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Effects of soil C:N:P stoichiometry on biomass allocation in the alpine and arid steppe systems

机译:土壤C:N:P化学计量对高寒干旱草原系统生物量分配的影响

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摘要

Soil nutrients strongly influence biomass allocation. However, few studies have examined patterns induced by soil C:N:P stoichiometry in alpine and arid ecosystems. Samples were collected from 44 sites with similar elevation along the 220‐km transect at spatial intervals of 5 km along the northern Tibetan Plateau. Aboveground biomass (AGB) levels were measured by cutting a sward in each plot. Belowground biomass (BGB) levels were collected from soil pits in a block of 1 m × 1 m in actual root depth. We observed significant decreases in AGB and BGB levels but increases in the BGB:AGB ratio with increases in latitude. Although soil is characterized by structural complexity and spatial heterogeneity, we observed remarkably consistent C:N:P ratios within the cryic aridisols. We observed significant nonlinear relationships between the soil N:P and BGB:AGB ratios. The critical N:P ratio in soils was measured at approximately 2.0, above which the probability of BGB:AGB response to nutrient availability is small. These findings serve as interesting contributions to the global data pool on arid plant stoichiometry, given the previously limited knowledge regarding high‐altitude regions.
机译:土壤养分强烈影响生物量的分配。但是,很少有研究检查在高山和干旱生态系统中土壤C:N:P化学计量的诱导模式。从青藏高原北部沿220 km断面以5 km的空间间隔从44个海拔相似的地点采集了样本。地上生物量(AGB)的水平是通过在每块土地上割草来测量的。在实际根深1 m×1 m的区域内从土壤坑中收集地下生物量(BGB)水平。我们发现,随着纬度的增加,AGB和BGB的水平显着下降,但BGB:AGB的比率却上升了。尽管土壤具有结构复杂性和空间异质性的特征,但我们观察到冰冻干旱地区的C:N:P比值非常一致。我们观察到土壤N:P和BGB:AGB比率之间存在显着的非线性关系。在土壤中测得的临界N:P比率约为2.0,高于该比率时,BGB:AGB对养分利用率的响应的可能性很小。鉴于先前有关高海拔地区的知识有限,这些发现为有关干旱植物化学计量的全球数据库提供了有趣的贡献。

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