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The RNA chaperone Hfq enables the environmental stress tolerance super-phenotype of Pseudomonas putida

机译:RNA伴侣Hfq使恶臭假单胞菌具有环境耐受性超表型

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摘要

The natural physiological regime of the soil bacterium Pseudomonas putida involves incessant exposure to endogenous metabolic conflicts and environmental physicochemical insults. Yet, the role of assisted small RNA-mRNA pairing in the stress tolerance super-phenotype that is the trademark of this bacterium has not been accredited. We have thoroughly explored the physiological consequences - in particular those related to exogenous stress - of deleting the hfq gene of P. putida, which encodes the major RNA chaperone that promotes sRNA-target mRNA interactions. While the overall trend was a general weakening of every robustness descriptor of the Delta hfq strain, growth parameters and production of central metabolic enzymes were comparatively less affected than other qualities that depend directly on energy status (e.g. motility, DNA repair). The overall catalytic vigour of the mutant decreased to <20% than the wild-type strain, as estimated from the specific growth rate of cells carrying the catabolic TOL plasmid pWW0 for m-xylene biodegradation. Several loss-of-function phenotypes could be traced to the effect of the Delta hfq deletion on the intracellular contents of the stationary sigma factor RpoS. It thus seems that Hfq, while not indispensable for any essential function, contributes to shape the environmental lifestyle of P. putida.
机译:土壤细菌恶臭假单胞菌的自然生理机制涉及不断暴露于内源性代谢冲突和环境物理化学损害。但是,辅助小RNA-mRNA配对在作为该细菌商标的胁迫耐受性超表型中的作用尚未得到认可。我们已经彻底探讨了删除恶臭假单胞菌的hfq基因的生理后果,尤其是那些与外源压力有关的后果,该基因编码促进sRNA-靶标mRNA相互作用的主要RNA伴侣。虽然总体趋势是Delta hfq菌株的每个稳健性指标普遍弱化,但生长参数和中央代谢酶的产生受到的影响要比其他直接取决于能量状态(例如运动性,DNA修复)的质量受到的影响要小。根据携带分解代谢的TOL质粒pWW0的细胞对间二甲苯进行生物降解的特定生长速率估算,该突变体的总催化活性比野生型菌株降低了<20%。几个功能丧失的表型可以追溯到Delta hfq缺失对固定sigma因子RpoS的细胞内含量的影响。因此,尽管Hfq对于任何基本功能都是必不可少的,但它似乎有助于塑造恶臭假单胞菌的环境生活方式。

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