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Interspecies Chemical Communication in Bacterial Development

机译:种间化学交流在细菌发育中的作用

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Our view of bacteria, from the earliest observations through the heyday of antibiotic discovery, has shifted dramatically. We recognize communities of bacteria as integral and functionally important components of diverse habitats, ranging from soil collectives to the human microbiome. To function as productive communities, bacteria coordinate metabolic functions, often requiring shifts in growth and development. The hallmark of cellular development, which we characterize as physiological change in response to environmental stimuli, is a defining feature of many bacterial interspecies interactions. Bacterial communities rely on chemical exchanges to provide the cues for developmental change. Traditional methods in microbiology, focus on isolation and characterization of bacteria in monoculture, separating the organisms from the surroundings in which interspecies chemical communication has relevance. Developing multispecies experimental systems that incorporate knowledge of bacterial physiology and metabolism with insights from biodiversity and metagenomics shows great promise for understanding interspecies chemical communication in the microbial world.
机译:从最早的观察到抗生素发现的鼎盛时期,我们对细菌的看法已发生了巨大变化。我们认识到细菌群落是多样化栖息地不可或缺的功能重要组成部分,范围从土壤集体到人类微生物组。为了发挥生产社区的作用,细菌协调了代谢功能,通常需要改变生长发育。细胞发育的标志,我们表征为响应环境刺激而发生的生理变化,是许多细菌种间相互作用的定义特征。细菌群落依靠化学交换为发展变化提供线索。微生物学的传统方法着重于单培养中细菌的分离和表征,将生物与种间化学通讯相关的环境分开。开发将细菌生理学和代谢知识与生物多样性和宏基因组学见解相结合的多物种实验系统,对于理解微生物世界中的物种间化学交流具有广阔的前景。

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