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随机剪切的黏粒文库作为一种新的基因组工具用于加速水稻(日本晴亚种)基因组序列的完全完成:间隙特异性黏粒克隆的测序揭示了基因组新的常染色质部分。

Random sheared fosmid library as a new genomic tool to accelerate complete finishing of rice (Oryza sativa spp. Nipponbare) genome sequence: sequencing of gap-specific fosmid clones uncovers new euchromatic portions of the genome.

作者信息

Ammiraju Jetty S S, Yu Yeisoo, Luo Meizhong, Kudrna Dave, Kim HyeRan, Goicoechea Jose L, Katayose Yuichi, Matsumoto Takashi, Wu Jianzhong, Sasaki Takuji, Wing Rod A

机构信息

Department of Plant Sciences and BIO5 Institute, Arizona Genomics Institute, The University of Arizona, Tucson, AZ 85721, USA.

出版信息

Theor Appl Genet. 2005 Nov;111(8):1596-607. doi: 10.1007/s00122-005-0091-3. Epub 2005 Nov 10.

DOI:10.1007/s00122-005-0091-3
PMID:16200416
Abstract

The International Rice Genome Sequencing Project has recently announced the high-quality finished sequence that covers nearly 95% of the japonica rice genome representing 370 Mbp. Nevertheless, the current physical map of japonica rice contains 62 physical gaps corresponding to approximately 5% of the genome, that have not been identified/represented in the comprehensive array of publicly available BAC, PAC and other genomic library resources. Without finishing these gaps, it is impossible to identify the complete complement of genes encoded by rice genome and will also leave us ignorant of some 5% of the genome and its unknown functions. In this article, we report the construction and characterization of a tenfold redundant, 40 kbp insert fosmid library generated by random mechanical shearing. We demonstrated its utility in refining the physical map of rice by identifying and in silico mapping 22 gap-specific fosmid clones with particular emphasis on chromosomes 1, 2, 6, 7, 8, 9 and 10. Further sequencing of 12 of the gap-specific fosmid clones uncovered unique rice genome sequence that was not previously reported in the finished IRGSP sequence and emphasizes the need to complete finishing of the rice genome.

摘要

国际水稻基因组测序计划最近宣布了高质量的完成序列,该序列覆盖了近95%的粳稻基因组,约为370兆碱基对。然而,目前粳稻的物理图谱包含62个物理间隙,约占基因组的5%,这些间隙在公开可用的细菌人工染色体(BAC)、噬菌体人工染色体(PAC)和其他基因组文库资源的综合阵列中尚未被识别/呈现。如果不填补这些间隙,就不可能确定水稻基因组编码的完整基因互补情况,也会使我们对约5%的基因组及其未知功能一无所知。在本文中,我们报告了通过随机机械剪切产生的一个十倍冗余、插入片段大小为40千碱基对的fosmid文库的构建和特征分析。我们通过鉴定和电子定位22个间隙特异性fosmid克隆,证明了其在完善水稻物理图谱方面的效用,特别着重于第1、2、6、7、8、9和10号染色体。对其中12个间隙特异性fosmid克隆的进一步测序发现了在国际水稻基因组测序计划(IRGSP)完成序列中先前未报道的独特水稻基因组序列,并强调了完成水稻基因组测序的必要性。

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本文引用的文献

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The first insight into the Taxus genome via fosmid library construction and end sequencing.通过构建 fosmid 文库和末端测序首次洞察紫杉基因组。
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