增温和氮添加对中国山地土壤磷生物有效性的影响:研究进展与展望
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1.中国科学院、水利部成都山地灾害与环境研究所;2.武汉理工大学关键非金属矿产资源绿色利用教育部重点实验室

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基金项目:

中国科学院、水利部成都山地灾害与环境研究所科研项目(IMHE-ZDRW-06,IMHE-ZYTS-07)和四川省中央引导地方科技发展专项项目(2024ZYD0038)资助


Effects of Warming and Nitrogen Addition on Soil Phosphorus Bioavailability in China’s Mountains: Research Progress and Prospects
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Affiliation:

1.Institute of Mountain Hazards and Environment, Chinese Academy of Sciences;2.Key Laboratory of Green Utilization of Critical Non‐metallic Mineral Resources, Ministry of Education, Wuhan University of Technology

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Supported by the Science and Technology Research Program of Institute of Mountain Hazards and Environment, Chinese Academy of Sciences (Nos. IMHE-ZDRW-06 and IMHE-ZYTS-07) and the Central Government Guided Local Science and Technology Development Projects of Sichuan Province, China (No. 2024ZYD0038)

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    摘要:

    磷是陆地生态系统关键的限制性养分元素,土壤磷的生物有效性制约了初级生产力和生态系统碳汇能力。山地生态系统对气候变化具有高度敏感性,山地土壤磷生物有效性对气候变暖和大气氮沉降增加的响应已成为当前生态环境领域的研究热点。基于国内野外原位增温和氮添加实验的研究结果,结合Meta分析方法,综述了中国山地土壤磷生物有效性对增温和氮添加及其交互作用的响应与机制。在此基础上提出了未来亟待深入研究的方向,包括加强长期、多海拔的原位模拟实验的观测研究;与室内控制实验相结合,从不同尺度(如景观尺度、生态系统尺度)上探究增温和氮添加对土壤磷形态转化的影响,并从分子水平上揭示土壤磷生物有效性对多种气候变化因子的响应机制;优化磷生物地球化学循环模型参数,预测未来气候变暖和大气氮沉降变化对山地土壤磷生物有效性的影响,以期深刻理解全球气候变化背景下山地磷生物地球化学循环的过程及机理,为山地生态系统的健康与稳定提供理论支撑。

    Abstract:

    Phosphorus (P) is a critical limiting nutrient in terrestrial ecosystems, and its bioavailability in soils is particularly important in influencing primary productivity and ecosystem carbon sequestration capacity. Mountain ecosystems are highly sensitive to climate changes and exhibit distinct responses to alterations in environmental conditions. The P bioavailability in mountain soils is thus a popular topic in ecological and environmental research, especially in the context of climate warming and increased atmospheric nitrogen (N) deposition. This review integrated a Meta-analysis method to synthesize findings of the response patterns and underlying mechanisms of soil P bioavailability to in situ simulated warming and N addition experiments in China’s mountain soils. This study found that single treatment of warming or nitrogen addition did not reduce the bioavailability of soil P, although there were still debates that were closely related to the initial environmental conditions of different ecosystems. Furthermore, the prospects of future research were provided, underscoring the necessity for long-term and multi-elevation in situ simulation experiments. These experiments are vital for understanding the variations in soil P bioavailability under the dual pressures of warming and N inputs. It is also essential to conduct controlled laboratory experiments to explore the effects of these factors on the transformation of soil P fractions across multiple spatial scales, such as landscape and ecosystem levels. Also, the molecular-level response mechanisms of soil P bioavailability to various climate change factors require further investigation. Additionally, there is a need to optimize the parameters in the P biogeochemical cycling models for predicting the effects of climate warming and varied atmospheric N deposition on soil P bioavailability in mountain ecosystems. These potential results will contribute to a far-reaching understanding of the processes and mechanisms of P biogeochemical cycling in mountains in the context of global climate change, which can become an important theoretical basis for the health and stability of mountain ecosystems.

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邴海健,吕静怡,吴艳宏,方临川.增温和氮添加对中国山地土壤磷生物有效性的影响:研究进展与展望[J].土壤学报,2026,63(1). DOI:10.11766/trxb202411200447 BING Haijian, LÜ Jingyi, WU Yanhong, FANG Linchuan. Effects of Warming and Nitrogen Addition on Soil Phosphorus Bioavailability in China’s Mountains: Research Progress and Prospects[J]. Acta Pedologica Sinica,2026,63(1).

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  • 收稿日期:2024-11-20
  • 最后修改日期:2025-04-28
  • 录用日期:2025-06-18
  • 在线发布日期: 2025-06-20
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