首页> 外文期刊>Microbial & comparative genomics >Physical map and gene survey of the Ochrobactrum anthropi genome using bacterial artificial chromosome contigs.
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Physical map and gene survey of the Ochrobactrum anthropi genome using bacterial artificial chromosome contigs.

机译:使用细菌人工染色体重叠群对人骨ch骨基因组进行物理图谱和基因调查。

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摘要

Bacterial artificial chromosome (BAC) clones are effective mapping and sequencing reagents for use with a wide variety of small and large genomes. This report describes research aimed at determining the genome structure of Ochrobactrum anthropi, an opportunistic human pathogen that has potential applications in biodegradation of hazardous organic compounds. A BAC library for O. anthropi was constructed that provides a 70-fold genome coverage based on an estimated genome size of 4.8 Mb. The library contains 3072 clones with an average insert size of 112 kb. High-density colony filters of the library were made, and a physical map of the genome was constructed using a hybridization without replacement strategy. In addition, 1536 BAC clones were fingerprinted with HindIII and analyzed using IMAGE and Fingerprint Contig software (FPC, Sanger Centre, U.K.). The FPC results supported the hybridization data, resulting in the formation of two major contigs representing the two major replicons of the O. anthropi genome. After determining a reduced tiling path, 138 BAC ends from the reduced tile were sequenced for a preliminary gene survey. A search of the public databases with the BLASTX algorithm resulted in 77 strong hits (E-value < 0.001), of which 89% showed similarity to a wide variety of prokaryotic genes. These results provide a contig-based physical map to assist the cloning of important genomic regions and the potential sequencing of the O. anthropi genome.
机译:细菌人工染色体(BAC)克隆是有效的作图和测序试剂,可用于各种小型和大型基因组。该报告描述了旨在确定人牙ch的基因组结构的研究,人ch牙是一种机会性人类病原体,在有害有机化合物的生物降解中具有潜在的应用。构建了一个拟人猿的BAC库,该库基于4.8 Mb的估计基因组大小提供了70倍的基因组覆盖率。该文库包含3072个克隆,平均插入大小为112 kb。制备了该库的高密度菌落过滤器,并使用无置换策略的杂交构建了基因组的物理图谱。另外,用HindIII对1536个BAC克隆进行指纹分析,并使用IMAGE和Fingerprint Contig软件(FPC,Sanger Centre,U.K。)进行分析。 FPC结果支持了杂交数据,导致形成了两个主要重叠群,代表了人类拟南芥基因组的两个主要复制子。确定减少的分块路径后,对减少的分块中的138个BAC末端进行测序,以进行初步的基因调查。使用BLASTX算法搜索公共数据库产生了77个强匹配(E值<0.001),其中89%显示出与多种原核基因的相似性。这些结果提供了一个基于重叠群的物理图谱,以帮助克隆重要的基因组区域和人类拟南芥基因组的潜在测序。

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