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Molecular analysis of microbial nitrogen transformation and removal potential in mangrove wetlands under anthropogenic nitrogen input

机译:人为氮气投入下红树林湿地中微生物氮转化及去除电位的分子分析

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摘要

Mangrove ecosystems are natural nitrogen removal systems that are primarily mediated by nitrogen cycle microorganisms,but their relative contributions to nitrogen transformation and removal in mangrove sediments under anthropogenic nitrogen input needs further resolution and characterization.Here,we investigated the responses and the relative contributions of ammonia-oxidizing archaea (AOA),ammonia-oxidizing bacteria (AOB),anaerobic ammonium oxidizing (anammox) bacteria and denitrifying bacteria after spiking urea into mangrove sediments incubated in a laboratory microcosm experiment for four weeks.During incubation,the diversity,abundances and transcription levels of the hzo genes for anammox bacteria,amoA genes for AOA and AOB,and nirS genes for denitrifying bacteria were monitored using targeted gene clone library analyses and quantitative PCR assays at the DNA and RNA levels.The results showed that mangrove sediments harbour habitat-specific anammox bacteria which related to Candidatus Scalindua and Candidatus Kuenenia clades.Mangrove specific AOA related to deep branched clades within Candidatus Nitrososphaera and Candidatus Nitrosotalea,and AOB related to Nitrosomonas and Nitrosospira were also detected in the collected sediment samples.Growth and activity of AOA were detected at all levels of amendment of nitrogen input,whereas AOB growth was detectable only at the high-level nitrogen input (1.5 mg urea per gram of dry sediment) with no amoA transcripts and lower abundance than AOA.The abundance and transcription levels of the nirS gene were higher (~1000 times) than those of the hzo gene in all groups.Pearson correlation analysis demonstrated that the abundance of both AOA and AOB amoA genes had a significant positive correlation with the nirS gene (p < 0.01).These results indicated that nitrification (primarily mediated by the AOA)-denitrification process played the most important role in nitrogen removal from the amendment of nitrogen short-term input in the mangrove sediments.
机译:红树林生态系统是主要由氮素循环微生物介导的天然氮去除系统,但它们在人体氮投入下的红树林沉积物中对氮转化和去除的相对贡献需要进一步的分辨率和表征。我们调查了氨的反应和相对贡献 - 氧化archaea(AOA),氨氧化细菌(AOB),厌氧铵氧化(厌氧毒素)细菌和掺入尿素后的解氮化细菌在实验室微观体验中孵育的红树林沉积物进行四周。培养,多样性,丰度和转录。使用靶基因克隆文库分析和DNA和RNA水平的定量PCR测定监测AOA细菌的HZO基因的HZO基因和用于反硝化细菌的NIRS基因的水平。结果表明,红树林沉积物栖息地 - 与坦率有关的特异性厌氧菌细菌ATUS Scalindua和Candidatus Kuenenia Clades.Mangrove与Candidatus Nitrososalaera和Candidatus硝基菌的深枝片相关的特定AOA,以及与亚硝基菌和硝基菌菌相关的AOB,在收集的沉积物样品中检测到。在各种修正案中检测到AOA的Grown和活性氮气输入的,而AOB增长检测仅在高级别氮气输入(每克干的沉积物的1.5毫克尿素),没有AMOA转录物和低丰度比NIRS基因的AOA.The丰度和转录水平较高(〜 1000次)所有群体中的HZO基因.Pearson相关性分析表明,AOA和AoB氨基酸的丰度与NIRS基因具有显着的正相关(P <0.01)。结果表明硝化(主要介导通过AOA) - 统治过程在氮气中发挥了最重要的作用,从氮素短期输入的修正中取出他红树林沉积物。

著录项

  • 来源
    《Science of the total environment》 |2021年第15期|145632.1-145632.10|共10页
  • 作者单位

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems School of Life Sciences Xiamen University Xiamen 361102 China;

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems School of Life Sciences Xiamen University Xiamen 361102 China;

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems School of Life Sciences Xiamen University Xiamen 361102 China;

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems School of Life Sciences Xiamen University Xiamen 361102 China;

    Key Laboratory of the Ministry of Education for Coastal and Wetland Ecosystems School of Life Sciences Xiamen University Xiamen 361102 China State Key Laboratory of Marine Environmental Sciences Xiamen University Xiamen 361102 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Mangrove sediments; Nitrogen removal; Anammox bacteria; Ammonia-oxidizing archaea (AOA); Ammonia-oxidizing bacteria (AOB); Denitrifying bacteria;

    机译:红树林沉积物;氮气去除;厌氧细菌;氨氧化archaea(AOA);氨氧化细菌(AOB);反硝化细菌;

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