyisoprene). The metabolic biodegradation networks predicted from omics-derived data along with the catabolic enzymes exploited in diverse biotechnological and bioremediation applications are characterized.

摘要

过去几年,人们对具有显著生物降解能力的罗尔斯通氏菌属细菌的基因组序列有了突破性的认识。从基因组数据及其功能分析中获得的宝贵知识,可以应用于开发和设计减轻碳氢化合物污染造成的损害的策略。随着高通量组学技术的出现,目前可以利用不同分解代谢基因的功能特性,在分子(DNA、RNA、蛋白质和代谢物)水平上分析整个系统,并同时预测和构建分解代谢途径。在这篇综述中,详细描述了罗尔斯通氏菌属中参与碳氢化合物和几种新兴增塑剂化合物生物降解的基因(脂肪族、芳香族、多环芳烃、邻苯二甲酸酯、聚乙烯和聚异戊二烯)。描述了从组学衍生数据预测的代谢生物降解网络以及在各种生物技术和生物修复应用中利用的分解代谢酶。

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