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首页> 外文期刊>Journal of Genetics >Annotation and BAC/PAC localization of nonredundant ESTs from drought-stressed seedlings of anindica rice
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Annotation and BAC/PAC localization of nonredundant ESTs from drought-stressed seedlings of anindica rice

机译:干旱胁迫下印度an稻幼苗非冗余EST的注释和BAC / PAC定位

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摘要

To decipher the genes associated with drought stress response and to identify novel genes in rice, we utilized 1540 high-quality expressed sequence tags (ESTs) for functional annotation and mapping to rice genomic sequences. These ESTs were generated earlier by 3−end single-pass sequencing of 2000 cDNA clones from normalized cDNA libraries constructed from drought-stressed seedlings of anindica rice. A rice UniGene set of 1025 transcripts was constructed from this collection through the BLASTN algorithm. Putative functions of 559 nonredundant ESTs were identified by BLAST similarity search against public databases. Putative functions were assigned at a stringency E value of 10-6 in BLASTN and BLASTX algorithms. To understand the gene structure and function further, we have utilized the publicly available finished and unfinished rice BAC/PAC (BAC, bacterial artificial chromosome; PAC, P1 artificial chromosome) sequences for similarity search using the BLASTN algorithm. Further, 603 nonredundant ESTs have been mapped to BAC/PAC clones. BAC clones were assigned by a homology of above 95% identity along 90% of EST sequence length in the aligned region. In all, 700 ESTs showed rice EST hits in GenBank. Of the 325 novel ESTs, 128 were localized to BAC clones. In addition, 127 ESTs with identified putative functions but with no homology in IRGSP (International Rice Genome Sequencing Program) BAC/PAC sequences were mapped to the Chinese WGS (whole genome shotgun contigs) draft sequence of the rice genome. Functional annotation uncovered about a hundred candidate ESTs associated with abiotic stress in rice andArabidopsis that were previously reported based on microarray analysis and other studies. This study is a major effort in identifying genes associated with drought stress response and will serve as a resource to rice geneticists and molecular biologists.
机译:为了破译与干旱胁迫响应相关的基因并鉴定水稻中的新基因,我们利用1540个高质量表达序列标签(EST)进行功能注释和定位到水稻基因组序列。这些EST是通过对2000年cDNA克隆的3端单遍测序的结果而产生的,这些克隆来自于干旱胁迫下的拟南芥水稻构建的归一化cDNA文库。通过BLASTN算法从该集合中构建了水稻UniGene 1025转录本集。通过针对公共数据库的BLAST相似性搜索,确定了559个非冗余EST的推定功能。在BLASTN和BLASTX算法中,将推定函数的严格性E值指定为10-6 。为了进一步了解基因结构和功能,我们使用了公开可用的已完成和未完成的水稻BAC / PAC(BAC,细菌人工染色体; PAC,P1人工染色体)序列,使用BLASTN算法进行相似性搜索。此外,已经将603个非冗余EST映射到BAC / PAC克隆。在比对区域中,沿着90%的EST序列长度,以95%以上的同源性分配BAC克隆。总共有700个ESTs在GenBank中显示出水稻EST命中率。在325个新的EST中,有128个位于BAC克隆中。此外,在水稻基因组的中国WGS(全基因组shot弹枪重叠群)草案序列中,对127个已确定推定功能但在IRGSP(国际水稻基因组测序计划)BAC / PAC序列中没有同源性的EST进行了定位。功能注释揭示了约100个与水稻和拟南芥中非生物胁迫相关的EST,这些是先前基于微阵列分析和其他研究报告的。这项研究是鉴定与干旱胁迫反应相关的基因的主要工作,并将作为水稻遗传学家和分子生物学家的资源。

著录项

  • 来源
    《Journal of Genetics》 |2002年第1期|25-44|共20页
  • 作者单位

    Plant Molecular Genetics and Functional Genomics Laboratory Department of Plant Sciences School of Life Sciences University of Hyderabad;

    Plant Molecular Genetics and Functional Genomics Laboratory Department of Plant Sciences School of Life Sciences University of Hyderabad;

    Plant Molecular Genetics and Functional Genomics Laboratory Department of Plant Sciences School of Life Sciences University of Hyderabad;

    Plant Molecular Genetics and Functional Genomics Laboratory Department of Plant Sciences School of Life Sciences University of Hyderabad;

    Plant Molecular Genetics and Functional Genomics Laboratory Department of Plant Sciences School of Life Sciences University of Hyderabad;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    ESTs; annotation; Oryza sativa; indica rice; cDNA libraries; rice genome; drought tolerance;

    机译:ESTs;注释;水稻;ind稻;cDNA文库;水稻基因组;耐旱性;

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