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Bacterial community of very wet and acidic subalpine forest and fire-induced grassland soils

机译:高度潮湿和酸性的亚高山森林和火烧草地土壤的细菌群落

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摘要

The subalpine forest and grassland ecosystems at Tatajia in Yushan National Park, Taiwan, at an elevation of 2,700 m, mean annual precipitation of 4,100 mm, mean annual temperature of 9.5°C, and soil pH near 3.5, represent land types whose bacterial communities have not been previously characterized. To this end, small subunit (SSU) rRNA libraries were prepared from environmental DNA, and 319 clones were sequenced and characterized. Despite differences in vegetation, Acidobacteria, Proteobacteria and Firmicutes were the most abundant phyla in soil communities from the forest and grassland. Although not significantly different, on the basis of Chao1, Shannon and other indices and rarefaction analyses, the diversity of the bacterial community of grassland appeared higher than that of the forest. The composition of the most abundant operational taxonomic units (OTUs) also differed between the grassland and forest communities. Because the grassland was formed by fire 30 years ago from forest, these results indicated a different bacterial community could form within that time. Moreover, most of the OTUs abundant in Tatajia soils had been previously detected in other studies, but in lower numbers. Therefore, the bacterial communities in Tatajia differed in relative abundance but not in types of bacteria present. However, one acidobacterial OTU abundant in Tatajia had previously been found to be abundant in soils from around the world. Thus, this OTU may represent a particularly abundant and cosmopolitan bacterial phylotype.
机译:台湾玉山国家公园塔塔甲的亚高山森林和草地生态系统海拔2700 m,年平均降水量4100 mm,年平均温度9.5°C,土壤pH值接近3.5,代表了细菌群落具有以前没有特征。为此,从环境DNA制备了小亚基(SSU)rRNA文库,并对319个克隆进行了测序和鉴定。尽管植被不同,但酸性细菌,变形杆菌和硬毛菌是森林和草原土壤群落中最丰富的菌群。尽管没有显着差异,但根据Chao1,Shannon等指标和稀疏度分析,草地细菌群落的多样性似乎高于森林。草地和森林群落之间,最丰富的业务分类单位(OTU)的组成也有所不同。由于草原是30年前由森林大火烧成的,因此这些结果表明在这段时间内可能形成另一种细菌群落。此外,塔塔甲土壤中丰富的大多数OTU先前已在其他研究中检测到,但数量较少。因此,塔塔甲的细菌群落相对丰度有所不同,但存在的细菌类型却没有差异。但是,以前发现塔塔甲地区富含一种酸性细菌的OTU在世界各地的土壤中都丰富。因此,该OTU可以代表特别丰富和世界性的细菌系统型。

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