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泥炭地中水分运输和溶质传输的分形特征及其对气候变化的响应

Linkages between Sphagnum metabolites and peatland CO uptake are sensitive to seasonality in warming trends.

机构信息

Laboratoire Ecologie Fonctionnelle et Environnement (LEFE), Université Paul Sabatier, CNRS, F-31000, Toulouse, France.

Department of Ecology and Environmental Science, Climate Impacts Research Centre, Umeå University, SE-981 07, Abisko, Sweden.

出版信息

New Phytol. 2023 Feb;237(4):1164-1178. doi: 10.1111/nph.18601. Epub 2022 Dec 7.

Abstract

Plants produce a wide diversity of metabolites. Yet, our understanding of how shifts in plant metabolites as a response to climate change feedback on ecosystem processes remains scarce. Here, we test to what extent climate warming shifts the seasonality of metabolites produced by Sphagnum mosses, and what are the consequences of these shifts for peatland C uptake. We used a reciprocal transplant experiment along a climate gradient in Europe to simulate climate change. We evaluated the responses of primary and secondary metabolites in five Sphagnum species and related their responses to gross ecosystem productivity (GEP). When transplanted to a warmer climate, Sphagnum species showed consistent responses to warming, with an upregulation of either their primary or secondary metabolite according to seasons. Moreover, these shifts were correlated to changes in GEP, especially in spring and autumn. Our results indicate that the Sphagnum metabolome is very plastic and sensitive to warming. We also show that warming-induced changes in the seasonality of Sphagnum metabolites have consequences on peatland GEP. Our findings demonstrate the capacity for plant metabolic plasticity to impact ecosystem C processes and reveal a further mechanism through which Sphagnum could shape peatland responses to climate change.

摘要

植物会产生多种多样的代谢物。然而,我们对于植物代谢物的变化如何作为对气候变化的反馈作用于生态系统过程的理解仍然很少。在这里,我们测试了气候变暖在多大程度上改变了泥炭藓产生的代谢物的季节性,以及这些变化对泥炭地碳吸收的影响。我们使用在欧洲气候梯度上进行的相互移植实验来模拟气候变化。我们评估了五种泥炭藓物种的初级和次级代谢物的反应,并将其与总生态系统生产力(GEP)联系起来。当移植到较温暖的气候时,泥炭藓物种对变暖表现出一致的反应,根据季节上调其初级或次级代谢物。此外,这些变化与 GEP 的变化相关,特别是在春季和秋季。我们的研究结果表明,泥炭藓的代谢组非常具有可塑性,对变暖敏感。我们还表明,变暖引起的泥炭藓代谢物季节性变化对泥炭地 GEP 有影响。我们的研究结果表明植物代谢可塑性对生态系统 C 过程的影响,并揭示了泥炭藓可能影响对气候变化的泥炭地响应的另一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d88f/10108112/c6812be3baae/NPH-237-1164-g004.jpg

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