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铜胁迫对小麦根系微域微生物群落的影响
引用本文:葛艺,徐民民,徐绍辉,徐艳.铜胁迫对小麦根系微域微生物群落的影响[J].环境科学,2021,42(2):996-1003.
作者姓名:葛艺  徐民民  徐绍辉  徐艳
作者单位:青岛大学环境科学与工程学院, 青岛 266071;山东省环境保护科学研究设计院有限公司, 济南 250100
基金项目:山东省自然科学基金项目(ZR2019YQ18);山东省高等学校青创人才引育计划项目(DC2000000961)
摘    要:小麦是我国主要的粮食作物,土壤重金属污染会严重威胁作物生长和粮食安全.大量研究表明根际微生物在调控作物发育和抗逆性方面具有非常重要的作用.因此,本研究通过高通量测序技术研究铜胁迫条件下小麦根际微生物群落的变化,从微生物学角度揭示铜污染胁迫对小麦根际的影响作用.采用盆栽培养试验对铜污染处理中小麦非根际、根际以及根内微生物...

关 键 词:铜污染  小麦  根际微生物  微生物多样性  高通量测序
收稿时间:2020/5/24 0:00:00
修稿时间:2020/8/17 0:00:00

Effects of Copper Pollution on Microbial Communities in Wheat Root Systems
GE Yi,XU Min-min,XU Shao-hui,XU Yan.Effects of Copper Pollution on Microbial Communities in Wheat Root Systems[J].Chinese Journal of Environmental Science,2021,42(2):996-1003.
Authors:GE Yi  XU Min-min  XU Shao-hui  XU Yan
Institution:School of Environmental Science and Engineering, Qingdao University, Qingdao 266071, China;Shandong Academy of Environmental Sciences Company Limited, Ji''nan 250100, China
Abstract:Wheat is the main food crop in China while at the same time, heavy metals pose a significant threat to crop growth and food security. Many studies indicate that rhizospheric microorganism play an important role in regulating crop development and stress resistance. In this study, the variation in wheat root-associated microbial communities under copper pollution was studied using high-throughput sequencing. The microbial community structure and diversity among different wheat rhizocompartments were compared after sequencing of microbial communities in the bulk soil, rhizosphere, and endosphere of wheat under copper pollution in combination with pot-based experiments. The results showed that the microbial diversity of the endosphere was significantly lower than in the rhizosphere and bulk soil(P<0.001), indicating that root surfaces serve as a gateway for microorganisms to enter into the interior root environment, and play a role in filtering root colonization. Copper pollution significantly reduced the microbial diversity of the rhizosphere (P<0.05). In the bulk soil and endosphere environments, although copper pollution reduced microbial diversity in the corresponding rhizocompartment, the difference was not significant (P>0.05). Proteobacteria and Actinobacteria were the dominant bacteria groups in the rhizosphere and the bulk soil under copper pollution. In addition, microbes such as Bacillus, Pseudoxanthomonas, and Sphingomonas show strong stress resistance and can provide nutrients for plants.
Keywords:copper pollution  wheat  root-associated microbial community  microbial diversity  high-throughput sequencing
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