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Neutral effect of nitrogen addition and negative effect of phosphorus addition on topsoil extracellular enzymatic activities in an alpine grassland ecosystem

机译:高寒草地生态系统中氮素添加的中性效应和磷素添加的负性对表土细胞外酶活性的影响

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摘要

Soil nitrogen (N) and phosphorus (P) are common limiting nutrients affecting plant primary productivity in alpine ecosystems due to the low decomposition rate, though anthropogenic activities have greatly increased their inputs into ecosystems. Little is known regarding the effects of increasing N and P availabilities on the functioning of belowground microbial communities. To determine how soil microorganisms respond to N and P addition, we measured plant primary productivity, soil microbial biomass, soil mineral N availability, soil respiration, and the activities of soil extracellular enzymes after two years of N- and P-addition in an alpine grassland ecosystem on the Tibetan Plateau. We observed no significant effect of N addition on plant biomass, soil microbial biomass, soil respiration, or the activities of soil extracellular enzymes. In contrast, P addition increased plant biomass but suppressed the activities of most labile-C-cycling enzymes at 0-10 cm of soil depth, although the effects on soil microbial biomass and soil respiration were minor. Moreover, there was no interaction between N and P addition on these variables. Overall, N addition does not appear to exert a significant effect on plant primary productivity and microbial activity, whereas P addition increases plant primary productivity and tends to suppress topsoil microbial activity after two years of nutrient application. (C) 2016 Elsevier B.V. All rights reserved.
机译:尽管人为活动大大增加了其对生态系统的投入,但由于低分解速率,土壤氮(P)和氮(P)是影响高山生态系统植物初级生产力的常见限制性养分。关于氮和磷利用率增加对地下微生物群落功能的影响知之甚少。为了确定土壤微生物如何响应氮和磷的添加,我们测量了高山中氮和磷添加两年后植物的初级生产力,土壤微生物生物量,土壤矿质氮的有效性,土壤呼吸以及土壤细胞外酶的活性。青藏高原的草原生态系统。我们观察到氮的添加对植物生物量,土壤微生物量,土壤呼吸或土壤细胞外酶的活性均无显着影响。相反,磷的添加增加了植物的生物量,但在土壤深度为0-10 cm时抑制了大多数不稳定的C循环酶的活性,尽管对土壤微生物量和土壤呼吸的影响很小。而且,在这些变量上,氮和磷的添加之间没有相互作用。总体而言,氮的添加似乎对植物的初级生产力和微生物活性没有显着影响,而磷的添加增加了植物的初级生产力,并在施用了两年的养分后倾向于抑制表土微生物的活性。 (C)2016 Elsevier B.V.保留所有权利。

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