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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Divergent assemblage patterns of abundant and rare microbial sub-communities in response to inorganic carbon stresses in a simultaneous anammox and denitrification (SAD) system
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Divergent assemblage patterns of abundant and rare microbial sub-communities in response to inorganic carbon stresses in a simultaneous anammox and denitrification (SAD) system

机译:响应于同时厌氧和反硝化(悲伤)系统的无机碳胁迫响应无机碳应力的丰富和罕见的微生物亚群体的分歧组合模式

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摘要

Inorganic carbon has profound influence on anammox system and distinct microbial communities play pivotal roles in nitrogen removal, yet little is known about the ecological patterns of abundant and rare sub-communities in response to inorganic carbon stresses in simultaneous anammox and denitrification systems. Here the aspects of community ecology of abundant and rare taxa under abiotic constraints were explored. Results showed that different IC/NH4+-N ratios have significant influences on NH4+-N and TN removal. Co-occurrence networks revealed that abundant and rare taxa present contrasting assemblage patterns and ecological strategies. Spearman's correlation indicated that environmental filtering had discrepancy influences on these two bacterial sub-communities. Moreover, rare taxa were the key regulators for NH4+-N accumulation and NO2--N consumption. qPCR results indicated that nitrogen removal was mediated by multiple nitrogen transformation pathways. These findings collectively suggest that abundant and rare sub-communities have discrepant ecological patterns and provide insights into their structure-functional relationships.
机译:无机碳对厌氧系统的影响深厚,不同的微生物社区在氮气中发挥枢转作用,但响应于同时厌氧和反硝化系统中的无机碳应力,对丰富和稀有亚群体的生态模式知之甚少。在这里,探讨了非生物制约因素下丰富和罕见的罕见群体的社区生态学的方面。结果表明,不同的IC / NH 4 + -N比率对NH4 + -N和去除具有显着影响。共同发生网络揭示了丰富和稀有的分类群地位对比组合模式和生态策略。 Spearman的相关性表明,环境过滤对这两种细菌子群体的影响具有差异。此外,罕见的征集是NH4 + -N积累和NO2 - N的关键调节因子。 QPCR结果表明,通过多种氮转化途径介导氮去除。这些调查结果共同认为,丰富和稀有的子社区具有差异的生态模式,并提供对其结构功能关系的见解。

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