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Molecular phylogenetic analysis of a soil microbial community in a soybean field

机译:大豆田土壤微生物群落的分子系统发育分析

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SummaryWe report here the phylogenetic characterization of small subunit rRNA gene sequences obtained by polymerase chain reaction (PCR) amplification of mixed population DNA extracted directly from soil in a soybean field without culturing the organisms. The phylogenetic analysis of 17 soil clones by the neighbour‐joining method shows that the soil sample contained broadly diverse prokaryotes; a clone related to archaea, a clone to gram‐positive bacteria with high G+C contents, two clones to green sulphur bacteria, four clones to proteobacteria, and nine clones were not in clusters of any previously reported bacterial groups, which suggests they belong to members of novel groups in Bacteria. In addition, the archaeal sequence, FIE16, is phylogenetically similar to ANTARCTIC 12, a clone obtained from surface waters of Antarctica by PCR. Their occurrence in both the ocean and soil suggests a global distribution of this archaeal group. In conclusion, rRNA gene sequences recovered from soil biomass document the occurrence of many more bacterial lingeages than have been recognized previously through cultivation‐based techn
机译:摘要我们在这里报告了通过聚合酶链反应 (PCR) 扩增获得的小亚基 rRNA 基因序列的系统发育特征,这些基因序列直接从大豆田的土壤中提取,无需培养生物体。邻接法对17个土壤无性系进行系统发育分析,结果表明,土壤样品中原核生物种类繁多;一个与古细菌相关的克隆,一个与G+C含量高的革兰氏阳性细菌的克隆,两个与绿硫细菌的克隆,四个与变形菌的克隆,以及九个克隆不在任何先前报道的细菌群中,这表明它们属于细菌中新组的成员。此外,古菌序列FIE16在系统发育上与ANTARCTIC 12相似,ANTARCTIC 12是通过PCR从南极洲地表水中获得的克隆。它们在海洋和土壤中的出现表明了这个古菌群的全球分布。总之,从土壤生物量中回收的rRNA基因序列记录了比以前通过基于栽培的技术识别的更多的细菌的出现

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