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窄叶羽扇豆(Lupinus angustifolius L.)的细菌人工染色体(BAC)文库。

The bacterial artificial chromosome (BAC) library of the narrow-leafed lupin (Lupinus angustifolius L.).

作者信息

Kasprzak Andrzej, Safár Jan, Janda Jaroslav, Dolezel Jaroslav, Wolko Bogdan, Naganowska Barbara

机构信息

Institute of Plant Genetics, Polish Academy of Sciences, Strzeszyńska 34, Poznań, Poland.

出版信息

Cell Mol Biol Lett. 2006;11(3):396-407. doi: 10.2478/s11658-006-0033-3.

Abstract

The narrow-leafed lupin possesses valuable traits for environment-friendly agriculture and for the production of unconventional agricultural products. Despite various genetic and environmental studies, the breeding of improved cultivars has been slow due to the limited knowledge of its genomic structure. Further advances in genomics require, among other things, the availability of a genomic DNA library with large inserts. We report here on the construction of the first DNA library cloned in a BAC (bacterial artificial chromosome) vector from diploid Lupinus angustifolius L. cv. Sonet. The high molecular weight DNA used for its preparation was isolated from interphase nuclei that were purified by flow cytometry. The library comprises 55,296 clones and is ordered in 144x384-well microtitre plates. With an average insert size of 100 kb, the library represents six haploid genome equivalents. Thanks to the purification of the nuclei by flow cytometry, contamination with chloroplast DNA and mitochondrial DNA was negligible. The availability of a BAC library opens avenues for the development of a physical contig map and positional gene cloning, as well as for the analysis of the plant's genome structure and evolution.

摘要

窄叶羽扇豆具有有利于环境友好型农业和生产非传统农产品的宝贵特性。尽管进行了各种遗传和环境研究,但由于对其基因组结构的了解有限,改良品种的培育进展缓慢。基因组学的进一步发展尤其需要一个具有大插入片段的基因组DNA文库。我们在此报告了首个从二倍体窄叶羽扇豆(Lupinus angustifolius L. cv. Sonet)构建的克隆于细菌人工染色体(BAC)载体的DNA文库。用于制备该文库的高分子量DNA是从通过流式细胞术纯化的间期核中分离出来的。该文库包含55,296个克隆,并排列在144×384孔微量滴定板中。平均插入片段大小为100 kb,该文库代表六个单倍体基因组当量。由于通过流式细胞术对细胞核进行了纯化,叶绿体DNA和线粒体DNA的污染可忽略不计。BAC文库的可用性为构建物理重叠群图谱和进行定位基因克隆,以及分析植物的基因组结构和进化开辟了道路。

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