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从海洋沉积物细菌中分离广宿主范围的复制子。

Isolation of broad-host-range replicons from marine sediment bacteria.

作者信息

Sobecky P A, Mincer T J, Chang M C, Toukdarian A, Helinski D R

机构信息

Department of Biology and Center for Molecular Genetics, University of California, San Diego, La Jolla, California 92093-0634, USA.

出版信息

Appl Environ Microbiol. 1998 Aug;64(8):2822-30. doi: 10.1128/AEM.64.8.2822-2830.1998.

Abstract

Naturally occurring plasmids isolated from heterotrophic bacterial isolates originating from coastal California marine sediments were characterized by analyzing their incompatibility and replication properties. Previously, we reported on the lack of DNA homology between plasmids from the culturable bacterial population of marine sediments and the replicon probes specific for a number of well-characterized incompatibility and replication groups (P. A. Sobecky, T. J. Mincer, M. C. Chang, and D. R. Helinski, Appl. Environ. Microbiol. 63:888-895, 1997). In the present study we isolated 1.8- to 2.3-kb fragments that contain functional replication origins from one relatively large (30-kb) and three small (<10-kb) naturally occurring plasmids present in different marine isolates. 16S rRNA sequence analyses indicated that the four plasmid-bearing marine isolates belonged to the alpha and gamma subclasses of the class Proteobacteria. Three of the marine sediment isolates are related to the gamma-3 subclass organisms Vibrio splendidus and Vibrio fischeri, while the fourth isolate may be related to Roseobacter litoralis. Sequence analysis of the plasmid replication regions revealed the presence of features common to replication origins of well-characterized plasmids from clinical bacterial isolates, suggesting that there may be similar mechanisms for plasmid replication initiation in the indigenous plasmids of gram-negative marine sediment bacteria. In addition to replication in Escherichia coli DH5alpha and C2110, the host ranges of the plasmid replicons, designated repSD41, repSD121, repSD164, and repSD172, extended to marine species belonging to the genera Achromobacter, Pseudomonas, Serratia, and Vibrio. While sequence analysis of repSD41 and repSD121 revealed considerable stretches of homology between the two fragments, these regions do not display incompatibility properties against each other. The replication origin repSD41 was detected in 5% of the culturable plasmid-bearing marine sediment bacterial isolates, whereas the replication origins repSD164 and repSD172 were not detected in any plasmid-bearing bacteria other than the parental isolates. Microbial community DNA extracted from samples collected in November 1995 and June 1997 and amplified by PCR yielded positive signals when they were hybridized with probes specific for repSD41 and repSD172 replication sequences. In contrast, replication sequences specific for repSD164 were not detected in the DNA extracted from marine sediment microbial communities.

摘要

从源自加利福尼亚沿海海洋沉积物的异养细菌分离物中分离出的天然质粒,通过分析其不相容性和复制特性进行了表征。此前,我们报道了海洋沉积物可培养细菌群体中的质粒与一些特征明确的不相容性和复制组的复制子探针之间缺乏DNA同源性(P. A. Sobecky、T. J. Mincer、M. C. Chang和D. R. Helinski,《应用与环境微生物学》63:888 - 895,1997年)。在本研究中,我们从不同海洋分离物中存在的一个相对较大(30 kb)和三个较小(<10 kb)的天然质粒中分离出了包含功能性复制起点的1.8至2.3 kb片段。16S rRNA序列分析表明,这四个携带质粒的海洋分离物属于变形菌门的α和γ亚类。其中三个海洋沉积物分离物与γ - 3亚类生物灿烂弧菌和费氏弧菌相关,而第四个分离物可能与沿岸玫瑰杆菌相关。质粒复制区域的序列分析揭示了临床细菌分离物中特征明确的质粒复制起点所共有的特征,这表明革兰氏阴性海洋沉积物细菌的内源质粒中可能存在类似的质粒复制起始机制。除了在大肠杆菌DH5α和C2110中复制外,指定为repSD41、repSD121、repSD164和repSD172的质粒复制子的宿主范围扩展到了无色杆菌属、假单胞菌属、沙雷氏菌属和弧菌属的海洋物种。虽然repSD41和repSD121的序列分析揭示了这两个片段之间有相当长的同源性区域,但这些区域彼此之间不显示不相容性。在5%的可培养携带质粒的海洋沉积物细菌分离物中检测到了复制起点repSD41,而在除亲本分离物之外的任何携带质粒的细菌中均未检测到复制起点repSD164和repSD172。从1995年11月和1997年6月采集的样本中提取并通过PCR扩增的微生物群落DNA,当与repSD41和repSD172复制序列特异性探针杂交时产生了阳性信号。相比之下,在从海洋沉积物微生物群落中提取的DNA中未检测到repSD164特异性的复制序列。

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