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脱硫杆菌目促进亚热带海湾红树林生态系统中的硝酸盐还原。

Desulfobacterales stimulates nitrate reduction in the mangrove ecosystem of a subtropical gulf.

机构信息

State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, Guangxi Research Center for Microbial and Enzyme Engineering Technology, College of Life Science and Technology, Guangxi University, Nanning 530004, China.

Guangxi Birth Defects Prevention and Control Institute, Maternal and Child Health Hospital of Guangxi Zhuang Autonomous Region, Nanning 530033, China.

出版信息

Sci Total Environ. 2021 May 15;769:144562. doi: 10.1016/j.scitotenv.2020.144562. Epub 2021 Jan 9.

Abstract

The amount of nitrogen compounds discharged into the natural environment has increased drastically due to frequent human activities and led to worsening pollution. The mangrove ecosystem can remove nitrogen pollution, in this regard, few studies had focused on the relationship among nitrogen cycling genes, environmental factors, and taxonomic composition. In this study, shotgun metagenomic sequencing and quantitative polymerase chain reaction were used to understand the nitrogen cycle in the subtropical mangrove ecosystem in the Beibu Gulf of China. Eight nitrogen cycling pathways were annotated. Nitrogen metabolism activities were significantly higher in the wet season than those in the dry season. The most abundant genes were those related to the synthesis and degradation of organic nitrogen, followed by the genes involved in nitrate reduction (denitrification, dissimilation/assimilation nitrate reduction). Furthermore, dissimilation nitrate reduction was the main nitrate reduction pathway. Desulfobacterales plays an important role in nitrogen cycling and contributes 12% of the genes of nitrogen pathways on average; as such, a strong coupling relationship exists among nitrogen cycling, sulfur cycling, and carbon cycling in the mangrove ecosystem. Nitrogen pollution in the mangrove wetland can be efficiently alleviated by nitrate reduction of Desulfobacterales. Nevertheless, only 50% of genes can be matched among the known species, suggesting that many unknown microorganisms in the mangrove ecosystem can perform nitrogen cycling. Total phosphorus, available iron, and total organic carbon are the key environmental factors that influence the distribution of nitrogen cycling genes, related pathways, and the taxonomic composition. Our study clearly illustrates how the mangrove ecosystem mitigates nitrogen pollution through Desulfobacterales. This finding could provide a research reference for the whole nitrogen cycling in the mangrove ecosystem.

摘要

由于人类活动频繁,氮化合物的排放量大量排入自然环境,导致污染加剧。红树林生态系统可以去除氮污染,然而,关于氮循环基因、环境因素和分类组成之间的关系,很少有研究关注。本研究采用鸟枪法宏基因组测序和定量聚合酶链反应,了解中国北部湾亚热带红树林生态系统的氮循环。共注释了 8 条氮循环途径。氮代谢活性在雨季显著高于旱季。最丰富的基因与有机氮的合成和降解有关,其次是与硝酸盐还原(反硝化、异化/同化硝酸盐还原)有关的基因。此外,异化硝酸盐还原是硝酸盐还原的主要途径。脱硫杆菌在氮循环中起着重要作用,平均占氮途径基因的 12%;因此,在红树林生态系统中,氮循环、硫循环和碳循环之间存在着很强的耦合关系。红树林湿地中的氮污染可以通过脱硫杆菌的硝酸盐还原得到有效缓解。然而,只有 50%的基因可以与已知物种相匹配,这表明红树林生态系统中存在许多未知的微生物可以进行氮循环。总磷、有效铁和总有机碳是影响氮循环基因、相关途径和分类组成分布的关键环境因素。本研究清楚地说明了红树林生态系统如何通过脱硫杆菌来减轻氮污染。这一发现可为整个红树林生态系统的氮循环提供研究参考。

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