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不同海拔红松森林土壤微生物功能多样性

[Soil microbial functional diversity of different altitude Pinus koraiensis forests].

作者信息

Han Dong-xue, Wang Ning, Wang Nan-nan, Sun Xue, Feng Fu-juan

出版信息

Ying Yong Sheng Tai Xue Bao. 2015 Dec;26(12):3649-56.

Abstract

In order to comprehensively understand the soil microbial carbon utilization characteristics of Pinus koraiensis forests, we took the topsoil (0-5 cm and 5-10 cm) along the 700-1100 m altitude in Changbai Mountains and analyzed the vertical distributed characteristics and variation of microbial functional diversity along the elevation gradient by Biolog microplate method. The results showed that there were significant differences in functional diversity of microbial communities at different elevations. AWCD increased with the extension of incubation time and AWCD at the same soil depth gradually decreased along with increasing altitude; Shannon, Simpson and McIntosh diversity index also showed the same trend with AWCD and three different diversity indices were significantly different along the elevation gradient; Species diversity and functional diversity showed the same variation. The utilization intensities of six categories carbon sources had differences while amino acids were constantly the most dominant carbon source. Principal component analysis (PCA) identified that soil microbial carbon utilization at different altitudes had obvious spatial differentiation, as reflected in the use of carbohydrates, amino acids and carboxylic acids. In addition, the cluster of the microbial diversity indexes and AWCD values of different altitudes showed that the composition of vegetation had a significant impact on soil microbial composition and functional activity.

摘要

为全面了解长白山红松阔叶林土壤微生物碳利用特征,我们采集了长白山海拔700 - 1100米的表层土壤(0 - 5厘米和5 - 10厘米),并采用Biolog微孔板法分析了微生物功能多样性沿海拔梯度的垂直分布特征及变化规律。结果表明,不同海拔高度微生物群落功能多样性存在显著差异。AWCD随培养时间延长而增加,同一土壤深度的AWCD随海拔升高逐渐降低;香农、辛普森和麦金托什多样性指数与AWCD呈现相同趋势,且三个不同多样性指数沿海拔梯度差异显著;物种多样性和功能多样性呈现相同变化规律。六类碳源利用强度存在差异,其中氨基酸始终是最主要的碳源。主成分分析(PCA)表明,不同海拔土壤微生物碳利用存在明显的空间分异,体现在碳水化合物、氨基酸和羧酸的利用上。此外,不同海拔微生物多样性指数和AWCD值的聚类分析表明,植被组成对土壤微生物组成和功能活性有显著影响。

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