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全球环境条件调节升温对植物凋落物分解的影响

Environmental Conditions Modulate Warming Effects on Plant Litter Decomposition Globally.

作者信息

Schwieger Sarah, Dorrepaal Ellen, Petit Bon Matteo, Vandvik Vigdis, le Roux Elizabeth, Strack Maria, Yang Yan, Venn Susanna, van den Hoogen Johan, Valiño Fernando, Thomas Haydn J D, Te Beest Mariska, Suzuki Satoshi, Petraglia Alessandro, Myers-Smith Isla H, Munir Tariq Muhammad, Michelsen Anders, Løkken Jørn Olav, Li Qi, Koike Takayoshi, Klanderud Kari, Karr Ellen Haakonsen, Jónsdóttir Ingibjörg Svala, Hollister Robert D, Hofgaard Annika, Hassan Ibrahim A, Genxu Wang, Filippova Nina, Crowther Thomas W, Clark Karin, Christiansen Casper T, Casanova-Katny Angelica, Carbognani Michele, Bokhorst Stef, Björnsdóttir Katrín, Asplund Johan, Althuizen Inge, Alonso Rocío, Alatalo Juha, Agathokleous Evgenios, Aerts Rien, Sarneel Judith M

机构信息

Climate Impacts Research Centre, Department of Ecology and Environmental Sciences, Umeå University, Umeå, Sweden.

Department of Ecology and Environmental Sciences, Umeå University, Umeå, Sweden.

出版信息

Ecol Lett. 2025 Jan;28(1):e70026. doi: 10.1111/ele.70026.

Abstract

Empirical studies worldwide show that warming has variable effects on plant litter decomposition, leaving the overall impact of climate change on decomposition uncertain. We conducted a meta-analysis of 109 experimental warming studies across seven continents, using natural and standardised plant material, to assess the overarching effect of warming on litter decomposition and identify potential moderating factors. We determined that at least 5.2° of warming is required for a significant increase in decomposition. Overall, warming did not have a significant effect on decomposition at a global scale. However, we found that warming reduced decomposition in warmer, low-moisture areas, while it slightly increased decomposition in colder regions, although this increase was not significant. This is particularly relevant given the past decade's global warming trend at higher latitudes where a large proportion of terrestrial carbon is stored. Future changes in vegetation towards plants with lower litter quality, which we show were likely to be more sensitive to warming, could increase carbon release and reduce the amount of organic matter building up in the soil. Our findings highlight how the interplay between warming, environmental conditions, and litter characteristics improves predictions of warming's impact on ecosystem processes, emphasising the importance of considering context-specific factors.

摘要

全球的实证研究表明,气候变暖对植物凋落物分解的影响具有多样性,这使得气候变化对分解作用的总体影响仍不明确。我们对七大洲的109项实验性气候变暖研究进行了荟萃分析,使用天然和标准化的植物材料,以评估气候变暖对凋落物分解的总体影响,并确定潜在的调节因素。我们确定,至少升温5.2°才会使分解作用显著增加。总体而言,在全球范围内,气候变暖对分解作用没有显著影响。然而,我们发现,气候变暖会降低温暖、低湿度地区的分解作用,而在寒冷地区则会使其略有增加,不过这种增加并不显著。鉴于过去十年高纬度地区的全球变暖趋势,而该地区储存了大量陆地碳,这一点尤为重要。我们发现,未来植被向凋落物质量较低的植物转变可能对气候变暖更为敏感,这可能会增加碳释放,并减少土壤中积累的有机物质数量。我们的研究结果凸显了气候变暖、环境条件和凋落物特征之间的相互作用如何改善对气候变暖对生态系统过程影响的预测,强调了考虑具体情境因素的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/760c/11687348/6b4e3f9d5d68/ELE-28-0-g003.jpg

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