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首页> 外文期刊>Marine biotechnology >Construction and characterization of large-insert genomic libraries (BAC and fosmid) from the ascidian Botryllus schlosseri and initial physical mapping of a histocompatibility locus
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Construction and characterization of large-insert genomic libraries (BAC and fosmid) from the ascidian Botryllus schlosseri and initial physical mapping of a histocompatibility locus

机译:海鞘Botryllus schlosseri的大插入基因组文库(BAC和fosmid)的构建和表征以及组织相容性基因座的初始物理图谱

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The colonial protochordate Botryllus schlosseri is genetically manipulable and represents a potential model organism for a variety of biological disciplines, including immunology, stem cell biology and development. This article presents the construction and characterization of both BAC and fosmid genomic libraries of the 725-Mbp B. schlosseri genome. The BAC library currently consists of 2x genome coverage with an average insert size of 80 kb. The fosmid library is at 11x genome coverage with an average insert of 40 kb. B. schlosseri is a small organism containing a large number of compounds that hinder DNA purification. Thus a number of protocols had to be modified in order to make purified, high molecular weight inserts for cloning, including both gel purification and insert concentration techniques. Both libraries were characterized by using them in initial physical mapping of a single histocompatibility locus, and were found to be representative and functional. These libraries are important tools for physical mapping and positional cloning in the B. schlosseri genome, and the techniques adapted to make them are suitable for use on other organisms in which high molecular weight DNA is difficult to purify.
机译:殖民地原孢子虫(Botryllus schlosseri)在遗传上是可操纵的,并且代表了包括免疫学,干细胞生物学和发育在内的各种生物学学科的潜在模式生物。本文介绍了725-Mbp schlosseri基因组的BAC和fosmid基因组文库的构建和表征。 BAC库目前由2x基因组覆盖率组成,平均插入片段大小为80 kb。 fosmid文库的基因组覆盖率为11倍,平均插入片段为40 kb。 schlosseri B. schlosseri是一种小生物,其中含有大量阻碍DNA纯化的化合物。因此,为了制备用于克隆的纯化的高分子量插入物,必须修改许多规程,包括凝胶纯化和插入物浓缩技术。这两个文库都通过在单个组织相容性基因座的初始物理作图中使用它们来表征,并被认为具有代表性和功能性。这些文库是在schlosseri基因组中进行物理作图和位置克隆的重要工具,并且适于使它们形成的技术适用于难以纯化高分子量DNA的其他生物。

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