首页> 外文期刊>Biotechnology & Biotechnological Equipment >MOLECULAR CHARACTERIZATION OF THE ARCHAEAL DIVERSITY IN VLASA HOT SPRING, BULGARIA, BY USING 16S RRNA AND GLYCOSIDE HYDROLASE FAMILY 4 GENES
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MOLECULAR CHARACTERIZATION OF THE ARCHAEAL DIVERSITY IN VLASA HOT SPRING, BULGARIA, BY USING 16S RRNA AND GLYCOSIDE HYDROLASE FAMILY 4 GENES

机译:通过使用16S RRNA和糖苷水解酶家族4个基因,分子鉴定保加利亚保加利亚热春中的古细菌多样性

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摘要

Biodiversity in the archaeal community from VJasa hot spring, Velingrad, Bulgaria was investigated by sequence analysis of PCR amplified fragments of 16S rDNA and a metabolic gene of glycoside hydrolase 4 family (GH4). The 16S rRNA gene analysis demonstrated that the spring was inhabited predominantly by Crenarchaeota affiliated to two orders, Desulfurococcales (families Pyrodictiaceae and Desulfurococcaceae) and Thermoproteales. Almost half of the 16S rDNA clones were affiliated with hyperthermophilic anaerobic sulfate reducer Thermosphaera aggregans. Five 16S rDNA sequences were under cut off value of 97% homology to those of Genbank database and suggested the existence of novel phylogenetic units in the community. The archaeal diversity of the studied hot spring was further analyzed through sequence analysis of metagenomicaly cloned GH4 gene fragments. The comparative J6SrDNA and GH4 phylogenetic analyses demonstrated good correlation of the phylogenetic tree topology from both approaches, corresponding to the affiliation of the identified 16S rDNA sequences predominantly to organotrophic metabolizing taxons. The opportunity for simultaneous application of two molecular approaches, 16S rDNA and metabolite genes analyses for in dept characterization of environmental samples and directed metagenomic identification and cloning of metabolite genes of industrial interest is discussed.
机译:通过对16S rDNA和糖苷水解酶4家族(GH4)代谢基因的PCR扩增片段进行序列分析,研究了保加利亚韦林格勒VJasa温泉古细菌群落中的生物多样性。 16S rRNA基因分析表明,该春季主要居住在隶属于两个亚目(脱硫球菌和脱硫球菌科)和嗜热蛋白酶菌的Crenarchaeota身上。 16S rDNA克隆中几乎有一半与嗜热厌氧硫酸盐还原酶聚集体嗜热球菌相关。与Genbank数据库的5S 16S rDNA序列相比,其截止值低于97%的同源性,这表明该群落中存在新的系统发育单元。通过宏基因组克隆的GH4基因片段的序列分析,进一步分析了所研究温泉的古细菌多样性。对比的J6SrDNA和GH4系统发育分析表明,两种方法在系统发育树拓扑方面都具有良好的相关性,这对应于已鉴定的16S rDNA序列主要与有机营养代谢类群相关。讨论了同时应用16S rDNA和代谢物基因分析这两种分子方法进行环境样品的特性表征以及直接宏基因组学鉴定和工业兴趣代谢物基因克隆的机会。

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