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Mycorrhizal effects on nutrient cycling, nutrient leaching and N2O production in experimental grassland

机译:菌根对实验草地养分循环,养分淋失和N2O产生的影响

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摘要

Arbuscular mycorrhizal fungi (AMF) can enhance plant nutrition and growth. However, their contribution to nutrient cycling in ecosystems is still poorly understood. Using experimental grassland microcosms filled with two different soil types (pasture and heath soil) and fertilized with different N forms (NO3- or NH4+) we tested the AMF contribution to N and P cycling including measurements of organic and inorganic leaching losses and N2O fluxes. We hypothesized that AMF enhance the sustainability of plant-soil systems by reducing nutrient losses and enhancing plant nutrient uptake. AMF reduced reactive and unreactive P leaching by 31%, enhanced plant P contents by 15% and increased P mobilization from soil by 18%. AMF reduced N2O fluxes and NH4+ leaching in both soils. Leaching of dissolved organic N was reduced by 24% in the heath soil only. Plant N contents were increased by 13% in the pasture soil but not affected in the heath soil. The microbial biomass N content was higher with AMF. This is the first comprehensive assessment of the influence of AMF on N and P cycling, including effects on inorganic and organic nutrient leaching losses and N2O emissions in a single study. We conclude that AMF can promote sustainable nutrient cycling but the effects on N cycling are context dependent. (C) 2014 Elsevier Ltd. All rights reserved.
机译:丛枝菌根真菌(AMF)可以增强植物营养和生长。然而,它们对生态系统中养分循环的贡献仍然知之甚少。使用充满两种不同土壤类型(草场和荒地土壤)并施以不同N形态(NO3-或NH4 +)施肥的实验性草地缩微,我们测试了AMF对N和P循环的贡献,包括测量有机和无机淋失量和N2O通量。我们假设AMF通过减少养分流失和增加植物养分吸收来增强植物-土壤系统的可持续性。 AMF减少了31%的反应性和非反应性P淋溶,将植物P含量提高了15%,并将土壤中的P迁移量提高了18%。 AMF减少了两种土壤中的N2O通量和NH4 +浸出。仅在健康土壤中,溶解性有机氮的浸出减少了24%。牧草土壤中的植物氮含量增加了13%,但在荒地中并未受到影响。使用AMF,微生物生物量氮含量较高。这是一项针对AMF对N和P循环影响的首次综合评估,包括在一项研究中对无机和有机养分淋失和N2O排放的影响。我们得出结论,AMF可以促进可持续的养分循环,但对N循环的影响取决于环境。 (C)2014 Elsevier Ltd.保留所有权利。

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