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首页> 外文期刊>Applied and Environmental Microbiology >Molecular Characterization of Functional and Phylogenetic Genes from Natural Populations of Methanotrophs in Lake Sediments
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Molecular Characterization of Functional and Phylogenetic Genes from Natural Populations of Methanotrophs in Lake Sediments

机译:湖泊沉积物中甲烷营养菌自然种群的功能和系统发育基因的分子表征

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摘要

The 16S rRNA and pmoA genes from natural populations of methane-oxidizing bacteria (methanotrophs) were PCR amplified from total community DNA extracted from Lake Washington sediments obtained from the area where peak methane oxidation occurred. Clone libraries were constructed for each of the genes, and approximately 200 clones from each library were analyzed by using restriction fragment length polymorphism (RFLP) and the tetrameric restriction enzymesMspI, HaeIII, and HhaI. The PCR products were grouped based on their RFLP patterns, and representatives of each group were sequenced and analyzed. Studies of the 16S rRNA data obtained indicated that the existing primers did not reveal the total methanotrophic diversity present when these data were compared with pure-culture data obtained from the same environment. New primers specific for methanotrophs belonging to the generaMethylomonas, Methylosinus, andMethylocystis were developed and used to construct more complete clone libraries. Furthermore, a new primer was designed for one of the genes of the particulate methane monooxygenase in methanotrophs, pmoA. Phylogenetic analyses of both the 16S rRNA and pmoA gene sequences indicated that the new primers should detect these genes over the known diversity in methanotrophs. In addition to these findings, 16S rRNA data obtained in this study were combined with previously described phylogenetic data in order to identify operational taxonomic units that can be used to identify methanotrophs at the genus level.
机译:从甲烷氧化峰值发生区域获得的华盛顿湖沉积物中提取的总群落DNA中,PCR扩增来自甲烷氧化细菌(甲烷营养菌)自然种群的16S rRNA和pmoA基因。针对每个基因构建克隆文库,并通过使用限制性片段长度多态性(RFLP)和四聚限制酶MspI,HaeIII和HhaI分析来自每个文库的大约200个克隆。根据PCR产物的RFLP图谱对它们进行分组,并对每个组的代表进行测序和分析。对获得的16S rRNA数据的研究表明,将这些数据与从相同环境获得的纯培养数据进行比较时,现有引物并未揭示存在的总甲烷营养多样性。开发了对属于甲烷单胞菌属,甲基肌球菌属和甲基囊藻属的甲烷营养菌特异的新引物,并将其用于构建更完整的克隆文库。此外,针对甲烷营养菌pmoA中的颗粒甲烷单加氧酶的一种基因设计了新的引物。对16S rRNA和pmoA基因序列的系统进化分析表明,新的引物应能在甲烷营养菌的已知多样性中检测到这些基因。除这些发现外,本研究中获得的16S rRNA数据与先前描述的系统发育数据结合在一起,以鉴定可用于鉴定属水平上的甲烷营养菌的操作分类单位。

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