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Effects of Short-Term Warming and Altered Precipitation on Soil Microbial Communities in Alpine Grassland of the Tibetan Plateau

机译:短期升温和降水变化对青藏高原高寒草原土壤微生物群落的影响

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Soil microbial communities are influenced by climate change drivers such as warming and altered precipitation. These changes create abiotic stresses, including desiccation and nutrient limitation, which act on microbes. However, our understanding of the responses of microbial communities to co-occurring climate change drivers is limited. We surveyed soil bacterial and fungal diversity and composition after a 1-year warming and altered precipitation manipulation in the Tibetan plateau alpine grassland. In isolation, warming and decreased precipitation treatments each had no significant effects on soil bacterial community structure; however, in combination of both treatments altered bacterial community structure ( p = 0.03). The main effect of altered precipitation specifically impacted the relative abundances of Bacteroidetes and Gammaproteobacteria compared to the control, while the main effect of warming impacted the relative abundance of Betaproteobacteria. In contrast, the fungal community had no significant response to the treatments after 1-year. Using structural equation modeling (SEM), we found bacterial community composition was positively related to soil moisture. Our results indicate that short-term climate change could cause changes in soil bacterial community through taxonomic shifts. Our work provides new insights into immediate soil microbial responses to short-term stressors acting on an ecosystem that is particularly sensitive to global climate change.
机译:土壤微生物群落受到气候变化驱动因素的影响,例如变暖和降水变化。这些变化产生了作用于微生物的非生物胁迫,包括干燥和营养限制。但是,我们对微生物群落对共同出现的气候变化驱动因素的反应的理解是有限的。我们调查了青藏高原高寒草原一年的变暖和改变的降雨处理后土壤细菌和真菌的多样性和组成。孤立地,增温和减少降水的处理对土壤细菌群落结构均无显着影响。然而,两种治疗方法的结合改变了细菌群落结构(p = 0.03)。与对照相比,降水变化的主要影响具体影响了拟杆菌和γ-变形杆菌的相对丰度,而变暖的主要影响则影响了β-变形杆菌的相对丰度。相比之下,真菌群落对1年后的治疗无明显反应。使用结构方程模型(SEM),我们发现细菌群落组成与土壤水分呈正相关。我们的结果表明,短期的气候变化可能会通过分类学变化引起土壤细菌群落的变化。我们的工作提供了新的见解,可立即了解土壤微生物对短期胁迫的反应,该短期胁迫作用于对全球气候变化特别敏感的生态系统。

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