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气候变化下,维管植物对大气碳同化和泥炭碳分解的调控作用。

Vascular plant-mediated controls on atmospheric carbon assimilation and peat carbon decomposition under climate change.

机构信息

Swiss Federal Institute for Forest, Snow and Landscape Research, WSL Site Lausanne, Lausanne, Switzerland.

Laboratory of Ecological Systems ECOS, School of Architecture, Civil and Environmental Engineering ENAC, Ecole Polytechnique Fédérale de Lausanne EPFL, Lausanne, Switzerland.

出版信息

Glob Chang Biol. 2018 Sep;24(9):3911-3921. doi: 10.1111/gcb.14140. Epub 2018 Apr 17.

Abstract

Climate change can alter peatland plant community composition by promoting the growth of vascular plants. How such vegetation change affects peatland carbon dynamics remains, however, unclear. In order to assess the effect of vegetation change on carbon uptake and release, we performed a vascular plant-removal experiment in two Sphagnum-dominated peatlands that represent contrasting stages of natural vegetation succession along a climatic gradient. Periodic measurements of net ecosystem CO exchange revealed that vascular plants play a crucial role in assuring the potential for net carbon uptake, particularly with a warmer climate. The presence of vascular plants, however, also increased ecosystem respiration, and by using the seasonal variation of respired CO radiocarbon (bomb- C) signature we demonstrate an enhanced heterotrophic decomposition of peat carbon due to rhizosphere priming. The observed rhizosphere priming of peat carbon decomposition was matched by more advanced humification of dissolved organic matter, which remained apparent beyond the plant growing season. Our results underline the relevance of rhizosphere priming in peatlands, especially when assessing the future carbon sink function of peatlands undergoing a shift in vegetation community composition in association with climate change.

摘要

气候变化可以通过促进维管植物的生长来改变泥炭地植物群落组成。然而,这种植被变化如何影响泥炭地碳动态仍然不清楚。为了评估植被变化对碳吸收和释放的影响,我们在两个以泥炭藓为主的泥炭地进行了维管植物去除实验,这些泥炭地代表了沿气候梯度的自然植被演替的两个不同阶段。净生态系统 CO 交换的定期测量表明,维管植物在确保净碳吸收潜力方面起着至关重要的作用,特别是在气候变暖的情况下。然而,维管植物的存在也增加了生态系统呼吸,并且通过使用呼吸 CO 放射性碳(bomb-C)特征的季节性变化,我们证明由于根际激发作用,泥炭碳的异养分解增强。观察到的泥炭碳分解的根际激发作用与溶解有机物质的更高级腐殖化相匹配,这种现象在植物生长季节之外仍然明显。我们的研究结果强调了根际激发在泥炭地中的重要性,特别是在评估与气候变化相关的植被群落组成发生变化的泥炭地的未来碳汇功能时。

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