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Soil and tree species traits both shape soil microbial communities during early growth of Chinese subtropical forests

机译:亚热带森林早期生长过程中土壤和树木的性状均影响土壤微生物群落

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A better understanding of the linkages between aboveground and belowground biotic communities is needed for "more accurate predictions about how ecosystems may be altered by climate change, land management, or biodiversity loss. Soil microbes are strongly affected by multiple factors including local abiotic environmental conditions and plant characteristics. To find out how soil microbial communities respond to multiple facets of the local soil and plant environment, we analysed soil lipid profiles associated with three-year-old monocultures of 29 tree species. These species are native of the diverse subtropical forests of southeast China and greatly vary in functional traits, growth or biomass characteristics, and phylogenetic relatedness. Along with the traits of each tree species, we also determined the soil and plot characteristics in each monoculture plot and tested for phylogenetic signals in tree species specific microbial indicators. Microbial community structure and biomass were influenced by both soil properties and plant functional traits, but were not related to the phylogenetic distances of tree species. Specifically, total microbial biomass, indicators for fungi, bacteria, and actinomycetes were positively correlated with soil pH, soil organic nitrogen, and soil moisture. Our results also indicate that leaf dry matter content and the leaf carbon to nitrogen ratio influence multivariate soil microbial community structure, and that these factors and tree growth traits (height, crown or basal diameter) positively promote the abundances of specific microbial functional groups. At the same time, a negative correlation between leaf nitrogen content and Gram positive bacterial abundance was detected, indicating plant microbial competition for nitrogen in our system. In conclusion, even at early stages of tree growth, soil microbial community abundance and structure can be significantly influenced by plant traits, in combination with local soil characteristics. (C) 2016 Elsevier Ltd. All rights reserved.
机译:为了“更准确地预测气候变化,土地管理或生物多样性丧失可能如何改变生态系统的预测,需要对地下和地下生物群落之间的联系有更好的了解。土壤微生物受到多种因素的强烈影响,包括当地的非生物环境条件和为了了解土壤微生物群落如何响应当地土壤和植物环境的多个方面,我们分析了与29年树种的3年单一栽培相关的土壤脂质谱,这些树种来自巴西亚热带森林。在中国东南地区,其功能性状,生长或生物量特征以及系统发育相关性差异很大,我们还根据每种树种的特性,确定了每个单一栽培样地的土壤和样地特征,并在树种特定的微生物指标中测试了系统发生信号我们的微生物群落结构和生物量既受土壤特性和植物功能性状的影响,但与树种的系统发育距离无关。具体而言,微生物总生物量,真菌,细菌和放线菌的指标与土壤pH,土壤有机氮和土壤湿度呈正相关。我们的结果还表明,叶片干物质含量和叶片碳氮比影响多元土壤微生物群落结构,这些因素和树木生长性状(高度,树冠或基径)正向促进特定微生物功能群的丰度。同时,检测到叶片氮含量与革兰氏阳性细菌丰度之间呈负相关,这表明我们系统中植物微生物对氮的竞争。总之,即使在树木生长的早期,结合植物的性状和当地的土壤特性,土壤微生物群落的丰度和结构也会受到显着影响。 (C)2016 Elsevier Ltd.保留所有权利。

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