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首页> 外文期刊>Bulletin of Environmental Contamination and Toxicology >Effect of Soil Amendments on Microbial Resilience Capacity of Acid Soil Under Copper Stress
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Effect of Soil Amendments on Microbial Resilience Capacity of Acid Soil Under Copper Stress

机译:土壤修正对铜应力下酸性土壤微生物复垦能力的影响

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An incubation study was undertaken to study microbial resilience capacity of acid soil amended with farmyard manure (FYM), charcoal and lime under copper (Cu) perturbation. Copper stress significantly reduced enzymatic activities and microbial biomass carbon (MBC) in soil. Percent reduction in microbial activity of soil due to Cu stress was 74.7% in dehydrogenase activity, 59.9% in MBC, 48.2% in alkaline phosphatase activity and 15.1% in acid phosphatase activity. Soil treated with FYM + charcoal showed highest resistance index for enzymatic activities and MBC. Similarly, the highest resilience index for acid phosphatase activity was observed in soil amended with FYM (0.40), whereas FYM + charcoal-treated soil showed the highest resilience indices for alkaline, dehydrogenase activity and MBC: 0.50, 0.22 and 0.25, respectively. This investigation showed that FYM and charcoal application, either alone or in combination, proved to be better than lime with respect to microbial functional resistance and resilience of acid soil under Cu perturbation.
机译:孵化研究是为了研究铜(CU)扰动下用饲养粉质粪肥(FYM),木炭和石灰的酸性土壤的微生物复垦能力。铜应力显着降低了土壤中的酶活性和微生物生物质碳(MBC)。脱氢酶活性引起的土壤的微生物活性降低百分比为74.7%,MBC的59.9%,碱性磷酸酶活性的48.2%,酸性磷酸酶活性为15.1%。用FYM +木炭处理的土壤显示出酶活性和MBC的最高抗性指数。类似地,在用FYM(0.40)修正的土壤中观察到酸性磷酸酶活性的最高弹性指数,而FYM +木炭处理的土壤显示出碱性,脱氢酶活性和MBC:0.50,0.22和0.25的最高弹性指数。本研究表明,除了Cu扰动下,单独或组合的FYM和木炭应用均以单独的或组合而言。

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