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Effects of Elevated CO2 on Soil Microbial Activity and Bacterial Diversity in Pinus koraiensis Seedlings Fields in Changbai Mountain

机译:二氧化碳升高对长白山松鼠韩时幼苗场土壤微生物活性及细菌多样性的影响

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This study focused on soil microbial activity and bacterial diversity exposed to long-term elevated CO2. Bacterial numbers, microbial biomass C, soil basal respiration, dehydrogenatase activity, and bacterial diversity were investigated in pinus koraiensis seedlings. The results indicated bacterial numbers decreased significantly (p ≤ 0.05) at elevated CO2 in July and August, but not of it in September. Microbial biomass C decreased significantly (p ≤ 0.001) at 700 μ mol/mol CO2 compared to screened ambient and ambient, but not of it under 500 μ mol/mol CO2. Soil basal respiration (p ≤ 0.05) and dehydrogenatase activity (p ≤ 0.001) increased significantly under elevated CO2 compared to ambient and screened ambient. Bacterial community structure changed evidently under elevated CO2 compared to ambient through DGGE (Denaturing Gradient Gel Electrophoresis) analysis of bacterial 16S rDNA gene fragments amplified by PCR from DNA extracted directly from soil. It was concluded that soil microbial activities and bacterial diversity were significantly influenced by elevated CO2 compared to ambient.
机译:本研究重点是土壤微生物活性和暴露于长期升高二氧化碳的细菌多样性。在松树韩国幼苗中研究了细菌数,微生物生物量C,土壤基础呼吸,脱氢酶活性和细菌多样性。结果表明细菌数在七月和八月的二氧化碳升高的二氧化碳(P≤0.05)下降,但在9月份并非如此。与筛选的环境和环境相比,微生物生物量C在700μmol/ mol CO 2下显着(p≤0.001),但不在500μmol/ mol CO 2下。与环境和筛选的环境相比,土壤基底呼吸(P≤0.05)和脱氢酶活性(P≤0.001)在升高的CO 2下显着增加。通过DGGE(变性梯度凝胶电泳)与通过PCR直接从土壤中提取的DNA扩增的细菌16S rdNA基因片段的DGGE(变性梯度凝胶电泳)分析,细菌群落结构在升高的CO2下变化。结论是,与环境相比,土壤微生物活性和细菌多样性显着影响升高的二氧化碳。

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