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Effects of temperature on the composition and diversity of bacterial communities in bamboo soils at different elevations

机译:温度对不同海拔高度竹林土壤细菌群落组成和多样性的影响

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Bamboo is an important resource distributed in mountain areas in Asia. Little is known about the impact of temperature changes on bamboo soil bacterial communities. In this study, responses of bacterial communities collected at 600, 1200, and 1800?m to different incubation temperatures (15, 20, and 35?°C) were examined using barcoded pyrosequencing and soil analyses. Soil respiration was greater at higher elevation and incubation temperature. The bacterial diversity decreased after 112?days of incubation at 35?°C. Before incubation, iAcidobacteria/i and iProteobacteria/i were the most abundant phyla in all communities. The relative abundance of iAcidobacteria/i generally decreased after 112?days of incubation at the three temperatures. iα/i-iProteobacteria/i showed a?similar trend, while iγ/i-iProteobacteria/i increased after incubation, except in samples from 1800?m incubated at 35?°C. Non-metric multi-dimensional scaling analysis revealed structural variability under different incubation times and temperatures. Principal component analysis indicated that the bacterial structure in samples incubated at 35?°C correlated with temperature and soil respiration, while structures in samples incubated at 15 and 20?°C correlated with time. These results suggest that a?temperature rise could result in increasing soil respiration and soluble carbon and nitrogen consumption as well as differentially influence bacterial diversity and structure at different elevations.
机译:竹子是分布在亚洲山区的重要资源。关于温度变化对竹土细菌群落的影响知之甚少。在这项研究中,使用条形码热解测序和土壤分析研究了在600、1200和1800?m收集的细菌群落对不同培养温度(15、20和35?C)的反应。在较高海拔和孵化温度下,土壤呼吸作用更大。在35°C下孵育112天后,细菌多样性下降。在孵化之前, Acidobacteria 和 Proteobacteria 是所有群落中最丰富的门。在三种温度下孵育112天后,Acidbacteria的相对丰度通常会下降。孵育后,α-变形杆菌呈现相似的趋势,而γ-变形杆菌增加,但1800年后的样本除外?m在35°C下孵育。非度量多维标度分析显示了不同孵育时间和温度下的结构变异性。主成分分析表明,在35°C下孵育的样品中的细菌结构与温度和土壤呼吸相关,而在15和20°C下孵育的样品中的细菌结构与时间相关。这些结果表明,温度升高可能导致土壤呼吸增加,可溶性碳和氮消耗增加,并在不同海拔高度差异影响细菌的多样性和结构。

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