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首页> 外文期刊>The ISME journal emultidisciplinary journal of microbial ecology >Microbial residence time is a controlling parameter of the taxonomic composition and functional profile of microbial communities
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Microbial residence time is a controlling parameter of the taxonomic composition and functional profile of microbial communities

机译:微生物停留时间是分类组成的控制参数和微生物社区的功能性

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摘要

A remaining challenge within microbial ecology is to understand the determinants of richness and diversity observed in environmental microbial communities. In a range of systems, including activated sludge bioreactors, the microbial residence time (MRT) has been previously shown to shape the microbial community composition. However, the physiological and ecological mechanisms driving this influence have remained unclear. Here, this relationship is explored by analyzing an activated sludge system fed with municipal wastewater. Using a model designed in this study based on Monod-growth kinetics, longer MRTs were shown to increase the range of growth parameters that enable persistence, resulting in increased richness and diversity in the modeled community. In laboratory experiments, six sequencing batch reactors treating domestic wastewater were operated in parallel at MRTs between 1 and 15 days. The communities were characterized using both 16S ribosomal RNA and non-target messenger RNA sequencing (metatranscriptomic analysis), and model-predicted monotonic increases in richness were confirmed in both profiles. Accordingly, taxonomic Shannon diversity also increased with MRT. In contrast, the diversity in enzyme class annotations resulting from the metatranscriptomic analysis displayed a non-monotonic trend over the MRT gradient. Disproportionately high abundances of transcripts encoding for rarer enzymes occur at longer MRTs and lead to the disconnect between taxonomic and functional diversity profiles.
机译:微生物生态内的剩余挑战是了解在环境微生物社区中观察到的丰富和多样性的决定因素。在一系列系统中,包括活性污泥生物反应器,微生物停留时间(MRT)先前已经显示为塑造微生物群落组合物。然而,驱动这种影响的生理和生态机制仍然不清楚。这里,通过分析与市政废水供给的活化污泥系统探索这种关系。使用基于Monod-Grownetics的本研究中设计的型号,显示了更长的推动MRTS来增加实现持续存在的增长参数范围,从而增加了所建模社区中的丰富性和多样性。在实验室实验中,治疗国内废水的六个测序批量反应器在1至15天之间并联在MRTS之间平行操作。使用16S核糖体RNA和非目标信使RNA测序(MetaTranscriptomic分析)的特征在于,在两个轮廓中证实了丰富性的模型预测的单调增加。因此,分类学香农多样性也随MRT增加。相反,由METATRANSRAPSOMIC分析产生的酶类注释中的多样性显示了MRT梯度的非单调趋势。不成比例地,对RARER酶的编码的高丰度发生在较长的MRT并且导致分类和功能分集谱之间的断开。

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    Eawag Swiss Fed Inst Aquat Sci &

    Technol Dept Environm Chem Uberlandstr 133 CH-8600 Dubendorf Switzerland;

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Dept Environm Chem Uberlandstr 133 CH-8600 Dubendorf Switzerland;

    Univ Illinois Dept Civil &

    Environm Engn 205N Mathews Ave Urbana IL 61801 USA;

    Swiss Fed Inst Technol Genet Div Ctr Dept Environm Syst Sci Univ Str 16 CH-8006 Zurich Switzerland;

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Dept Proc Engn Uberlandstr 133 CH-8600 Dubendorf Switzerland;

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Dept Proc Engn Uberlandstr 133 CH-8600 Dubendorf Switzerland;

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Dept Environm Microbiol Uberlandstr 133 CH-8600 Dubendorf Switzerland;

    Eawag Swiss Fed Inst Aquat Sci &

    Technol Dept Environm Chem Uberlandstr 133 CH-8600 Dubendorf Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
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