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Isolation of novel bacteria, including a candidate division, from geothermal soils in New Zealand

机译:从新西兰的地热土壤中分离出新型细菌,包括候选菌

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We examined bacterial diversity of three geothermal soils in the Taupo Volcanic Zone of New Zealand. Phylogenetic analysis of 16S rRNA genes recovered directly from soils indicated that the bacterial communities differed in composition and richness, and were dominated by previously uncultured species of the phyla Actinobacteria, Acidobacteria, Chloroflexi, Proteobacteria and candidate division OP10. Aerobic, thermophilic, organotrophic bacteria were isolated using cultivation protocols that involved extended incubation times, low-pH media and gellan as a replacement gelling agent to agar. Isolates represented previously uncultured species, genera, classes, and even a new phylum of bacteria. They included members of the commonly cultivated phyla Proteobacteria, Firmicutes, Thermus/Deinococcus, Actinobacteria and Bacteroidetes, as well as more-difficult-to-cultivate groups. Isolates possessing < 85% 16S rRNA gene sequence identity to any cultivated species were obtained from the phyla Acidobacteria, Chloroflexi and the previously uncultured candidate division OP10. Several isolates were prevalent in 16S rRNA gene clone libraries constructed directly from the soils. A key factor facilitating isolation was the use of gellan-solidified plates, where the gellan itself served as an energy source for certain bacteria. The results indicate that geothermal soils are a rich potential source of novel bacteria, and that relatively simple cultivation techniques are practical for isolating bacteria from these habitats.
机译:我们检查了新西兰陶波火山带的三种地热土壤的细菌多样性。对直接从土壤中回收的16S rRNA基因进行系统进化分析表明,细菌群落的组成和丰富度不同,并且以以前未培养的菌群放线菌,嗜酸菌,绿叶弯曲菌,变形杆菌和候选菌OP10为主。使用涉及延长培养时间,低pH培养基和结冷胶作为琼脂替代胶凝剂的培养方案分离出需氧,嗜热,有机营养细菌。分离株代表以前未培养的物种,属,类别,甚至是新的细菌门。他们包括通常栽培的门菌群,菌毛,Thermus / Deinococcus,放线菌和拟杆菌的成员,以及难度更高的群体。与门氏菌属,绿屈菌和先前未培养的候选菌株OP10分离的菌株与任何栽培种均具有<85%的16S rRNA基因序列同一性。直接从土壤中构建的16S rRNA基因克隆文库中普遍存在几种分离株。促进分离的关键因素是使用结冷胶固定板,结冷胶本身可作为某些细菌的能源。结果表明,地热土壤是新型细菌的丰富潜在来源,相对简单的栽培技术对于从这些生境中分离细菌非常实用。

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