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The effect of forest degradation intensity on soil function indicators in northern Iran

机译:森林退化强度对伊朗北部土壤功能指标的影响

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摘要

The degradation of forest ecosystems has an important role in global warming through the carbon (C) and nitrogen (N) cycles. The response of soil organic matter fractions and microbial activities to forest degradation has been poorly studied. The purpose of the current research was to evaluate the effect of different intensities (i.e. low, moderate, and high) of forest degradation in northern Iran on the fractions of particulate and dissolved organic matter, microbial and enzyme activities as indicators of soil function. In this research, a total of 15 soil samples (30 x 30 x 10 cm) from each studied forest sites were transferred to the laboratory. Fifty-two soil characteristics of those forest ecosystems were studied by principal component analysis (PCA), with an explanation of more than 55% of the variance by axes 1 and 2. The fractions of soil organic matter (particulate and dissolved organic matter), fertility, microbial activities (microbial respiration and microbial biomass of carbon, nitrogen, and phosphorous), enzyme indices (urease, acid phosphatase, arylsulfatase, invertase, geometric mean of enzyme activities, and Shannon's diversity index), and stoichiometry of enzyme activity/organic C were enhanced at sites with low degradation intensity. Instead, all studied soil characteristics were suppressed at sites showing high forest degradation. The stoichiometry of enzyme activity/microbial biomass of C were not significantly different among the studied stands. It was concluded that the degradation intensity of natural forests can play a very important role in the soil function of temperate ecosystems.
机译:森林生态系统的降解在全球升温通过碳(C)和氮气(N)循环中具有重要作用。研究土壤有机质分数和微生物活性对森林降解的响应已经很差。目前研究的目的是评估伊朗北部北部森林降解的不同强度(即低,中等和高)对颗粒状和溶解的有机物,微生物和酶活性的影响,作为土壤功能指标。在这项研究中,将每种研究的森林部位的总共15种土壤样品(30×30×10cm)转移到实验室。通过主成分分析(PCA)研究了52个森林生态系统的土壤特征,解释了轴1和2.土壤有机物质(颗粒状和溶解有机物质)的55%以上的55%以上的差异,生育能力,微生物活性(微生物呼吸和碳,氮和磷),酶指标(脲酶,酸性磷酸酶,芳基硫酸酶,转化酶,几何平均值和Shannon的多样性指数),以及酶活性的化学计量/有机的化学计量C在具有低降解强度的部位增强。相反,在显示出高森林降解的地方,所有研究的土壤特征都被抑制。酶活性/微生物生物量的化学计量在研究的展台中没有显着差异。结论是,天然林的降解强度可以在温带生态系统的土壤功能中发挥非常重要的作用。

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