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首页> 外文期刊>Research in Microbiology >Microbial diversity and prevalence of virulent pathogens in biofilms developed in a water reclamation system.
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Microbial diversity and prevalence of virulent pathogens in biofilms developed in a water reclamation system.

机译:在水回收系统中开发的生物膜中的微生物多样性和致病性致病菌的流行。

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Bacterial biofilm is a common phenomenon in both natural and engineered systems which often becomes a source of contamination and microbially influenced corrosion. It is thought that formation of biofilm in the monoculture of several bacterial species is regulated by acylhomoserine lactone (AHL) quorum-sensing signals. In this study, we investigated the microbial diversity and existence of AHL-producing and AHL-degrading bacterial species in the biofilm samples from a water reclamation system located in a tropical environment. 16S ribosomal DNA sequencing analysis indicated the presence of at least 11 bacterial species, including the frequently encountered bacterial pathogens Pseudomonas aeruginosa and Klebsiella pneumoniae, and several rare pathogens. We showed that only two groups of isolates, belonging to P. aeruginosa and Enterobacter agglomerans, produced AHL signals. We also found that three bacterial isolates, i.e., Agrobacterium tumefaciens XJ01, Bacillus cereus XJ08, and Ralstonia sp. XJ12, expressed AHL degradation enzymes. Furthermore, we showed that P. aeruginosa isolate HL43 was virulent against animal model Caenorhabditis elegans and released 2-6-fold more pyocyanin cytotoxin than P. aeruginosa strains PA01 and PA14, the two commonly used laboratory strains. These data indicate the complexity and importance of biofilm research in water reclamation.
机译:细菌生物膜在自然系统和工程系统中都是常见现象,通常会成为污染源和微生物影响的腐蚀源。认为在几种细菌的单一培养中生物膜的形成受酰基高丝氨酸内酯(AHL)群体感应信号的调节。在这项研究中,我们调查了位于热带环境中的水回收系统生物膜样品中微生物的多样性以及产生AHL和降解AHL的细菌物种的存在。 16S核糖体DNA测序分析表明,至少存在11种细菌,包括常见的细菌病原菌铜绿假单胞菌和肺炎克雷伯菌,以及几种罕见病原体。我们显示只有两组分离株,分别属于铜绿假单胞菌和团聚肠杆菌,可产生AHL信号。我们还发现了三种细菌分离株,即根癌土壤杆菌XJ01,蜡状芽孢杆菌XJ08和罗氏菌。 XJ12,表达了AHL降解酶。此外,我们显示铜绿假单胞菌分离物HL43对动物模型秀丽隐杆线虫具有毒性,并且比铜绿假单胞菌菌株PA01和PA14(两种常用实验室菌株)释放出2到6倍的花青素细胞毒素。这些数据表明生物膜研究在水回收中的复杂性和重要性。

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