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Expanding the club: engineering plants to talk to bacteria

机译:扩大俱乐部:工程工厂与细菌对话

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Studies of population-mediated gene regulation in microorganisms, such as Dictyostelium discoideum and myxobacteria, have demonstrated that single-celled microorganisms can produce chemical signals that enable them to act as a multicellular organism. however, it is the recent explosion of information about N-acyl-homoserine lactone (AHL)-mediated gene regulation in bacteria that has driven a fundamental shift in our thinking about bacteria - not as individual cells, but as multicellular populations that are able to respond to environmental inputs in a concerted manner.
机译:对诸如盘基网柄菌和粘细菌的微生物中的种群介导的基因调控的研究表明,单细胞微生物可以产生化学信号,使其能够充当多细胞生物。然而,正是最近有关细菌中N-酰基高丝氨酸内酯(AHL)介导的基因调控的信息激增,推动了我们对细菌的思考发生了根本性的变化-不是作为单个细胞,而是作为能够以协调的方式响应环境投入。

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