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Bacterial species dominance within a binary culture biofilm.

机译:细菌在二元培养生物膜中的优势地位。

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摘要

Studies with two species of bacteria, Pseudomonas putida and Hyphomicrobium sp. strain ZV620, were carried out to evaluate the overall net rate of accumulation of biofilm, the biofilm species composition, and individual species shear-related removal rates. Bacterial cells of either or both species were deposited onto glass or biofilm surfaces to initiate multispecies biofilms. Subsequent biofilm development was carried out under known conditions of nutrient concentration and laminar flow. Establishment of a depositing organism in a biofilm composed of another species was found to be a function of the relative growth rates of the bacterial species. In the case of simultaneous species deposition and subsequent binary culture development, the faster-growing organisms rapidly became the dominant biofilm species, but the slower-growing organisms remained established within the biofilm and continued to increase in numbers over time. The results also indicated that the rate of cell removal by fluid shear for a species was a function of biofilm cell number only if the species concentration was uniform with depth; in essence, only the upper layers of the biofilm were sheared off.
机译:研究两种细菌,恶臭假单胞菌和Hyphomicrobium sp。进行了菌株ZV620,以评估生物膜的总体累积净速率,生物膜的种类组成以及与剪切相关的单个物种的去除率。任一种或两种细菌细胞都沉积在玻璃或生物膜表面上,以启动多物种生物膜。随后的生物膜发展是在已知的养分浓度和层流条件下进行的。发现在由另一物种组成的生物膜中建立沉积生物是细菌物种相对生长速率的函数。在同时发生物种沉积和随后的二元培养发展的情况下,生长较快的生物迅速成为占主导地位的生物膜物种,但生长较慢的生物仍在生物膜内建立并随着时间的推移继续增加。结果还表明,仅当物种浓度随深度均匀时,流体通过流体剪切去除的速率才是生物膜细胞数量的函数。本质上,仅剪切生物膜的上层。

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