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Interspecific bacterial sensing through airborne signals modulates locomotion and drug resistance

机译:通过空气传播的信号进行种间细菌感测可调节运动和耐药性

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Bacteria use chemical signals to sense each other and to regulate various physiological functions. Although it is known that some airborne volatile organic compounds function as bacterial signalling molecules, their identities and effects on global gene expression and bacterial physiological processes remain largely unknown. Here we perform microarray analyses of Escherichia coli exposed to volatile organic compounds emitted from Bacillus subtilis . We find that 2,3-butanedione and glyoxylic acid mediate global changes in gene expression related to motility and antibiotic resistance. Volatile organic compound-dependent phenotypes are conserved among bacteria and are regulated by the previously uncharacterized ypdB gene product through the downstream transcription factors soxS , rpoS or yjhU . These results strongly suggest that bacteria use airborne volatile organic compounds to sense other bacteria and to change master regulatory gene activity to adapt.
机译:细菌利用化学信号相互感应并调节各种生理功能。尽管已知某些空气中的挥发性有机化合物起细菌信号分子的作用,但它们的身份和对整体基因表达和细菌生理过程的影响仍然未知。在这里我们对枯草芽孢杆菌排放的挥发性有机物进行大肠杆菌的芯片分析。我们发现2,3-丁二酮和乙醛酸介导与动力和抗生素抗性相关的基因表达的整体变化。挥发性有机化合物依赖性表型在细菌之间是保守的,并通过下游转录因子soxS,rpoS或yjhU受到以前未表征的ypdB基因产物的调控。这些结果强烈表明细菌使用空气中的挥发性有机化合物来感知其他细菌并改变主调节基因的活性以适应环境。

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