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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Bacterial Artificial Chromosome-Based Physical Map of the Rice Genome Constructed by Restriction Fingerprint Analysis
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Bacterial Artificial Chromosome-Based Physical Map of the Rice Genome Constructed by Restriction Fingerprint Analysis

机译:基于限制性指纹图谱的水​​稻基因组细菌人工染色体物理图谱

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Genome-wide physical mapping with bacteria-based large-insert clones ( e.g. , BACs, PACs, and PBCs) promises to revolutionize genomics of large, complex genomes. To accelerate rice and other grass species genome research, we developed a genome-wide BAC-based map of the rice genome. The map consists of 298 BAC contigs and covers 419 Mb of the 430-Mb rice genome. Subsequent analysis indicated that the contigs constituting the map are accurate and reliable. Particularly important to proficiency were (1) a high-resolution, high-throughput DNA sequencing gel-based electrophoretic method for BAC fingerprinting, (2) the use of several complementary large-insert BAC libraries, and (3) computer-aided contig assembly. It has been demonstrated that the fingerprinting method is not significantly influenced by repeated sequences, genome size, and genome complexity. Use of several complementary libraries developed with different restriction enzymes minimized the “gaps” in the physical map. In contrast to previous estimates, a clonal coverage of 6.0–8.0 genome equivalents seems to be sufficient for development of a genome-wide physical map of ~95% genome coverage. This study indicates that genome-wide BAC-based physical maps can be developed quickly and economically for a variety of plant and animal species by restriction fingerprint analysis via DNA sequencing gel-based electrophoresis.
机译:使用基于细菌的大插入克隆(例如BAC,PAC和PBC)进行全基因组范围的物理作图有望彻底改变大型复杂基因组的基因组学。为了加速水稻和其他草种的基因组研究,我们开发了基于BAC的水稻基因组全基因组图谱。该图由298个BAC重叠群组成,涵盖430 Mb水稻基因组中的419 Mb。随后的分析表明,构成地图的重叠群是准确和可靠的。对于熟练程度而言特别重要的是(1)用于BAC指纹的高分辨率,高通量DNA测序凝胶电泳方法,(2)使用几个互补的大插入BAC库以及(3)计算机辅助重叠群组装。已经证明指纹方法不受重复序列,基因组大小和基因组复杂性的显着影响。使用使用不同限制酶开发的几个互补文库可将物理图谱中的“缺口”最小化。与先前的估计相反,6.0-8.0基因组当量的克隆覆盖范围似乎足以形成约95%基因组覆盖范围的全基因组物理图谱。这项研究表明,通过基于DNA测序凝胶电泳的限制性指纹分析,可以针对各种动植物快速,经济地开发出基于全基因组BAC的物理图谱。

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