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Experimental warming decreases arbuscular mycorrhizal fungal colonization in prairie plants along a Mediterranean climate gradient

机译:实验性变暖减少了沿地中海气候梯度的草原植物中丛枝菌根真菌的定殖

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摘要

>Background: Arbuscular mycorrhizal fungi (AMF) provide numerous services to their plant symbionts. Understanding climate change effects on AMF, and the resulting plant responses, is crucial for predicting ecosystem responses at regional and global scales. We investigated how the effects of climate change on AMF-plant symbioses are mediated by soil water availability, soil nutrient availability, and vegetation dynamics.>Methods: We used a combination of a greenhouse experiment and a manipulative climate change experiment embedded within a Mediterranean climate gradient in the Pacific Northwest, USA to examine this question. Structural equation modeling (SEM) was used to determine the direct and indirect effects of experimental warming on AMF colonization.>Results: Warming directly decreased AMF colonization across plant species and across the climate gradient of the study region. Other positive and negative indirect effects of warming, mediated by soil water availability, soil nutrient availability, and vegetation dynamics, canceled each other out.>Discussion: A warming-induced decrease in AMF colonization would likely have substantial consequences for plant communities and ecosystem function. Moreover, predicted increases in more intense droughts and heavier rains for this region could shift the balance among indirect causal pathways, and either exacerbate or mitigate the negative, direct effect of increased temperature on AMF colonization.
机译:>背景:丛枝菌根真菌(AMF)为植物共生体提供了多种服务。了解气候变化对AMF的影响以及由此产生的植物反应,对于预测区域和全球尺度的生态系统反应至关重要。我们研究了气候变化对AMF植物共生的影响是如何通过土壤水分,土壤养分和植被动态来调节的。>方法:我们结合了温室试验和人工气候变化在美国西北太平洋地区的地中海气候梯度中进行的实验,以检验这一问题。结构方程模型(SEM)用于确定实验性变暖对AMF菌落的直接和间接影响。>结果:变暖直接降低了整个研究物种和研究区域气候梯度下的AMF菌落。由土壤水分可利用性,土壤养分可利用性和植被动力学介导的变暖的其他正面和负面间接影响相互抵消。用于植物群落和生态系统功能。此外,预计该地区更严重的干旱和大雨的增加可能会改变间接因果关系之间的平衡,并加剧或减轻温度升高对AMF定殖的负面直接影响。

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