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Spatial Distribution and Factors Shaping the Niche Segregation of Ammonia-Oxidizing Microorganisms in the Qiantang River China

机译:钱塘江氨氧化微生物生态位隔离的空间分布及影响因素

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摘要

Ammonia oxidation is performed by both ammonia-oxidizing archaea (AOA) and ammonia-oxidizing bacteria (AOB). However, the current knowledge of the distribution, diversity, and relative abundance of these two microbial groups in freshwater sediments is insufficient. We examined the spatial distribution and analyzed the possible factors leading to the niche segregation of AOA and AOB in the sediments of the Qiantang River, using clone library construction and quantitative PCR for both archaeal and bacterial amoA genes. pH and NH4+-N content had a significant effect on AOA abundance and AOA operational taxonomy unit (OTU) numbers. pH and organic carbon content influenced the ratio of AOA/AOB OTU numbers significantly. The influence of these factors showed an obvious spatial trend along the Qiantang River. This result suggested that AOA may contribute more than AOB to the upstream reaches of the Qiantang River, where the pH is lower and the organic carbon and NH4+-N contents are higher, but AOB were the principal driver of nitrification downstream, where the opposite environmental conditions were present.
机译:氨氧化是通过氨氧化古细菌(AOA)和氨氧化细菌(AOB)进行的。但是,目前对这两种微生物在淡水沉积物中的分布,多样性和相对丰度的了解不足。我们使用克隆文库构建和定量PCR分析古细菌和细菌amoA基因,研究了空间分布并分析了导致钱塘江沉积物中AOA和AOB的生态位分离的可能因素。 pH和NH4 + -N含量对AOA丰度和AOA操作分类单位(OTU)数量有显着影响。 pH和有机碳含量显着影响AOA / AOB OTU数之比。这些因素的影响在钱塘江沿岸呈现出明显的空间趋势。该结果表明,在pH较低,有机碳和NH4 + -N含量较高的钱塘江上游,AOA的贡献可能大于AOB,但主要驱动因素是存在相反环境条件的下游硝化反应

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