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首页> 外文期刊>Frontiers in Microbiology >Synergistic Interactions in Microbial Biofilms Facilitate the Establishment of Opportunistic Pathogenic Fungi in Household Dishwashers
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Synergistic Interactions in Microbial Biofilms Facilitate the Establishment of Opportunistic Pathogenic Fungi in Household Dishwashers

机译:微生物生物膜中的协同相互作用促进家用洗碗机中机会性致病真菌的建立

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Biofilms formed on rubber seals in dishwashers harbor diverse microbiota. In this study, we focussed on the microbial composition of bacteria and fungi, isolated from a defined area of one square centimeter of rubber from four domestic dishwashers and assessed their abilities to in vitro multispecies biofilm formation. A total of 80 isolates (64 bacterial and 16 fungal) were analyzed. Multiple combinations of bacterial isolates from each dishwasher were screened for synergistic interactions. 32 out of 140 tested (23%) four-species bacterial combinations displayed consistent synergism leading to an overall increase in biomass, in all experimental trails. Bacterial isolates from two of the four dishwashers generated a high number of synergistically interacting four-species consortia. Network based correlation analyses also showed higher co-occurrence patterns observed between bacterial members in the same two dishwasher samples, indicating cooperative effects. Furthermore, two synergistic four-species bacterial consortia were tested for their abilities to incorporate an opportunistic fungal pathogen, Exophiala dermatitidis and their establishment as biofilms on sterile ethylene propylene diene monomer M-class (EPDM) rubber and polypropylene (PP) surfaces. When the bacterial consortia included E. dermatitidis , the overall cell numbers of both bacteria and fungi increased and a substantial increase in biofilm biomass was observed. These results indicate a novel phenomenon of cross kingdom synergy in biofilm formation and these observations could have potential implications for human health.
机译:洗碗机橡胶密封圈上形成的生物膜带有多种微生物群。在这项研究中,我们重点研究了细菌和真菌的微生物组成,这些细菌和真菌是从四个家用洗碗机的橡胶的一平方厘米定义区域中分离出来的,并评估了它们在体外形成多种生物膜的能力。总共分析了80个分离株(64个细菌和16个真菌)。对来自每个洗碗机​​的细菌分离物的多种组合进行筛选以寻找协同作用。在所有实验中,在140种经过测试的23种四物种细菌组合中,有32种表现出一致的协同作用,导致生物量总体增加。来自四个洗碗机中的两个的细菌分离物产生了大量协同相互作用的四个物种的联合体。基于网络的相关性分析还显示,在相同的两个洗碗机样品中,细菌成员之间观察到较高的共现模式,表明存在协同效应。此外,测试了两个协同的四个物种的细菌群落,它们具有结合机会性真菌病原体Exophiala dermatitidis的能力,以及在无菌乙丙二烯单体M级(EPDM)橡胶和聚丙烯(PP)表面上作为生物膜的建立。当细菌菌群包括皮肤病埃希氏菌时,细菌和真菌的总细胞数均增加,并且观察到生物膜生物量显着增加。这些结果表明生物膜形成过程中跨界协同作用的新现象,这些观察结果可能对人类健康产生潜在影响。

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