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灌丛侵入导致草原土壤中 C、N 和 P 的积累,并改变了 C:N:P 化学计量比:一项荟萃分析。

Shrub encroachment leads to accumulation of C, N, and P in grassland soils and alters C:N:P stoichiometry: A meta-analysis.

机构信息

School of Geographical Sciences, China West Normal University, 1 Shida Street, Shunqing District, Nanchong 637009, China.

School of Geographical Sciences, China West Normal University, 1 Shida Street, Shunqing District, Nanchong 637009, China.

出版信息

Sci Total Environ. 2024 Nov 15;951:175534. doi: 10.1016/j.scitotenv.2024.175534. Epub 2024 Aug 15.

Abstract

Soil stoichiometry of carbon (C), nitrogen (N), and phosphorus (P) are indicators for nutrient balance. Shrub encroachment into grasslands could change nutrient concentrations and stoichiometry in soils, but the general patterns remain unclear. With a meta-analysis of a global dataset covering 344 observations from 68 studies, we examined the responses of grassland soil C:N:P stoichiometry to shrub encroachment under various environmental conditions. Our results show that: 1) Shrub encroachment significantly increased the concentrations of soil C (+29 %), N (+25 %), P (+20 %), C:N (+5 %), C:P (+12 %), and N:P (+6 %). The magnitude of such effects varied with climate, soil texture, and soil layer. 2) Increases in SOC and TN concentrations mainly occurred in Mediterranean and very humid climate zones. Soil C:P and N:P decreased in semi-humid climate zone after shrub encroachment. 3) The increases in SOC and TN concentrations and in the C:N, C:P, and N:P ratios after shrub encroachment were greater in the topsoil than in deeper soil layers. 4) Both finest-textured soil (clay) and coarsest-textured soil (sand) are beneficial for increase of soil nutrient concentrations following shrub encroachment. 5) The magnitude of the change in soil C:N was negatively correlated with the duration of shrub encroachment, due to greater increases in soil TN than in SOC concentrations with longer durations of encroachment. Our results indicate that soil stoichiometric shifts in shrub-encroached grasslands are relatively sensitive to environmental factors, including soil texture, soil pH, and climate. These findings help us to better understand the effects of shrub encroachment on biogeochemical cycling, functioning, and services in grasslands across a broad range of spatio-temporal scales.

摘要

土壤碳(C)、氮(N)和磷(P)的化学计量是养分平衡的指标。灌木侵入草原会改变土壤中的养分浓度和化学计量,但总体模式仍不清楚。通过对涵盖 68 项研究的 344 个观测值的全球数据集进行荟萃分析,我们研究了在各种环境条件下,草原土壤 C:N:P 化学计量对灌木入侵的响应。我们的结果表明:1)灌木侵入显著增加了土壤 C(+29%)、N(+25%)、P(+20%)、C:N(+5%)、C:P(+12%)和 N:P(+6%)的浓度。这些效应的幅度随气候、土壤质地和土壤层而变化。2)在地中海和非常湿润的气候带,SOC 和 TN 浓度的增加更为显著。在半湿润气候带,灌木侵入后土壤 C:P 和 N:P 减少。3)灌木侵入后,SOC 和 TN 浓度以及 C:N、C:P 和 N:P 比值的增加在上层土壤中比在更深的土壤层中更为显著。4)细质地土壤(粘土)和最粗质地土壤(沙子)都有利于灌木侵入后土壤养分浓度的增加。5)土壤 C:N 变化幅度与灌木侵入的持续时间呈负相关,因为随着侵入时间的延长,土壤 TN 浓度的增加大于 SOC 浓度的增加。我们的结果表明,灌木侵入草原引起的土壤化学计量变化对环境因素(包括土壤质地、土壤 pH 值和气候)相对敏感。这些发现有助于我们更好地理解灌木侵入对草原生物地球化学循环、功能和服务的影响。

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