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Frontiers of Agriculture in China | 2007

Response of microbial communities to phytoremediation of nickel contaminated soils

Cai Xinde; Qiu Rongliang; Zeng Xiaowen; Chen Gui-zhu; Fang Xiaohang

Through pot experiment, effects of phytoremediation on microbial communities in soils at different nickel treatment levels were studied. Two Ni hyperaccumulating and one Ni tolerant species were planted in paddy soils different in Ni concentration, ranging from 100 to 1 600 mg/kg. After 110 days of incubation, soil microbial activities were analyzed. Results showed that populations of bacteria, fungus, and actinomycetes and biomass of the microorganisms were stimulated when nickel was added at a rate of 100 mg/kg in non-rhizospheric soil. When the rate was over 100 mg/kg in the soil, adverse effects on the soil microbial communities were observed. The plantation of Ni hyperaccumulating species could increase both the population and biomass of soil microorganisms, because, by absorbing nickel from the soil and excreting root exudates, the plants reduced nickel toxicity and improved the living environment of the microbes. However, different plant species had different effects on microorganisms in soil.Randomly Amplified Polymorphic DNA (RAPD) with five primers was used in this study in 25 soil samples of four types of soils. A total of 947 amplified bands were obtained, including 888 polymorphic bands and 59 non-polymorphic bands. The results indicated that the composition of microbial DNA sequences had changed because of the addition of nickel to the treated soils. Shannon-Weaver index of soil microbial DNA sequences reduced in the nickel contaminated soils with increasing nickel concentration. The changes in Shannon-Weaver index in the four types of soils ranged from 1.65 to 2.32 for Alyssum corsicum, 1.37 to 2.27 for Alyssum murale, 1.37 to 1.96 for Brassica juncea, and 1.19 to 1.85 for nonrhizospheric soil. With the same amount of nickel added to soils, the Shannon-Weaver index in rhizospheric soil with plants was higher than that in non-rhizospheric soil.


Archive | 2005

Method for treating soil and aquatic lead, zinc, cadmium pollution by cone south mustard

Qiu Rongliang; Tang Yetao; Zeng Xiaowen


Archive | 2005

Method for treating soil and aquatic lead, zinc, cadmium pollution by long pubescence potentilla chinensis

Qiu Rongliang; Fang Xiaohang; Tang Yetao


Archive | 2015

Rapid environment-friendly heavy soil metal pollution treatment and purification system

Qiu Rongliang; Ruan Jujun; Zhang Weihua; Liu Wenshen; Huang Xiongfei; Wei Xing; Shi Sheng En; Zheng Jie; Chen Zhe


Archive | 2014

Method for ionic rare earth mine tailing land improvement and vegetation reclamation

Tang Yetao; Liu Wenshen; Qiu Rongliang; Liu Chang; Wang Zhiwei; Teng Wenkai; Wang Shizhong


Journal of Agro-Environment Science | 2012

Cadmium Physiological Tolerance and Accumulation Characteristics of Jatropha curcas L.

Qiu Rongliang


Journal of Agro-Environment Science | 2006

Physiological Characteristic and Uptake of Cd, Nutritious Elements in Cabbage Grown on Cd-contaminated Soils

Qiu Rongliang


Soil and Environmental Sciences | 2002

Behavior of pesticide in soil environment

Qiu Rongliang


Archive | 2017

Electron wastes material breaker of controllable temperature

Ruan Jujun; Huang Zhe; Dong Lipeng; Zheng Jie; Huang Jiaxin; Qiu Rongliang; Du Changming; Du Daohong; Xiong Jian


Archive | 2016

Technical method for high-added-value resource utilization of waste circuit board electronic components

Ruan Jujun; Zheng Jie; Dong Lipeng; Qiu Rongliang

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Tang Yetao

Sun Yat-sen University

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Cai Xinde

Scottish Environment Protection Agency

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Cao Jian

Harbin Institute of Technology

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Yang Wenjun

Sun Yat-sen University

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