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不同类型调理剂对镉污染土壤修复效果和微生物群落的影响
引用本文:李奇,王艳红,李义纯,李林峰,唐明灯,艾绍英.不同类型调理剂对镉污染土壤修复效果和微生物群落的影响[J].南方农业学报,2022,53(7):1855-1866.
作者姓名:李奇  王艳红  李义纯  李林峰  唐明灯  艾绍英
作者单位:广东省农业科学院农业资源与环境研究所/农业农村部南方植物营养与肥料重点实验室/广东省养分资源循环利用与耕地保育重点实验室, 广东广州 510640
基金项目:国家自然科学基金项目(42107037);广州市基础与应用基础项目(202102020311);广东省农业科学院创新基金项目(212114);广东省农业科学院学科团队建设项目(202120TD)
摘    要:【目的】研究土壤调理剂对镉(Cd)污染农田修复效果和微生物群落组成的影响,为应用不同土壤活性组分调理剂原位修复和治理Cd污染农田土壤提供科学依据。【方法】在粤东Cd污染农田开展田间试验,设空白对照,研究不同土壤活性组分调理剂(矿物型、有机型和微生物型)对土壤基本理化性质、Cd有效性和微生物群落结构的影响。【结果】施用土...

关 键 词:镉污染  调理剂  农田修复  微生物群落
收稿时间:2022-01-12

Effects of the different types of conditioners on remediation and microbial community in Cd-contaminated soil
LI Qi,WANG Yan-hong,LI Yi-chun,LI Lin-feng,TANG Ming-deng,AI Shao-ying.Effects of the different types of conditioners on remediation and microbial community in Cd-contaminated soil[J].Journal of Southern Agriculture,2022,53(7):1855-1866.
Authors:LI Qi  WANG Yan-hong  LI Yi-chun  LI Lin-feng  TANG Ming-deng  AI Shao-ying
Institution:Institute of Agricultural Resources and Environment, Guangdong Academy of Agricultural Sciences/Key Laboratory of Plant Nutrition and Fertilizer in South Region, Ministry of Agriculture and Rural Affairs/Guangdong Key Laboratory of Nutrient Cycling and Farmland Conservation, Guangzhou, Guangdong 510640, China
Abstract:【Objective】To explore the effects of soil conditioner on the remediation and microbial community composition of cadmium(Cd) -contaminated soil, so as to provide a scientific basis for in-situ remediation and management of Cd-contaminated farmland soils using conditioners with different soil active components.【Method】Field experiments were carried out in Cd-polluted farmland in eastern Guangdong, and blank controls were set to study the effects of different soil active component modifiers(mineral type, organic type and microbial type) on soil basic physical and chemical properties, Cd availability and microbial community structure.【Result】The results showed that the application of soil conditioner significantly increased soil pH(0.11-0.24) (P<0.05, the same below), increased organic carbon content(21%-47%), decreased soil available Cd (13%-48%) and brown rice Cd content (26%-42%). Mineral and microbial conditioners led to the largest decrease of Cd content in brown rice. In general, the application of conditioner improved the soil micro domain environment. The results of high-throughput sequencing showed that adding conditioner could maintain the diversity and richness of normal microbial community in polluted soil and significantly change the composition and soil microbial community structure, in which the relative abundance of Desulfobacterota and Bacteroidota decreased. Mineral and organic conditioners increased the relative abundance of Actinobacteriota and Gemmatimonadota in soil, while microbial conditioners increased that of Acidobacteriota. Further, for fungal communities, mineral conditioner significantly increased the relative abundance of Basidiomycota and decreased that of Ascomycota. Organic conditioner significantly increased the relative abundance of Mortierellomycota and decreased that of Rozellomycota. Microbial conditioner significantly increased the relative abundance of Ascomycota and decreased that of Rozellomycota. Obviously, the microbial conditioner could significantly improve the level of dominant populations of bacteria and fungi. Correlation analysis showed that brown rice Cd content and microbial community were significantly positively correlated with Proteobacteria, Desulfobacterota and Bacteroidota. In addition, redundancy analysis and Monte Carlo test showed that the total phosphorus content in soil was an important environmental factor affecting the community structure of soil bacteria and fungi.【Conclusion】In terms of reducing the content of available Cd in soil and Cd in brown rice and its impact on soil microbial structure, microbial soil conditioner has the best remediation effect, which can reduce the Cd in brown rice and improve the structure of soil flora.
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