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加热世界屋脊:追踪变暖对青藏高原高寒草原碳循环的影响

Heating up the roof of the world: tracing the impacts of warming on carbon cycle in alpine grasslands on the Tibetan Plateau.

作者信息

Bai Yuxuan, Peng Yunfeng, Zhang Dianye, Yang Guibiao, Chen Leiyi, Kang Luyao, Zhou Wei, Wei Bin, Xie Yuhong, Yang Yuanhe

机构信息

State Key Laboratory of Vegetation and Environmental Change, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, China.

China National Botanical Garden, Beijing 100093, China.

出版信息

Natl Sci Rev. 2024 Nov 26;12(2):nwae371. doi: 10.1093/nsr/nwae371. eCollection 2025 Feb.

Abstract

Climate warming may induce substantial changes in the ecosystem carbon cycle, particularly for those climate-sensitive regions, such as alpine grasslands on the Tibetan Plateau. By synthesizing findings from warming experiments, this review elucidates the mechanisms underlying the impacts of experimental warming on carbon cycle dynamics within these ecosystems. Generally, alterations in vegetation structure and prolonged growing season favor strategies for enhanced ecosystem carbon sequestration under warming conditions. Whilst warming modifies soil microbial communities and their carbon-related functions, its effects on soil carbon release fall behind the increased vegetation carbon uptake. Despite the fact that no significant accumulation of soil carbon stock has been detected upon warming, notable changes in its fractions indicate potential shifts in carbon stability. Future studies should prioritize deep soil carbon dynamics, the interactions of carbon, nitrogen, and phosphorus cycles under warming scenarios, and the underlying biological mechanisms behind these responses. Furthermore, the integration of long-term warming experiments with Earth system models is essential for reducing the uncertainties of model predictions regarding future carbon-climate feedback in these climate-sensitive ecosystems.

摘要

气候变暖可能会引起生态系统碳循环的显著变化,特别是对于那些对气候敏感的地区,如青藏高原的高寒草原。通过综合变暖实验的研究结果,本综述阐明了实验性变暖对这些生态系统内碳循环动态影响的潜在机制。一般来说,植被结构的改变和生长季节的延长有利于在变暖条件下增强生态系统碳固存的策略。虽然变暖会改变土壤微生物群落及其与碳相关的功能,但其对土壤碳释放的影响落后于植被碳吸收的增加。尽管在变暖后未检测到土壤碳储量有显著积累,但其组分的显著变化表明碳稳定性可能发生了转变。未来的研究应优先关注深层土壤碳动态、变暖情景下碳、氮和磷循环的相互作用以及这些响应背后的潜在生物学机制。此外,将长期变暖实验与地球系统模型相结合对于减少这些对气候敏感的生态系统中未来碳-气候反馈模型预测的不确定性至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6ff/11771398/5dc769f4df70/nwae371fig1.jpg

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