青藏高原植被生长的干旱响应因干旱时间而异

IF 3.7 3区 环境科学与生态学 Q2 ENVIRONMENTAL SCIENCES
Zekai Meng, Xiuchen Wu, Yang Li, Xiaona Wang
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引用次数: 0

摘要

青藏高原拥有巨大的水热梯度和多样的生态系统,易受气候变化的影响。极端干旱会破坏植物生态水文过程,从而对陆地生态系统的碳封存产生不利影响。据推测,这种影响因植被类型、环境因素和干旱特性而异。在区域和地点尺度的干旱研究中,干旱时间被广泛强调。然而,关于干旱发生时间对青藏高原生态系统功能影响的系统认识仍不清楚。在本研究中,我们研究了植被绿度对气象干旱的响应,并将其归因于干旱特性、气候和土壤因子。我们发现,干旱发生的时间在调节青藏高原植被干旱响应中起着主导作用。值得注意的是,我们观察到生长季后期干旱和非生长季后期干旱对植被反应的显著差异。除干旱时间外,土壤水分和长期水热条件也发挥了重要作用。此外,我们的研究还发现,与木本植物相比,高山草地对干旱时间、土壤水分和含沙量更为敏感。我们发现,最热季度降雨量与干旱时间之间存在明显的相互作用,随着最热季度降雨量的增加,干旱时间的作用逐渐减弱。这些发现强调了干旱发生时间在影响生态系统功能以应对青藏高原不断变化的气候系统中的关键作用,并为改进地表模型提供了重要启示。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Drought Timing Differentiates the Drought Responses of Vegetation Growth on the Tibetan Plateau

The Tibetan Plateau, with its great hydrothermal gradients and diverse ecosystems, is considered vulnerable to climate change. Extreme drought can have detrimental effects on carbon sequestration in terrestrial ecosystems by disrupting plant eco-hydrological processes. Such effects are presumed to vary and depend on the vegetation types, environmental factors and drought properties. The drought timing has been widely highlighted in drought studies at both regional and site scales. However, the systematic insight into the impact of drought timing on the ecosystem functioning over the Tibetan Plateau remains unclear. In this study, we investigated the responses of vegetation greenness to meteorological drought and attributed them to the drought properties, climatic and edaphic factors. We found that the timing of drought plays a predominant role in regulating vegetation drought responses on the Tibetan Plateau. Notably, we observed significant differences in vegetation responses between late growing season drought and non-late growing season drought. In addition to drought timing, soil moisture and long-term hydrothermal conditions also played a significant role. Furthermore, our study revealed that alpine grassland was more sensitive to the drought timing, soil moisture and sand content than woody plants. We discovered a significant interplay between rainfall at hottest quarter and drought timing, with the role of drought timing weakening as the rainfall at hottest quarter increases. These findings underscore the crucial role of drought timing in shaping ecosystem functioning in response to the changing climate regime over the Tibetan Plateau and provide crucial insights into the improvement of land surface models.

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来源期刊
Journal of Geophysical Research: Biogeosciences
Journal of Geophysical Research: Biogeosciences Earth and Planetary Sciences-Paleontology
CiteScore
6.60
自引率
5.40%
发文量
242
期刊介绍: JGR-Biogeosciences focuses on biogeosciences of the Earth system in the past, present, and future and the extension of this research to planetary studies. The emerging field of biogeosciences spans the intellectual interface between biology and the geosciences and attempts to understand the functions of the Earth system across multiple spatial and temporal scales. Studies in biogeosciences may use multiple lines of evidence drawn from diverse fields to gain a holistic understanding of terrestrial, freshwater, and marine ecosystems and extreme environments. Specific topics within the scope of the section include process-based theoretical, experimental, and field studies of biogeochemistry, biogeophysics, atmosphere-, land-, and ocean-ecosystem interactions, biomineralization, life in extreme environments, astrobiology, microbial processes, geomicrobiology, and evolutionary geobiology
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