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COAGGREGATION OCCURS AMONGST BACTERIA WITHIN AND BETWEEN DOMESTIC SHOWERHEAD BIOFILMS

机译:共凝集发生在家庭淋浴喷头生物膜内和之间的细菌之间

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摘要

Showerheads support the development multi-species biofilms that can be unsightly, produce malodor, and may harbor pathogens. The outer surface spray plates of many showerheads support visible biofilms that likely contain a mixture of bacteria from freshwater and potentially from human users. Coaggregation, a mechanism by which genetically distinct bacteria specifically recognize one another, may contribute to the retention and enrichment of different species within these biofilms. The aim of this work was to identify the bacterial composition of outer spray plate biofilms of three domestic shower heads and to determine the inter- and intra-biofilm coaggregation ability of each culturable isolate. The bacterial composition of the three biofilms was determined by using bacterial tag-encoded FLX amplicon pyrosequencing (bTEFAP) and by culturing on R2A medium. An average of 31 genera per biofilm were identified using bTEFAP and a total of 30 isolates were cultured. Even though the microbial diversity of each showerhead biofilm differed, every cultured isolate was able to coaggregate with at least one other isolate from the same or different showerhead biofilm. Promiscuous coaggregating isolates belonged to the genera Brevundimonas, Micrococcus, and Lysobacter. This work suggests that coaggregation may be a common feature of showerhead biofilms. Characterization of the mechanisms mediating coaggregation, and the inter-species interactions they facilitate, may allow for novel strategies to inhibit biofilm development.
机译:莲蓬头可支持多种生物膜的开发,这些生物膜可能很难看,会产生恶臭并可能携带病原体。许多淋浴喷头的外表面喷雾板支撑着可见的生物膜,这些生物膜可能含有淡水和潜在的人类使用者细菌的混合物。共聚是遗传上不同的细菌彼此特异性识别的一种机制,可能有助于这些生物膜内不同物种的保留和富集。这项工作的目的是确定三个家用淋浴喷头的外部喷雾板生物膜的细菌组成,并确定每种可培养分离株的生物膜间和生物膜内的共聚集能力。通过使用细菌标签编码的FLX扩增子焦磷酸测序(bTEFAP)并在R2A培养基上培养来确定这三个生物膜的细菌组成。使用bTEFAP鉴定出平均每个生物膜31个属,共培养了30个分离株。即使每个喷淋头生物膜的微生物多样性不同,每种培养的分离株都能够与至少一个来自相同或不同喷淋头生物膜的分离株共聚。混杂聚集的分离株属于短杆菌属,微球菌和溶菌属。这项工作表明,聚集可能是喷头生物膜的共同特征。介导共聚集的机制及其促进的种间相互作用的特征可能允许抑制生物膜发育的新策略。

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