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首页> 外文期刊>Applied and Environmental Microbiology >Partial Genome Assembly for a Candidate Division OP11 Single Cell from an Anoxic Spring (Zodletone Spring, Oklahoma)
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Partial Genome Assembly for a Candidate Division OP11 Single Cell from an Anoxic Spring (Zodletone Spring, Oklahoma)

机译:缺氧弹簧(俄克拉何马州佐丹东温泉)候选OP11单细胞的部分基因组装配

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Members of candidate division OP11 are widely distributed in terrestrial and marine ecosystems, yet little information regarding their metabolic capabilities and ecological role within such habitats is currently available. Here, we report on the microfluidic isolation, multiple-displacement-amplification, pyrosequencing, and genomic analysis of a single cell (ZG1) belonging to candidate division OP11. Genome analysis of the ~270-kb partial genome assembly obtained showed that it had no particular similarity to a specific phylum. Four hundred twenty-three open reading frames were identified, 46% of which had no function prediction. In-depth analysis revealed a heterotrophic lifestyle, with genes encoding endoglucanase, amylopullulanase, and laccase enzymes, suggesting a capacity for utilization of cellulose, starch, and, potentially, lignin, respectively. Genes encoding several glycolysis enzymes as well as formate utilization were identified, but no evidence for an electron transport chain was found. The presence of genes encoding various components of lipopolysaccharide biosynthesis indicates a Gram-negative bacterial cell wall. The partial genome also provides evidence for antibiotic resistance (β-lactamase, aminoglycoside phosphotransferase), as well as antibiotic production (bacteriocin) and extracellular bactericidal peptidases. Multiple mechanisms for stress response were identified, as were elements of type I and type IV secretion systems. Finally, housekeeping genes identified within the partial genome were used to demonstrate the OP11 affiliation of multiple hitherto unclassified genomic fragments from multiple database-deposited metagenomic data sets. These results provide the first glimpse into the lifestyle of a member of a ubiquitous, yet poorly understood bacterial candidate division.
机译:候选分区OP11的成员广泛分布在陆地和海洋生态系统中,但目前尚缺乏有关其在这些栖息地中的代谢能力和生态作用的信息。在这里,我们报告了属于候选分区OP11的单个细胞(ZG1)的微流控分离,多位移扩增,焦磷酸测序和基因组分析。对〜270kb部分基因组装配体进行的基因组分析表明,它与特定的门没有特别的相似性。确定了423个开放阅读框,其中46%没有功能预测。深入的分析揭示了一种异养生活,其编码内切葡聚糖酶,淀粉淀粉酶和漆酶的基因,提示它们分别具有利用纤维素,淀粉和木质素的能力。确定了编码几种糖酵解酶和甲酸利用的基因,但没有发现电子转运链的证据。编码脂多糖生物合成各种成分的基因的存在表明革兰氏阴性细菌细胞壁。部分基因组还提供了抗生素耐药性(β-内酰胺酶,氨基糖苷磷酸转移酶)以及抗生素产生(细菌素)和细胞外杀菌肽酶的证据。确定了多种应激反应机制,包括I型和IV型分泌系统的成分。最后,在部分基因组中鉴定的看家基因被用来证明来自多个数据库保存的宏基因组数据集的多个迄今未分类的基因组片段的OP11隶属关系。这些结果使人们首次了解了一个普遍存在的,但鲜为人知的细菌候选物分裂成员的生活方式。

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