首页> 外文期刊>Pedobiologia >Tree species effects on soil enzyme activities through effects on soil physicochemical and microbial properties in a tropical montane forest on Mt. Kinabalu, Borneo
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Tree species effects on soil enzyme activities through effects on soil physicochemical and microbial properties in a tropical montane forest on Mt. Kinabalu, Borneo

机译:树种通过影响山上热带山地森林的土壤理化和微生物特性,对土壤酶活性产生影响。婆罗洲京那巴鲁

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摘要

Tree species influence on the soil mineralization process can regulate overall nutrient cycling in a forest ecosystem, which may occur through their effects on substrate quality, soil physicochemical properties and soil microbial community. We investigated tree species effects on soil enzyme activities in a tropical montane forest on Mt. Kinabalu, Borneo. Specifically, we analyzed C- and P-degrading enzyme activities, as well as the relationships among the enzyme activities, soil physicochemical properties, substrate quality (C, N, and P concentrations), and microbial composition in the top 5 cm soils beneath conifers (Dacrycarpus imbricatus and Dacrydium gracilis) and broadleaves (Lithocarpus clementianus, Palaquium rioence, and Tristaniopsis clementis). Activities of acid phosphatase and β-d-glucosidase were significantly different among the tree species. Soil moisture, total C and N content and microbial lipid abundance (a proxy for microbial composition) could influence the enzyme activities although the relative contributions of microbial composition to the enzyme activities might be smaller. A higher acid phosphatase activity beneath Dacrydium than those beneath the other tree species can compensate for a lower concentration of P in available fractions beneath Dacrydium. This localized mineralization activity could subsequently influence soil nutrient availability in this forest.
机译:树种对土壤矿化过程的影响可以调节森林生态系统中的总体养分循环,这可能是由于它们对基质质量,土壤理化特性和土壤微生物群落的影响而发生的。我们调查了山上热带山地森林中树木物种对土壤酶活性的影响。婆罗洲京那巴鲁。具体来说,我们分析了C和P降解酶的活性,以及​​酶活性,土壤理化性质,底物质量(C,N和P浓度)以及针叶树下前5 cm土壤中微生物组成之间的关系。 (Dacrycarpus imbricatus和Dacrydium gracilis)和阔叶(Lithocarpus clementianus,Palaquium rioence和Tristaniopsis clementis)。树木之间的酸性磷酸酶和β-d-葡萄糖苷酶活性明显不同。尽管微生物组成对酶活性的相对贡献可能较小,但土壤水分,总的C和N含量以及微生物脂质的丰度(代表微生物组成)可能会影响酶的活性。芽孢杆菌下的酸性磷酸酶活性高于其他树种之下的酸性磷酸酶活性,可以补偿芽孢杆菌下的可用组分中较低的磷浓度。这种局部的矿化活动可能随后影响该森林中土壤养分的利用率。

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