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Molecular Regulatory Network Involved in Biofilm Structure Development by Acidithiobacillus thiooxidans Includes Pel Exopolysaccharide Machinery

机译:硫代酸硫硫杆菌参与生物膜结构开发的分子调控网络包括Pel外多糖机械

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The Acidithiobacillus genus plays a relevant role in bioleaching. The molecular understanding of biofilm formation has been pointed out to design biological strategies to improve the efficiency of this industrial process and to prevent environmental damages caused by acid mine/rock drainages. In Acidithiobacillus spp., the molecular mechanisms involved in biofilm formation are currently emerging. The second messenger cyclic diguanylate (c-di-GMP) appears as a key player for biofilm formation by Acidithiobacillus sp. Here, results obtained from genomic analysis to characterize c-di-GMP pathway in At. thiooxidans are reported. Intracellular levels of c-di-GMP have been previously measured and data indicated that they are higher in adhered cells than planktonic ones. During the course of characterization of c-di-GMP effectors, a complete pel-like gene cluster has been identified in At. thiooxidans. By using total RNA obtained from planktonic and adhered sulfur-grown cells, transcriptomic analysis revealed that pelA belonging to the pel-like gene cluster is overexpressed in adhered cells. Moreover, genetic experiments were performed to compare wild type and null-mutant strains of At. thiooxidans for assessing the role of Pel exopolysaccharide. All together, the results obtained suggest a specific role for Pel machinery in the attachment to solid energy substrates by At. thiooxidans.
机译:酸性硫杆菌属在生物浸出中起重要作用。已经指出了对生物膜形成的分子理解,以设计生物学策略以提高该工业过程的效率并防止由酸性矿山/岩石排水引起的环境破坏。在酸性硫杆菌属物种中,目前正在出现涉及生物膜形成的分子机制。第二信使环二鸟苷酸(c-di-GMP)似乎是酸性硫杆菌属形成生物膜的关键参与者。在这里,从基因组分析获得的结果可表征At中的c-di-GMP途径。报道了硫氧化物。先前已经测量了细胞内c-di-GMP的水平,数据表明,粘附细胞中的c-di-GMP含量要高于浮游细胞。在表征c-di-GMP效应子的过程中,已在At中鉴定出完整的pel-like基因簇。硫代氧化物。通过使用从浮游细胞和粘附的硫生长细胞获得的总RNA,转录组分析显示属于pel-like基因簇的pelA在粘附的细胞中过表达。此外,进行了遗传实验以比较At的野生型和无效突变株。硫代氧化物用于评估Pel外多糖的作用。总体而言,获得的结果表明,Pel机械在At附着到固体能量基质上的特定作用。硫代氧化物。

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