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从嗜盐嗜碱古菌Q22菌株中分离出的新型嗜盐古菌质粒pHF2的序列分析及最小复制子测定

Sequence analysis and minimal replicon determination of a new haloarchaeal plasmid pHF2 isolated from Haloferax sp. strain Q22.

作者信息

Chen Shaoxing, Wang Chuangming, Xiang Hua

机构信息

Department of Biology, School of Life Science and Technology, Honghe University, Mengzi 66110, Yunnan, China; State Key Laboratory of Microbial Resources, Institute of Microbiology, Chinese Academy of Sciences, Beijing 100101, China.

Department of Biology, School of Life Science and Technology, Honghe University, Mengzi 66110, Yunnan, China.

出版信息

Plasmid. 2016 Jan;83:1-7. doi: 10.1016/j.plasmid.2015.11.001. Epub 2015 Nov 19.

Abstract

A new cryptic plasmid, pHF2 (2520 bp), was isolated from Haloferax sp. strain Q22 (CGMCC 1.15317), a haloarchaeal strain living in a subterranean halite deposit. Sequence analysis revealed that it is the smallest plasmid in the genus Haloferax so far, and three syntropic open reading frames (ORF1, ORF2, and ORF3) were identified on the same strand. ORF1 encodes a putative replication initiation protein (Rep). Three typical motifs (I, II, and III) were presented in the Rep proteins of rolling-circle replicating (RCR) plasmids. The amino acid sequence of the Rep protein is very similar to that of another haloarchaeal plasmid pNB101 in Natronobacterium sp. AS-7091 (coverage 97%, identity 56%). The minimal replicon (~1000 bp) of pHF2 was determined through the construction of a series of truncated plasmids. Interestingly, we also found that the incomplete rep gene still can drive plasmid replication. This plasmid has provided another valuable extra-chromosomal genetic resource, and deepened our knowledge in DNA replication.

摘要

从嗜盐嗜碱古菌菌株Q22(CGMCC 1.15317)中分离出一种新的隐蔽质粒pHF2(2520 bp),该菌株生活在地下岩盐矿床中。序列分析表明,它是迄今为止嗜盐嗜碱古菌属中最小的质粒,并且在同一条链上鉴定出三个同向开放阅读框(ORF1、ORF2和ORF3)。ORF1编码一种假定的复制起始蛋白(Rep)。滚环复制(RCR)质粒的Rep蛋白中存在三个典型基序(基序I、基序II和基序III)。Rep蛋白的氨基酸序列与嗜盐碱杆菌属AS-7091中的另一种嗜盐古菌质粒pNB101非常相似(覆盖率97%,同一性56%)。通过构建一系列截短质粒确定了pHF2的最小复制子(约1000 bp)。有趣的是,我们还发现不完整的rep基因仍然可以驱动质粒复制。该质粒提供了另一种有价值的染色体外遗传资源,并加深了我们对DNA复制的认识。

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