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利用满江红进行修复可增加土壤中氮功能细菌类群和基因。

Restoration using Azolla imbricata increases nitrogen functional bacterial groups and genes in soil.

作者信息

Lu Xiao-Ming, Lu Peng-Zhen, Yang Ke

机构信息

Institute for Eco-Environmental Sciences, Wenzhou Vocational College of Science and Technology, Wenzhou, 325006, China.

Faculty of Civil Engineering and Architecture, Zhejiang University of Technology, Hangzhou, 310014, China.

出版信息

Appl Microbiol Biotechnol. 2017 May;101(9):3849-3859. doi: 10.1007/s00253-017-8108-9. Epub 2017 Jan 16.

Abstract

Microbial groups are major factors that influence soil function. Currently, there is a lack of studies on microbial functional groups. Although soil microorganisms play an important role in the nitrogen cycle, systematic studies of the effects of environmental factors on microbial populations in relation to key metabolic processes in the nitrogen cycle are seldom reported. In this study, we conducted a systematic analysis of the changes in nitrogen functional groups in mandarin orange garden soil treated with Azolla imbricata. The structures of the major functional bacterial groups and the functional gene abundances involved in key processes of the soil nitrogen cycle were analyzed using high-throughput sequencing (HTS) and quantitative real-time PCR, respectively. The results indicated that returning A. imbricata had an important influence on the composition of soil nitrogen functional bacterial communities. Treatment with A. imbricata increased the diversity of the nitrogen functional bacteria. The abundances of nitrogen functional genes were significantly higher in the treated soil compared with the control soil. Both the diversity of the major nitrogen functional bacteria (nifH bacteria, nirK bacteria, and narG bacteria) and the abundances of nitrogen functional genes in the soil showed significant positive correlations with the soil pH, the organic carbon content, available nitrogen, available phosphorus, and NH-N and NO-N contents. Treatment with 12.5 kg fresh A. imbricata per mandarin orange tree was effective to improve the quality of the mandarin orange garden soil. This study analyzed the mechanism of the changes in functional bacterial groups and genes involved in key metabolic processes of the nitrogen cycle in soil treated by A. imbricata.

摘要

微生物群落是影响土壤功能的主要因素。目前,关于微生物功能群的研究较少。尽管土壤微生物在氮循环中发挥着重要作用,但关于环境因素对与氮循环关键代谢过程相关的微生物种群影响的系统研究鲜有报道。在本研究中,我们对满江红处理的柑橘园土壤中氮功能群的变化进行了系统分析。分别使用高通量测序(HTS)和定量实时PCR分析了参与土壤氮循环关键过程的主要功能细菌群结构和功能基因丰度。结果表明,归还满江红对土壤氮功能细菌群落的组成有重要影响。满江红处理增加了氮功能细菌的多样性。与对照土壤相比,处理土壤中氮功能基因的丰度显著更高。土壤中主要氮功能细菌(固氮酶基因细菌、亚硝酸还原酶基因细菌和硝酸还原酶基因细菌)的多样性和氮功能基因的丰度均与土壤pH、有机碳含量、有效氮、有效磷以及铵态氮和硝态氮含量呈显著正相关。每棵柑橘树施用12.5千克鲜满江红对改善柑橘园土壤质量有效。本研究分析了满江红处理土壤中参与氮循环关键代谢过程的功能细菌群和基因变化的机制。

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