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Climate change may reduce litter decomposition while enhancing the contribution of photodegradation in dry perennial Mediterranean grasslands

机译:气候变化可能会减少凋落物的分解,同时增强干旱的多年生地中海草原的光降解作用

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Understanding how the interactions between solar UV radiation and climate will affect leaf litter decomposition is fundamental to predict how soil and ecosystem biogeochemical cycles will respond to ongoing climate change. We carried out a manipulative experiment to investigate how UV radiation and its interaction with increased temperature (3 degrees C on average) and a similar to 35% reduction in precipitation affect the decomposition of "standing" and "on the ground" litter of Stipa tenacissima, a dominant species in semiarid Mediterranean grasslands. UV radiation was manipulated using specially designed screens that either passed or blocked 90% of the IN radiation. All climate change manipulation treatments decreased litter decomposition compared to the control treatment. In particular, litter decay rates were reduced by a 34%, 43% and 62% in the rainfall reduction (RE), warming (W), and the combination of warming and rainfall reduction (WRE) treatments, respectively, compared to the control treatment. Across climate manipulation treatments, higher decay rates were observed in litter exposed to UV radiation than in litter non-exposed to UV radiation, and in litter placed on the ground than in standing litter. However, significant interactions were found between climate manipulation and UV exposure or position treatments. In the control and RE treatments, litter on the ground decomposed 25% faster than standing litter. In the Wand WRE treatments, litter decomposition rates increased by 29% when exposed to UV radiation despite lower overall decay rates were observed in these treatments. Overall, lignin losses were parallelled by increases in soluble cell materials, particularly when litter was exposed to UV radiation. Our results indicate that predicted climate change scenarios will likely reduce leaf litter decomposition rates, while enhancing the relative contribution of photodegradation to overall litter decomposition in dry perennial Mediterranean grasslands. (C) 2015 Elsevier Ltd. All rights reserved.
机译:了解太阳紫外线辐射与气候之间的相互作用将如何影响枯枝落叶的分解,对于预测土壤和生态系统生物地球化学循环将如何响应持续的气候变化至关重要。我们进行了一项操作性实验,以研究紫外线辐射及其与温度升高(平均3摄氏度)之间的相互作用以及降水量减少约35%的影响如何影响Stipa tenacissima“立地”和“地面”凋落物的分解是地中海半干旱草原上的优势种。使用经过特殊设计的屏幕来操纵UV辐射,该屏幕可以通过或阻挡90%的IN辐射。与对照处理相比,所有气候变化处理处理均能减少垃圾分解。特别是,与对照相比,在减雨(RE),增温(W)以及加温和减雨(WRE)处理的组合下,凋落物衰减率分别降低了34%,43%和62%。治疗。在各种气候处理方法中,与未暴露于紫外线辐射的垃圾相比,暴露于紫外线辐射的垃圾和放置在地面上的垃圾的腐烂率要高于立式垃圾。但是,在气候操纵与紫外线照射或位置处理之间发现了显着的相互作用。在对照和RE处理中,地面垫料的分解速度比站立垫料快25%。在魔杖WRE处理中,尽管在这些处理中观察到总体腐烂率较低,但当暴露于紫外线辐射时,凋落物分解率提高了29%。总体而言,木质素的损失与可溶性细胞材料的增加平行,特别是当垫料暴露于紫外线辐射时。我们的结果表明,预测的气候变化情景将可能降低叶片凋落物的分解速率,同时增强干性多年生地中海草原中光降解对整体凋落物分解的相对贡献。 (C)2015 Elsevier Ltd.保留所有权利。

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