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Adaptation to copper stress influences biofilm formation in Alteromonas macleodii

机译:铜胁迫的适应影响线粒体生物膜的形成。

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摘要

An Alteromonas macleodii strain was isolated from copper-containing coupons incubated in surface seawater (Key West, FL, USA). In addition to the original isolate, a copper-adapted mutant was created and maintained with 0.78mM Cu2+. Biofilm formation was compared between the two strains under copper-amended and low-nutrient conditions. Biofilm formation was significantly increased in the original isolate under copper amendment, while biofilm formation was significantly higher in the mutant under low-nutrient conditions. Biofilm expression profiles of diguanylate cyclase (DGC) genes, as well as genes involved in secretion, differed between the strains. Comparative genomic analysis demonstrated that both strains possessed a large number of gene attachment harboring cyclic di-GMP synthesis and/or degradation domains. One of the DGC genes, induced at very high levels in the mutant, possessed a degradation domain in the original isolate that was lacking in the mutant. The genetic and transcriptional mechanisms contributing to biofilm formation are discussed.
机译:从在表面海水中培养的含铜试样中分离出一种Alteromonas macleodii菌株(美国佛罗里达州基韦斯特)。除了原始分离物外,还创建了铜适应突变体,并用0.78mM Cu2 +维持。在铜改良和低营养条件下,比较了两个菌株之间的生物膜形成。在低铜条件下,铜分离物在原始分离物中的生物膜形成显着增加,而在突变体中,生物膜形成显着更高。菌株之间的双鸟苷酸环化酶(DGC)基因以及涉及分泌的基因的生物膜表达谱有所不同。比较基因组分析表明,这两个菌株都具有大量的基因附着物,这些基因附着物具有环状双GMP合成和/或降解域。在突变体中以很高的水平诱导的DGC基因之一,在突变体中缺少的原始分离物中具有降解结构域。讨论了有助于生物膜形成的遗传和转录机制。

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