首页> 外文期刊>Scientific reports. >Phosphorus addition changes belowground biomass and C:N:P stoichiometry of two desert steppe plants under simulated N deposition
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Phosphorus addition changes belowground biomass and C:N:P stoichiometry of two desert steppe plants under simulated N deposition

机译:磷添加变化地下生物量和C:n:N次沙漠草原植物的P:P沉积下的两种水平测定法

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Many studies have reported that increasing atmospheric nitrogen (N) deposition broadens N:phosphorus (P) in both soils and plant leaves and potentially intensifies P limitation for plants. However, few studies have tested whether P addition alleviates N-induced P limitation for plant belowground growth. It is also less known how changed N:P in soils and leaves affect plant belowground stoichiometry, which is significant for maintaining key belowground ecological processes. We conducted a multi-level N:P supply experiment (varied P levels combined with constant N amount) for Glycyrrhiza uralensis (a N fixing species) and Pennisetum centrasiaticum (a grass) from a desert steppe in Northwest China during 2011–2013. Results showed that increasing P addition increased the belowground biomass and P concentrations of both species, resulting in the decreases in belowground carbon (C):P and N:P. These results indicate that P inputs alleviated N-induced P limitation and hence stimulated belowground growth. Belowground C:N:P stoichiometry of both species, especially P. centrasiaticum, tightly linked to soil and green leaf C:N:P stoichiometry. Thus, the decoupling of C:N:P ratios in both soils and leaves under a changing climate could directly alter plant belowground stoichiometry, which will in turn have important feedbacks to primary productivity and C sequestration.
机译:许多研究报道说,在土壤和植物叶片中增加大气氮(n)沉积拓宽N:磷(p),并可能加剧P植物的P限制。然而,很少有研究已经测试了P增加是否缓解了N诱导的P诱导的植物低于地下增长。它也少于众所周知的N:P:土壤和叶片如何影响地下化学计量的植物,这对于维持下面的地下生态过程具有重要意义。我们在2011 - 2013年,我们进行了多级N:P供应实验(多级P级别)用于甘草属植物(A N固定物种)和来自沙漠草原的荒漠草原(A型固定物种)和PenniseTum Centrasiaticum(草地)。结果表明,增加P添加增加了两种物种的下游生物质和P浓度,导致地下碳(C):P和N:P的降低。这些结果表明,P输入缓解了N诱导的P限制,因此刺激了地下的生长。地下C:n:尤其是P. Centrasiaticum的P. Centrasiaticum,与土壤和绿叶紧密相连的C:N:P化学计量。因此,在变化气候下的土壤和叶片中的C:N:P比的去耦可直接改变地下化学计量的植物,这反过来又具有初级生产率和C封存的重要反馈。

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