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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Community-Level Physiological Profiling of Microbial Communities in Constructed Wetlands: Effects of Sample Preparation
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Community-Level Physiological Profiling of Microbial Communities in Constructed Wetlands: Effects of Sample Preparation

机译:人工湿地中微生物群落的群落一级生理概况:样品制备的影响

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摘要

Community-level physiological profiling (CLPP) using BIOLOGA (R) EcoPlates (TM) has become a popular method for characterizing and comparing the functional diversity, functional potential, and metabolic activity of heterotrophic microbial communities. The method was originally developed for profiling soil communities; however, its usage has expanded into the fields of ecotoxicology, agronomy, and the monitoring and profiling of microbial communities in various wastewater treatment systems, including constructed wetlands for water pollution control. When performing CLPP on aqueous samples from constructed wetlands, a wide variety of sample characteristics can be encountered and challenges may arise due to excessive solids, color, or turbidity. The aim of this study was to investigate the impacts of different sample preparation methods on CLPP performed on a variety of aqueous samples covering a broad range of physical and chemical characteristics. The results show that using filter paper, centrifugation, or settling helped clarify samples for subsequent CLPP analysis, however did not do so as effectively as dilution for the darkest samples. Dilution was able to provide suitable clarity for the darkest samples; however, 100-fold dilution significantly affected the carbon source utilization patterns (CSUPs), particularly with samples that were already partially or fully clear. Ten-fold dilution also had some effect on the CSUPs of samples which were originally clear; however, the effect was minimal. Based on these findings, for this specific set of samples, a 10-fold dilution provided a good balance between ease of use, sufficient clarity (for dark samples), and limited effect on CSUPs. The process and findings outlined here can hopefully serve future studies looking to utilize CLPP for functional analysis of microbial communities and also assist in comparing data from studies where different sample preparation methods were utilized.
机译:使用BIOLOGA(R)EcoPlates(TM)进行社区级生理概况分析(CLPP)已成为表征和比较异养微生物群落功能多样性,功能潜力和代谢活性的流行方法。该方法最初是为分析土壤群落而开发的。但是,它的用途已扩展到生态毒理学,农艺学以及各种废水处理系统中微生物群落的监测和分析,包括用于控制水污染的人工湿地。对来自人工湿地的水性样品进行CLPP时,会遇到各种各样的样品特征,并且由于过多的固体,颜色或浊度可能会带来挑战。这项研究的目的是研究对不同的水样进行CLPP的不同样品制备方法的影响,这些水样涵盖了广泛的物理和化学特性。结果表明,使用滤纸,离心或沉降有助于澄清样品,以便进行后续CLPP分析,但效果不如稀释最深色的样品。稀释能够为最深色的样品提供合适的澄清度;但是,稀释100倍会显着影响碳源利用模式(CSUP),尤其是对于已经部分或完全澄清的样品。十倍稀释也对原本清晰的样品的CSUP有一定的影响。但是,效果很小。基于这些发现,对于这组特定的样品,将其稀释10倍即可在易用性,足够的透明度(对于深色样品)和对CSUP的影响有限之间取得良好的平衡。本文概述的过程和发现有望为将来希望利用CLPP进行微生物群落功能分析的研究提供服务,也有助于比较使用不同样品制备方法的研究数据。

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