Intensified river salinization alters nitrogen-cycling microbial communities in arid and semi-arid regions of China

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Abstract

Freshwater salinization is receiving increasing global attention due to its profound influence on nitrogen cycling in aquatic ecosystems and the accessibility of water resources. However, a comprehensive understanding of the changes in river salinization and the impacts of salinity on nitrogen cycling in arid and semi-arid regions of China is currently lacking. A meta-analysis was first conducted based on previous investigations and found an intensification in river salinization that altered hydrochemical characteristics. To further analyze the impact of salinity on nitrogen metabolism processes, we evaluated rivers with long-term salinity gradients based on in situ observations. The genes and enzymes that were inhibited generally by salinity, especially those involved in nitrogen fixation and nitrification, showed low abundances in three salinity levels. The abundance of genes and enzymes with denitrification and dissimilatory nitrate reduction to ammonium functions still maintained a high proportion, especially for denitrification genes/enzymes that were enriched under medium salinity. Denitrifying bacteria exhibited various relationships with salinity, while dissimilatory nitrate reduction to ammonium bacterium (such as Hydrogenophaga and Curvibacter carrying nirB) were more inhibited by salinity, indicating that diverse denitrifying bacteria could be used to regulate nitrogen concentration. Most genera exhibited symbiotic and mutual relationships, and the highest proportion of significant positive correlations of abundant genera was found under medium salinity. This study emphasizes the role of river salinity on environment characteristics and nitrogen transformation rules, and our results are useful for improving the availability of river water resources in arid and semi-arid regions.

加剧的河流盐碱化改变了中国干旱和半干旱地区的氮循环微生物群落
淡水盐碱化对水生生态系统的氮循环和水资源的可利用性有着深远的影响,因而日益受到全球的关注。然而,目前还缺乏对中国干旱和半干旱地区河流盐渍化变化及其对氮循环影响的全面认识。首先在以往研究的基础上进行了荟萃分析,发现河流盐渍化加剧改变了水化学特征。为了进一步分析盐度对氮代谢过程的影响,我们根据现场观测对长期盐度梯度的河流进行了评估。受盐度抑制的基因和酶,尤其是参与固氮和硝化的基因和酶,在三个盐度水平中的丰度较低。具有反硝化和异氨硝酸盐还原成氨功能的基因和酶的丰度仍保持较高比例,尤其是反硝化基因/酶在中度盐度下丰度较高。反硝化细菌与盐度的关系多种多样,而异氨硝酸盐还原铵细菌(如携带 nirB 的 Hydrogenophaga 和 Curvibacter)受盐度的抑制较大,这表明可以利用多种反硝化细菌来调节氮浓度。大多数菌属表现出共生和互生关系,在中度盐度条件下,丰富菌属的显著正相关比例最高。本研究强调了河流盐度对环境特征和氮转化规律的作用,其结果对改善干旱和半干旱地区河流水资源的可利用性有一定帮助。
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来源期刊
Eco-Environment & Health
Eco-Environment & Health 环境科学与生态学-生态、环境与健康
CiteScore
11.00
自引率
0.00%
发文量
18
审稿时长
22 days
期刊介绍: Eco-Environment & Health (EEH) is an international and multidisciplinary peer-reviewed journal designed for publications on the frontiers of the ecology, environment and health as well as their related disciplines. EEH focuses on the concept of “One Health” to promote green and sustainable development, dealing with the interactions among ecology, environment and health, and the underlying mechanisms and interventions. Our mission is to be one of the most important flagship journals in the field of environmental health. Scopes EEH covers a variety of research areas, including but not limited to ecology and biodiversity conservation, environmental behaviors and bioprocesses of emerging contaminants, human exposure and health effects, and evaluation, management and regulation of environmental risks. The key topics of EEH include: 1) Ecology and Biodiversity Conservation Biodiversity Ecological restoration Ecological safety Protected area 2) Environmental and Biological Fate of Emerging Contaminants Environmental behaviors Environmental processes Environmental microbiology 3) Human Exposure and Health Effects Environmental toxicology Environmental epidemiology Environmental health risk Food safety 4) Evaluation, Management and Regulation of Environmental Risks Chemical safety Environmental policy Health policy Health economics Environmental remediation
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