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约翰逊黄杆菌样分离株的黏附性、疏水性、聚集性及生物膜形成的评估

Evaluation of adherence, hydrophobicity, aggregation, and biofilm development of Flavobacterium johnsoniae-like isolates.

作者信息

Basson A, Flemming L A, Chenia H Y

机构信息

Department of Microbiology, University of Stellenbosch, Private Bag X1, Matieland, 7602, South Africa.

出版信息

Microb Ecol. 2008 Jan;55(1):1-14. doi: 10.1007/s00248-007-9245-y. Epub 2007 Mar 31.

Abstract

Flavobacterium spp. isolates have been identified in diverse biofilm structures, but the mechanism of adherence has not been elucidated. The absence of conventional biofilm-associated structures such as fimbriae, pili, and flagella suggest that surface hydrophobicity, and/or autoaggregation and coaggregation may play an important role in adherence and biofilm formation. The biofilm-forming capacity of 29 Flavobacterium johnsoniae-like isolates obtained from South African aquaculture systems was assessed using microtiter plate assays. The role of hydrophobicity [salting aggregation test (SAT) and bacterial adherence to hydrocarbons (BATH) assays], autoaggregation, and coaggregation on biofilm formation by Flavobacterium spp. was also investigated, while biofilm structure was examined using flow cells and microscopy. All isolates displayed a hydrophilic nature, but showed varying levels of adherence in microtiter assays. Significant negative correlations were observed between adherence and biofilm-forming capacity in nutrient-poor medium at 26 degrees C and BATH hydrophobicity and motility, respectively. Isolates displayed strain-to-strain variation in their autoaggregation indices and their abilities to coaggregate with various Gram-negative and Gram-positive organisms. Microcolony and/or biofilm development were observed microscopically, and flavobacterial isolates displayed stronger biofilm structures and interaction with a Vibrio spp. isolate than with an Aeromonas hydrophila isolate. The role of extracellular polysaccharides and specific outer membrane proteins will have to be examined to reveal mechanisms of adherence and coaggregation employed by biofilm-forming F. johnsoniae-like strains.

摘要

黄杆菌属菌株已在多种生物膜结构中被鉴定出来,但黏附机制尚未阐明。缺乏诸如菌毛、菌毛和鞭毛等传统的生物膜相关结构表明,表面疏水性和/或自聚集及共聚集可能在黏附及生物膜形成中起重要作用。使用微量滴定板分析法评估了从南非水产养殖系统中获得的29株约翰逊黄杆菌样菌株的生物膜形成能力。还研究了疏水性[盐析聚集试验(SAT)和细菌对碳氢化合物的黏附试验(BATH)]、自聚集和共聚集对黄杆菌属生物膜形成的作用,同时使用流动小室和显微镜检查生物膜结构。所有分离株均表现出亲水性,但在微量滴定试验中显示出不同程度的黏附。分别在26℃的贫营养培养基中观察到黏附与生物膜形成能力、BATH疏水性和运动性之间存在显著负相关。分离株在自聚集指数及其与各种革兰氏阴性和革兰氏阳性生物体共聚集的能力方面表现出菌株间差异。在显微镜下观察到微菌落和/或生物膜的发育,黄杆菌分离株与弧菌属分离株相比,显示出更强的生物膜结构和相互作用,而与嗜水气单胞菌分离株的相互作用较弱。必须研究细胞外多糖和特定外膜蛋白的作用,以揭示形成生物膜的约翰逊黄杆菌样菌株所采用的黏附及共聚集机制。

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