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反渗透系统进水的可培养细菌多样性、生物膜形成评估及噬菌体生物防治

Culturable bacterial diversity from a feed water of a reverse osmosis system, evaluation of biofilm formation and biocontrol using phages.

作者信息

Belgini D R B, Dias R S, Siqueira V M, Valadares L A B, Albanese J M, Souza R S, Torres A P R, Sousa M P, Silva C C, De Paula S O, Oliveira V M

机构信息

Microbial Resources Division, Research Center for Chemistry, Biology and Agriculture (CPQBA), Campinas University - UNICAMP, CP 6171, Campinas, SP, CEP 13081-970, Brazil.

出版信息

World J Microbiol Biotechnol. 2014 Oct;30(10):2689-700. doi: 10.1007/s11274-014-1693-1. Epub 2014 Jul 1.

Abstract

Biofilm formation on reverse osmosis (RO) systems represents a drawback in the application of this technology by different industries, including oil refineries. In RO systems the feed water maybe a source of microbial contamination and thus contributes for the formation of biofilm and consequent biofouling. In this study the planktonic culturable bacterial community was characterized from a feed water of a RO system and their capacities were evaluated to form biofilm in vitro. Bacterial motility and biofilm control were also analysed using phages. As results, diverse Protobacteria, Actinobacteria and Bacteroidetes were identified. Alphaproteobacteria was the predominant group and Brevundimonas, Pseudomonas and Mycobacterium the most abundant genera. Among the 30 isolates, 11 showed at least one type of motility and 11 were classified as good biofilm formers. Additionally, the influence of non-specific bacteriophage in the bacterial biofilms formed in vitro was investigated by action of phages enzymes or phage infection. The vB_AspP-UFV1 (Podoviridae) interfered in biofilm formation of most tested bacteria and may represent a good alternative in biofilm control. These findings provide important information about the bacterial community from the feed water of a RO system that may be used for the development of strategies for biofilm prevention and control in such systems.

摘要

反渗透(RO)系统上生物膜的形成是包括炼油厂在内的不同行业应用该技术的一个缺点。在RO系统中,进水可能是微生物污染的来源,因此有助于生物膜的形成和随之而来的生物污垢。在本研究中,对RO系统进水的浮游可培养细菌群落进行了表征,并评估了它们在体外形成生物膜的能力。还使用噬菌体分析了细菌的运动性和生物膜控制。结果,鉴定出了不同的变形菌门、放线菌门和拟杆菌门。α-变形菌纲是主要类群,短波单胞菌属、假单胞菌属和分枝杆菌属是最丰富的属。在30株分离株中,11株表现出至少一种运动性类型,11株被归类为良好的生物膜形成菌。此外,通过噬菌体酶的作用或噬菌体感染,研究了非特异性噬菌体对体外形成的细菌生物膜的影响。vB_AspP-UFV1(短尾噬菌体科)干扰了大多数受试细菌的生物膜形成,可能是生物膜控制的一个良好选择。这些发现提供了有关RO系统进水细菌群落的重要信息,可用于制定此类系统中生物膜预防和控制策略。

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