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首页> 外文期刊>International Journal of Ecology >The Effects of Plant-Soil-Enzyme Interactions on Plant Composition, Biomass and Diversity of Alpine Meadows in the Qinghai-Tibetan Plateau
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The Effects of Plant-Soil-Enzyme Interactions on Plant Composition, Biomass and Diversity of Alpine Meadows in the Qinghai-Tibetan Plateau

机译:青藏高原植物 - 土酶相互作用对植物组成,生物量和青春药高原高山草甸多样性的影响

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Four different alpine meadow communities were studied to examine the effects of plant-soil-enzyme interactions on plant composition and diversity. Enzyme activities differed by meadow type, and in general were higher in the upper soil layers (0–10 and 10–20?cm) than in the 20–40?cm layer. Community differences in plant composition or functional group composition were reflected in plant biomass distribution. The identity of a species (or a functional group) was a greater determinant of ecosystem function than the number of plant species. A significant correlation was found between the coverage per functional group and the aboveground biomass of functional groups in four alpine meadows. Soil microbial biomass carbon ( ) and enzyme activity were each affected by both functional group biomass and CAB in the different meadow types. The negative correlation between diversity and CAB in the KTS may be influenced by a high soil nutrients input as a result of a higher litter input because of high aboveground biomass. Soil enzyme activities have been related to soil physio-chemical characters and plant primary production to change in vegetation. The original soil conditions, plant community composition, and community productivity are very important in regulating plant community productivity and microbial biomass and activity.
机译:四个不同的高寒草甸群落进行了研究,研究植物 - 土壤酶的相互作用对植物组成和多样性的影响。酶活性通过草甸类型不同,并且通常在上部土层比在20-40?厘米层(0-10和10-20?厘米)较高。在植物组合物或官能团的组合物群落的差异反映在植物生物质的分布。一个物种的身份(或官能团)比植物物种的数量生态系统功能的更大的决定因素。甲显著相关性每官能团的覆盖和官能团的四个高山草甸地上生物量之间发现。微生物生物量的碳()和酶的活性分别受两个官能团的生物量和CAB在不同类型的草地。在KTS多样性和CAB之间的负相关可以通过高土壤养分输入作为由于高地上生物量更高的垃圾输入的结果的影响。土壤酶活性已涉及到土壤的理化特征和植物初级生产植被变化。原来的土壤条件,植物群落组成和群落生产力是调节植物群落生产力和微生物学非常重要。

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