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Unexpectedly High Bacterial Diversity in Arctic Tundra Relative to Boreal Forest Soils, Revealed by Serial Analysis of Ribosomal Sequence Tags

机译:相对于北方森林土壤而言,北极苔原中的细菌多样性异常高,通过核糖体序列标签的系列分析揭示

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摘要

Arctic tundra and boreal forest soils have globally relevant functions that affect atmospheric chemistry and climate, yet the bacterial composition and diversity of these soils have received little study. Serial analysis of ribosomal sequence tags (SARST) and denaturing gradient gel electrophoresis (DGGE) were used to compare composite soil samples taken from boreal and arctic biomes. This study comprises an extensive comparison of geographically distant soil bacterial communities, involving the analysis of 12,850 ribosomal sequence tags from six composite soil samples. Bacterial diversity estimates were greater for undisturbed arctic tundra soil samples than for boreal forest soil samples, with the highest diversity associated with a sample from an extreme northern location (82oN). The lowest diversity estimate was obtained from an arctic soil sample that was disturbed by compaction and sampled from a greater depth. Since samples from the two biomes did not form distinct clusters on the basis of SARST data and DGGE fingerprints, factors other than latitude likely influenced the phylogenetic compositions of these communities. The high number of ribosomal sequences analyzed enabled the identification of possible cosmopolitan and endemic bacterial distributions in particular soils.
机译:北极苔原和北方森林土壤在全球范围内具有影响大气化学和气候的功能,但是这些土壤的细菌组成和多样性却鲜有研究。核糖体序列标签(SARST)和变性梯度凝胶电泳(DGGE)的序列分析被用来比较取自北方和北极生物群落的复合土壤样品。这项研究包括对地理位置遥远的土壤细菌群落的广泛比较,包括分析来自六个复合土壤样品的12,850个核糖体序列标签。北极寒带苔原土壤样品的细菌多样性估计值比北方森林土壤样品的细菌多样性估计值更高,其中最高的微生物多样性来自极北地区(82oN)。最低的多样性估计是从受压实干扰的北极土壤样本中获得的,并从更大的深度进行采样。由于基于SARST数据和DGGE指纹,这两个生物群落的样品未形成明显的簇,因此纬度以外的因素可能会影响这些群落的系统发育组成。分析的大量核糖体序列使得能够鉴定特定土壤中可能的世界性和地方性细菌分布。

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