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沉积态氮和硫还原功能耦合与人为虾类养殖池塘生态系统微生物群落的相互作用

Sedimentary Nitrogen and Sulfur Reduction Functional-Couplings Interplay With the Microbial Community of Anthropogenic Shrimp Culture Pond Ecosystem.

作者信息

Zhou Renjun, Hou Dongwei, Zeng Shenzheng, Wei Dongdong, Yu Lingfei, Bao Shicheng, Weng Shaoping, He Jianguo, Huang Zhijian

机构信息

State Key Laboratory of Biocontrol, Southern Marine Sciences and Engineering Guangdong Laboratory (Zhuhai), School of Marine Sciences, Sun Yat-sen University, Guangzhou, China.

School of Life Sciences, Sun Yat-sen University, Guangzhou, China.

出版信息

Front Microbiol. 2022 Mar 4;13:830777. doi: 10.3389/fmicb.2022.830777. eCollection 2022.

Abstract

Sediment nitrogen and sulfur cycles are essential biogeochemical processes that regulate the microbial communities of environmental ecosystems, which have closely linked to environment ecological health. However, their functional couplings in anthropogenic aquaculture sedimentary ecosystems remain poorly understood. Here, we explored the sediment functional genes in shrimp culture pond ecosystems (SCPEs) at different culture stages using the GeoChip gene array approach with 16S amplicon sequencing. Dissimilarity analysis showed that the compositions of both functional genes and bacterial communities differed at different phases of shrimp culture with the appearance of temporal distance decay ( < 0.05). During shrimp culture, the abundances of nitrite and sulfite reduction functional genes decreased ( < 0.05), while those of nitrate and sulfate reduction genes were enriched ( < 0.05) in sediments, implying the enrichment of nitrites and sulfites from microbial metabolism. Meanwhile, nitrogen and sulfur reduction genes were found to be linked with carbon degradation and phosphorous metabolism ( < 0.05). The influence pathways of nutrients were demonstrated by structural equation modeling through environmental factors and the bacterial community on the nitrogen and sulfur reduction functions, indicating that the bacterial community response to environmental factors was facilitated by nutrients, and led to the shifts of functional genes ( < 0.05). These results indicate that sediment nitrogen and sulfur reduction functions in SCPEs were coupled, which are interconnected with the SCPEs bacterial community. Our findings will be helpful for understanding biogeochemical cycles in anthropogenic aquaculture ecosystems and promoting sustainable management of sediment environments through the framework of an ecological perspective.

摘要

沉积物氮和硫循环是重要的生物地球化学过程,它们调节着环境生态系统中的微生物群落,与环境生态健康密切相关。然而,它们在人为水产养殖沉积生态系统中的功能耦合仍知之甚少。在此,我们使用GeoChip基因芯片方法结合16S扩增子测序,探索了不同养殖阶段虾塘养殖生态系统(SCPEs)中的沉积物功能基因。差异分析表明,随着时间距离衰减的出现(<0.05),功能基因和细菌群落的组成在虾养殖的不同阶段有所不同。在对虾养殖过程中,沉积物中亚硝酸盐和亚硫酸盐还原功能基因的丰度下降(<0.05),而硝酸盐和硫酸盐还原基因的丰度增加(<0.05),这意味着微生物代谢产生的亚硝酸盐和亚硫酸盐有所富集。同时,发现氮和硫还原基因与碳降解和磷代谢有关(<0.05)。通过环境因子和细菌群落对氮和硫还原功能的结构方程模型,证明了养分的影响途径,表明养分促进了细菌群落对环境因子的响应,并导致功能基因的变化(<0.05)。这些结果表明,SCPEs中沉积物氮和硫还原功能是耦合的,并且与SCPEs细菌群落相互关联。我们的研究结果将有助于理解人为水产养殖生态系统中的生物地球化学循环,并通过生态视角的框架促进沉积物环境的可持续管理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/99b8/8931606/226222fde278/fmicb-13-830777-g003.jpg

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