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The impact of manganese on biofilm development of Bacillus subtilis

机译:锰对枯草芽孢杆菌生物膜发育的影响

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Bacterial biofilms are dynamic and structurally complex communities, involving cell-to-cell interactions. In recent years, various environmental signals that induce the complex biofilm development of the Gram-positive bacterium Bacillus subtilis have been identified. These signalling molecules are often media components or molecules produced by the cells themselves, as well as those of other interacting species. The responses can also be due to depletion of certain molecules in the vicinity of the cells. Extracellular manganese (Mn2+) is essential for proper biofilm development of B. subtilis. Mn2+ is also a component of practically all laboratory biofilm-promoting media used for B. subtilis. Comparison of complex colony biofilms in the presence or absence of supplemented Mn2+ using microarray analyses revealed that genes involved in biofilm formation are indeed downregulated in the absence of Mn2+. In addition, Mn2+ also affects the transcription of several other genes involved in distinct differentiation pathways of various cellular processes. The effects of Mn2+ on other biofilm-related traits like motility, antimicrobial production, stress and sporulation were followed using fluorescent reporter strains. The global transcriptome and morphology studies highlight the importance of Mn2+ during biofilm development and provide an overview on the expressional changes in colony biofilms in B. subtilis.
机译:细菌生物膜是动态的且结构复杂的社区,涉及细胞间相互作用。近年来,已鉴定出多种环境信号,这些信号诱导了革兰氏阳性细菌枯草芽孢杆菌的复杂生物膜发育。这些信号分子通常是细胞本身以及其他相互作用物种产生的介质成分或分子。响应也可能是由于细胞附近某些分子的消耗。细胞外锰(Mn2 +)对于枯草芽孢杆菌的生物膜正常发育至关重要。 Mn2 +也是几乎所有用于枯草芽孢杆菌的实验室生物膜促进培养基的成分。使用微阵列分析比较存在或不存在补充的Mn​​2 +时的复杂菌落生物膜,发现在不存在Mn2 +的情况下,参与生物膜形成的基因确实被下调。此外,Mn2 +还影响其他各种基因的转录,这些基因参与了各种细胞过程的不同分化途径。使用荧光报告菌株追踪Mn2 +对其他生物膜相关性状的影响,例如运动性,抗菌素产生,压力和孢子形成。全局转录组和形态学研究突出了Mn2 +在生物膜形成过程中的重要性,并概述了枯草芽孢杆菌中菌落生物膜的表达变化。

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