[水中微塑料丰度与氮代谢功能微生物和基因之间关系的响应]。

Q2 Environmental Science Huanjing Kexue/Environmental Science Pub Date : 2024-06-08 DOI:10.13227/j.hjkx.202307060
Zhi-Chao Wang, Yu Ma, Ya-Xin-Yue Li, Chen-Xi Li, Jing-Tian Gao, Wei-Ping Li
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引用次数: 0

摘要

微塑料(MPs)作为一种新型污染物对水体污染的影响已成为研究热点。为探讨淡水环境中MPs丰度与氮代谢功能的响应关系,以乌兰素海湖为研究对象,利用蔡司显微镜检测了水中MPs的丰度,并利用元基因组测序分析了水中氮代谢功能菌和功能基因的分布特征。采用相关分析方法探讨了 MPs 丰度与氮代谢功能微生物和氮代谢功能基因之间的关系。结果表明,淡水环境中 MPs 的存在对优势菌属蓝细菌和固氮菌的影响较大,MPs 的存在促进了它们的富集和生长。在优势菌属中,MPs对分枝杆菌的生长有较明显的促进作用,而对Candidatus_Planktopila有较明显的抑制作用,这进一步说明在淡水环境中,MPs通过影响微生物群落来影响正常的氮代谢,而固碳、固氮和反硝化等途径是MPs影响氮代谢的重要途径。从氮代谢功能基因的角度研究发现,MPs的丰度显著影响了硝化(pmoA-amoA、pmoB-amoB和pmoC-amoC)、反硝化(nirK和napA)和硝酸盐异氨还原(nrfA)过程中的一些功能基因(P <0.05)。此外,MPs 丰度对同一氮代谢途径中不同功能基因的影响也不尽相同,因此 MPs 对水环境的影响非常复杂,对水环境的危害不可低估。
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[Response of Relationship Between Microplastic Abundance and Nitrogen Metabolism Function Microorganisms and Genes in Water].

The impact of microplastics (MPs) as a new type of pollutant on water pollution has become a research hotspot. To explore the response relationship between the abundance of MPs and nitrogen metabolism function in a freshwater environment, Lake Ulansuhai was used as the research object; the abundance of MPs in the water was detected using a Zeiss microscope, and the distribution characteristics of nitrogen metabolism functional bacteria and functional genes in the water were analyzed using metagenomics sequencing. The correlation analysis method was used to explore the relationship between the abundance of MPs and nitrogen metabolism functional microorganisms and nitrogen metabolism functional genes. The results showed that the presence of MPs in freshwater environments had a higher impact on Cyanobacteria and Firmicutes as the dominant phyla, and the presence of MPs promoted their enrichment and growth. Among the dominant bacterial genera, MPs promoted the growth of Mycobacterium and inhibited Candidatus_Planktopila more significantly, further indicating that in freshwater environments, MPs affected normal nitrogen metabolism by affecting microbial communities, and pathways such as carbon and nitrogen fixation and denitrification were important pathways for MPs to affect nitrogen metabolism. From the perspective of nitrogen metabolism functional genes, it was found that the abundance of MPs significantly affected some functional genes during nitrification (pmoA-amoA, pmoB-amoB, and pmoC-amoC), denitrification (nirK and napA), and dissimilatory nitrate reduction (nrfA) processes (P < 0.05). Moreover, the influence of MPs abundance on different functional genes in the same pathway of nitrogen metabolism varied, making the impact of MPs on aquatic environments very complex; thus, its harm to the water environment cannot be underestimated.

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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
期刊最新文献
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