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首页> 外文期刊>Frontiers in Microbiology >The comER Gene Plays an Important Role in Biofilm Formation and Sporulation in both Bacillus subtilis and Bacillus cereus
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The comER Gene Plays an Important Role in Biofilm Formation and Sporulation in both Bacillus subtilis and Bacillus cereus

机译:<斜视> comer 基因在<斜体>枯草芽孢杆菌和<斜体>芽孢杆菌中,在生物膜形成和孢子中起着重要作用。

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Bacteria adopt alternative cell fates during development. In Bacillus subtilis , the transition from planktonic growth to biofilm formation and sporulation is controlled by a complex regulatory circuit, in which the most important event is activation of Spo0A, a transcription factor and a master regulator for genes involved in both biofilm formation and sporulation. In B. cereus , the regulatory pathway controlling biofilm formation and cell differentiation is much less clear. In this study, we show that a novel gene, comER , plays a significant role in biofilm formation as well as sporulation in both B. subtilis and B. cereus . Mutations in the comER gene result in defects in biofilm formation and a delay in spore formation in the two Bacillus species. Our evidence supports the idea that comER may be part of the regulatory circuit that controls Spo0A activation. comER likely acts upstream of sda , a gene encoding a small checkpoint protein for both sporulation and biofilm formation, by blocking the phosphor-relay and thereby Spo0A activation. In summary, our studies outlined a conserved, positive role for comER , a gene whose function was previously uncharacterized, in the regulation of biofilm formation and sporulation in the two Bacillus species.
机译:细菌在开发期间采用替代细胞命运。在枯草芽孢杆菌中,从浮游生生长到生物膜形成和孢子的转变由复杂的调节回路控制,其中最重要的事件是SPOO,转录因子和伴随生物膜形成和孢子的基因的母稳态因子的激活。在B. Cereus中,控制生物膜形成和细胞分化的调节途径得多。在这项研究中,我们表明,一种新的基因,聚合物,在生物膜形成中发挥着重要作用以及B.枯草芽孢杆菌和B. Cereus的孢子。聚酰胺基因中的突变导致生物膜形成中的缺陷和两种杆菌物种中的孢子形成延迟。我们的证据支持COMER可以成为控制SPO0A激活的监管电路的一部分的想法。通过阻断磷光体继电器,可以通过阻断磷光体继电器,对孢子素和生物膜形成的小检查点蛋白的基因来进行SDA的上游。总之,我们的研究概述了COMER的保守,积极作用,该基因在两个杆菌种类的生物膜形成和孢子中的调节中,其功能先前无表。

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