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沿季节和海拔梯度的温度响应与细菌群落结构之间的关系。

Relationships between temperature responses and bacterial community structure along seasonal and altitudinal gradients.

作者信息

Lipson David A

机构信息

Department of Biology, San Diego State University, San Diego, CA 92182-4614, USA.

出版信息

FEMS Microbiol Ecol. 2007 Feb;59(2):418-27. doi: 10.1111/j.1574-6941.2006.00240.x.

Abstract

In this study, soil bacterial communities and the temperature responses (Q10) of substrate-induced respiration were compared between an alpine dry meadow and a subalpine forest in the Colorado Rocky Mountains. Bacterial communities in three seasons from each environment were described with 16S rRNA gene clone libraries. The main goal of this comparison was to relate phylogenetic differences among bacterial communities with variation in soil respiratory temperature sensitivities along seasonal and altitudinal gradients. The warmer, lower elevation, subalpine forest soil exhibited large seasonal variations in Q10. Subalpine Q10 values were highest in summer, and were higher than alpine values in all seasons except winter. Q10 in alpine soils were consistently low throughout the year. Alpine and subalpine bacterial communities both varied seasonally, and were markedly distinct from each other. Based on Fst analysis, subalpine communities from colder times of year were more similar to the alpine communities than were subalpine summer communities. Principle component analysis of the pairwise genetic distances (Fst) between communities produced two factors that accounted for 69% and 22% of the total variance in the data set. These factors demonstrated a significant relationship between bacterial community structure and temperature response when regressed on log-transformed Q10 data.

摘要

在本研究中,我们比较了科罗拉多落基山脉的高山干草草甸和亚高山森林之间的土壤细菌群落以及底物诱导呼吸的温度响应(Q10)。利用16S rRNA基因克隆文库描述了每个环境中三个季节的细菌群落。这种比较的主要目的是将细菌群落之间的系统发育差异与土壤呼吸温度敏感性沿季节和海拔梯度的变化联系起来。温暖的、海拔较低的亚高山森林土壤的Q10表现出较大的季节性变化。亚高山的Q10值在夏季最高,除冬季外,在所有季节都高于高山的Q10值。高山土壤的Q10全年都持续较低。高山和亚高山细菌群落都随季节变化,且彼此明显不同。基于Fst分析,一年中较冷时期的亚高山群落比夏季的亚高山群落与高山群落更相似。对群落间成对遗传距离(Fst)进行主成分分析产生了两个因子,它们占数据集总方差的69%和22%。当对经对数转换的Q10数据进行回归分析时,这些因子表明细菌群落结构与温度响应之间存在显著关系。

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