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Soil enzymatic activities and microbial community structure with di erent application rates of Cd and Pb
Authors:KHAN Sardar  CAO Qing  HESHAM Abd El-Latif  XIA Yue and HE Ji-zheng
Institution:1. Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China;Department of Environmental Sciences, University of Peshawar, 25120 Peshawar, Pakistan
2. Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China
Abstract:This study focused on the changes of soil microbial diversity and potential inhibitory effects of heavy metals on soil enzymatic activities at different application rates of Cd and Pb. The soil used for experiments was collected from Beijing and classified as endoaquepts. Pots containing 500 g of the soil with different Cd or/and Pb application rates were incubated for a period of 0, 2, 9, 12 weeks in a glasshouse and the soil samples were analyzed for individual enzymes, including catalase, alkaline phosphatase and dehydrogenase, and the changes of microbial community structure. Results showed that heavy metals slightly inhibited the enzymatic activities in all the samples spiked with heavy metals. The extent of inhibition increased significantly with increasing level of heavy metals, and varied with the incubation periods. The soil bacterial community structure, as determined by polymerase chain reaction-denaturing gradient gel electrophoresis techniques, was different in the contaminated samples as compared to the control. The highest community change was observed in the samples amended with high level of Cd. Positive correlations were observed among the three enzymatic activities, but negative correlations were found between the amounts of the heavy metals and the enzymatic activities.
Keywords:soil contamination  heavy metals  application rate  enzymatic activity  microbial community  rates  application  different  microbial community structure  activities  enzymatic  negative  Positive  correlations  high  control  polymerase  chain  gradient  gel electrophoresis  techniques  bacterial  incubation  periods  extent
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