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Changes of Bacterial Community Structure in Copper Mine Tailings After Colonization of Reed (Phragmites communis)
作者姓名:CHEN Yu-Qing,  REN Guan-Ju,  AN Shu-Qing,  SUN Qing-Ye,  LIU Chang-Hong,  SHUANG Jing-Lei
作者单位:[1]College of Life Science, Nanjing Normal University, Nanjing 210046 (China) [2]The State Key Laboratory of Pollution Control and Resource Reuses, School of Life Science, Nanjing University, Nanjing 210093 (China) [3]School of Life Science, Anhui University, Hefei 230039 (China)
基金项目:Project supported by the National Natural Science Foundation of China (Nos. 39830310 and 30070134) and the National Key Basic Research Support Foundation (NKBRSF) of China (No. 2002CB111504). ACKNOWLEDGMENTS Great thanks to Drs. Li Yuan and Fan Ning-Jiang in the Nanjing University, China for their assistance in the field work; and to Dr. Q. X. Lin in the Louisiana State University, USA and Dr. W. X. Cheng in the University of California at Santa Cruz, USA for their English editing.
摘    要:Soil samples were collected from both bare and vegetated mine railings to study the changes in bacterial communities and soil chemical properties of copper mine tailings due to reed (Phragmites communis) colonization. The structures of bacterial communities were investigated using culture-independent 16S rRNA gene sequencing method. The bacterial diversity in the bare mine tailing was lower than that of the vegetated mine tailing. The former was dominated by sulfur metabolizing bacteria, whereas the latter was by nitrogen fixing bacteria. The bare mine tailing was acidic (pH = 3.78), whereas the vegetated mine tailing was near neutral (pH : 7.28). The contents of organic matter, total nitrogen, and ammonium acetate-extractable potassium in vegetated mine tailings were significantly higher than those in the bare mine railings (P 〈 0.01), whereas available phosphorus and electrical conductivity were significantly lower than those in the bare mine tailings (P 〈 0.01). The results demonstrated that 16S rRNA gene sequencing could be successfully used to study the bacterial diversity in mine tailings. The colonization of the mine tailings by reed significantly changed the bacterial community and the chemical properties of tailings. The complex interactions between bacteria and plants deserve further investigation.

关 键 词:细菌多样性  细菌群落  尾矿  开采技术
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