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首页> 外文期刊>Scientific reports. >Integrative microbial community analysis reveals full-scale enhanced biological phosphorus removal under tropical conditions
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Integrative microbial community analysis reveals full-scale enhanced biological phosphorus removal under tropical conditions

机译:综合微生物群落分析显示热带条件下的全规模增强的生物磷去除

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摘要

Management of phosphorus discharge from human waste is essential for the control of eutrophication in surface waters. Enhanced biological phosphorus removal (EBPR) is a sustainable, efficient way of removing phosphorus from waste water without employing chemical precipitation, but is assumed unachievable in tropical temperatures due to conditions that favour glycogen accumulating organisms (GAOs) over polyphosphate accumulating organisms (PAOs). Here, we show these assumptions are unfounded by studying comparative community dynamics in a full-scale plant following systematic perturbation of operational conditions, which modified community abundance, function and physicochemical state. A statistically significant increase in the relative abundance of the PAO Accumulibacter was associated with improved EBPR activity. GAO relative abundance also increased, challenging the assumption of competition. An Accumulibacter bin-genome was identified from a whole community metagenomic survey, and comparative analysis against extant Accumulibacter genomes suggests a close relationship to Type II. Analysis of the associated metatranscriptome data revealed that genes encoding proteins involved in the tricarboxylic acid cycle and glycolysis pathways were highly expressed, consistent with metabolic modelling results. Our findings show that tropical EBPR is indeed possible, highlight the translational potential of studying competition dynamics in full-scale waste water communities and carry implications for plant design in tropical regions.
机译:从人类废物中磷排出的管理对于在表面水域中的富营养化是必不可少的。增强的生物磷去除(EBPR)是从废水中除去废水的可持续,有效的方式,而不使用化学沉淀,但由于有利于在多磷酸盐积累生物(PAOS)上的糖原累积生物(GaOS)的条件,在热带温度下不可求建。在这里,我们通过在整个植物中,在系统扰动的运行条件下的全规模植物中研究比较群落动态,这些假设是通过改进的群落丰富,功能和物理化学状态的全面植物来研究。 Pao累积的相对丰度的统计学上显着增加与改善的EBPR活性有关。高相对丰富也有所增加,挑战竞争的假设。从整个社区均衡调查中鉴定了累积箱内基因组,并且对远定累积基因组的比较分析表明与II型密切相关。相关的METATRANSCRAME数据的分析显示,高度表达了编码参与三羧酸循环和糖酵解途径的蛋白质的基因,与代谢建模结果一致。我们的研究结果表明,热带EBPR确实可能,突出了在全规模废水社区中研究竞争动态的翻译潜力,并对热带地区进行植物设计的影响。

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