首页> 外文期刊>Plant Biotechnology Journal >Large-scale resource development in Gossypium hirsutum L. by 454 sequencing of genic-enriched libraries from six diverse genotypes.
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Large-scale resource development in Gossypium hirsutum L. by 454 sequencing of genic-enriched libraries from six diverse genotypes.

机译:六种多种基因型中富含遗传文库的大规模资源开发。

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摘要

The sequence information has been proved to be an essential genomic resource in case of crop plants for their genetic improvement and better utilization by humans. To dissect the Gossypium hirsutum genome for large-scale development of genomic resources, we adopted hypomethylated restriction-based genomic enrichment strategy to sequence six diverse genotypes. Approximately 5.2-Gb data (more than 18.36 million reads) was generated which, after assembly, represents nearly 1.27-Gb genomic sequences. We predicted a total of 93 363 gene models (21 399 full length) and identified 35 923 gene models which were validated against already sequenced plant genomes. A total of 1093 transcription factor-encoding genes, 3135 promoter sequences and 78 miRNA (including 17 newly identified in Gossypium) were predicted. We identified significant no. of molecular markers including 47 093 novel simple sequence repeats and 66 364 novel single nucleotide polymorphisms. In addition, we developed NBRI-Comprehensive Cotton Genomics database, a web resource to provide access of cotton-related genomic resources developed at NBRI. This study contributes considerable amount of genomic resources and suggests a potential role of genic-enriched sequencing in genomic resource development for orphan crop plants.
机译:在作物植物的遗传改善和人类更好地利用时,序列信息已被证明是一种基本基因组资源。解剖Gossypium hirsutum基因组以进行基因组资源的大规模发展,我们采用了六甲基化的限制性基因组富集策略来序列六种不同的基因型。在组装后产生约5.2-GB的数据(超过1836万读数),代表近1.27GB基因组序列。我们预测了总共9363个基因模型(21 399全长),并确定了35 923种基因模型,用于针对已经测序的植物基因组进行验证。预测了总共1093个转录因子编码基因,3135升级序列和78 miRNA(包括在Gossymium中新发现的17个miRNA)。我们确定了重要的号码。分子标记包括47 093新的简单序列重复和6664个新的单核苷酸多态性。此外,我们开发了NBRI-综合棉质基因组学数据库,网络资源提供了在NBRI开发的棉花相关基因组资源的访问。该研究有助于大量的基因组资源,并表明富集的富集测序在孤儿作物植物基因组资源开发中的潜在作用。

著录项

  • 来源
    《Plant Biotechnology Journal》 |2013年第8期|共11页
  • 作者单位

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

    Plant Molecular Biology Laboratory CSIR-National Botanical Research Institute Lucknow India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    cotton; SNP; SSR; SRA053686; HMPR; Genome;

    机译:棉;SNP;SSR;SSR;SRA053686;HMPR;基因组;
  • 入库时间 2022-08-20 06:18:52

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