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Global transcriptional response of solvent-sensitive and solvent-tolerant Pseudomonas putida strains exposed to toluene

机译:暴露于甲苯的溶剂敏感和耐溶剂恶臭假单胞菌菌株的全球转录反应

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摘要

Pseudomonas putida strains are generally recognized as solvent tolerant, exhibiting varied sensitivity to organic solvents. Pan-genome analysis has revealed that 30 of genes belong to the core-genome of Pseudomonas. Accessory and unique genes confer high degree of adaptability and capabilities for the degradation and synthesis of a wide range of chemicals. For the use of these microbes in bioremediation and biocatalysis, it is critical to understand the mechanisms underlying these phenotypic differences. In this study, RNA-seq analysis compared the short- and long-term responses of the toluene-sensitive KT2440 strain and the highly tolerant DOT-T1E strain. The sensitive strain activates a larger number of genes in a higher magnitude than DOT-T1E. This is expected because KT2440 bears one toluene tolerant pump, while DOT-T1E encodes three of these pumps. Both strains activate membrane modifications to reduce toluene membrane permeability. The KT2440 strain activates the TCA cycle to generate energy, while avoiding energy-intensive processes such as flagellar biosynthesis. This suggests that KT2440 responds to toluene by focusing on survival mechanisms. The DOT-T1E strain activates toluene degradation pathways, using toluene as source of energy. Among the unique genes encoded by DOT-T1E is a 70 kb island composed of genes of unknown function induced in response to toluene.
机译:恶臭假单胞菌菌株通常被认为具有耐溶剂性,对有机溶剂表现出不同的敏感性。泛基因组分析显示,30%的基因属于假单胞菌的核心基因组。辅助和独特基因赋予了高度的适应性和能力,可用于降解和合成各种化学品。为了将这些微生物用于生物修复和生物催化,了解这些表型差异背后的机制至关重要。在这项研究中,RNA-seq分析比较了甲苯敏感的KT2440菌株和高耐受性DOT-T1E菌株的短期和长期反应。敏感菌株以比 DOT-T1E 更高的幅度激活更多基因。这是意料之中的,因为 KT2440 带有一个耐甲苯泵,而 DOT-T1E 编码其中三个泵。两种菌株都激活膜修饰以降低甲苯膜的渗透性。KT2440菌株激活TCA循环以产生能量,同时避免了鞭毛生物合成等能量密集型过程。这表明KT2440通过关注存活机制来响应甲苯。DOT-T1E 菌株使用甲苯作为能量来源激活甲苯降解途径。在 DOT-T1E 编码的独特基因中,有一个 70 kb 的岛屿,由响应甲苯诱导的未知功能基因组成。

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