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Thickness determines microbial community structure and function in nitrifying biofilms via deterministic assembly

机译:厚度通过确定性组装确定硝化生物膜中的微生物群落结构和功能

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摘要

Microbial biofilms are ubiquitous in aquatic environments where they provide important ecosystem functions. A key property believed to influence the community structure and function of biofilms is thickness. However, since biofilm thickness is inextricably linked to external factors such as water flow, temperature, development age and nutrient conditions, its importance is difficult to quantify. Here, we designed an experimental system in a wastewater treatment plant whereby nitrifying biofilms with different thicknesses (50 or 400 µm) were grown in a single reactor, and thus subjected to identical external conditions. The 50 and 400 µm biofilm communities were significantly different. This beta-diversity between biofilms of different thickness was primarily caused by deterministic factors. Turnover (species replacement) contributed more than nestedness (species loss) to the beta-diversity, i.e. the 50 µm communities were not simply a subset of the 400 µm communities. Moreover, the two communities differed in the composition of nitrogen-transforming bacteria and in nitrogen transformation rates. The study illustrates that biofilm thickness alone is a key driver for community composition and ecosystem function, which has implications for biotechnological applications and for our general understanding of biofilm ecology.
机译:微生物生物膜在提供重要生态系统功能的水生环境中无处不在。据信影响生物膜的群落结构和功能的关键特性是厚度。但是,由于生物膜的厚度与水流,温度,发育年龄和营养条件等外部因素有着千丝万缕的联系,因此其重要性难以量化。在这里,我们在废水处理厂中设计了一个实验系统,通过该系统,可以在单个反应器中生长不同厚度(50或400μm)的硝化生物膜,并使其处于相同的外部条件下。 50和400µm生物膜群落显着不同。不同厚度生物膜之间的这种β多样性主要是由确定性因素引起的。营业额(物种替代)对嵌套多样性的贡献大于嵌套(物种丧失),即50μm的群落不仅仅是400μm群落的子集。此外,这两个群落在氮转化细菌的组成和氮转化率方面也不同。研究表明,仅生物膜厚度是社区组成和生态系统功能的关键驱动力,这对生物技术应用以及我们对生物膜生态学的一般理解具有影响。

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