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Identification of Wheat Inflorescence Development-Related Genes Using a Comparative Transcriptomics Approach

机译:使用比较转录组学方法鉴定小麦花序发育相关基因

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摘要

Inflorescence represents the highly specialized plant tissue producing the grains. Although key genes regulating flower initiation and development are conserved, the mechanism regulating fertility is still not well explained. To identify genes and gene network underlying inflorescence morphology and fertility of bread wheat, expressed sequence tags (ESTs) from different tissues were analyzed using a comparative transcriptomics approach. Based on statistical comparison of EST frequencies of individualgenes in EST pools representing different tissues and verification with RT-PCR and RNA-seq data, 170 genes of 59 gene sets predominantly expressed in the inflorescence were obtained. Nearly one-third of the gene sets displayed differentiated expressionprofiles in terms of their subgenome orthologs. The identified genes, most of which were predominantly expressed in anthers, encode proteins involved in wheat floral identity determination, anther and pollen development, pollen-pistil interaction, and others. Particularly, 25 annotated gene sets are associated with pollen wall formation, of which 18 encode enzymes or proteins participating in lipid metabolic pathway, including fatty acid w-hydroxylation, alkane and fatty alcohol biosynthesis, and glycerophospholipid metabolism. We showed that the comparative transcriptomics approach was effective in identifying genes for reproductive development and found that lipid metabolism was particularly active in wheat anthers.
机译:花序代表生产谷物的高度专业植物组织。虽然调节花火和发展的关键基因是节省的,但调节生育的机制仍未得到很好的解释。为了鉴定基因和基因网络潜在的花序和面包小麦的生育,使用比较转录组学方法分析来自不同组织的表达序列标签(EST)。基于代表不同组织的EST池EST频率的统计比较和使用RT-PCR和RNA-SEQ数据的验证,获得了在花序中主要表达的59个基因组的170基因。近三分之一的基因组在其亚血管组中显示出差异化的表达预备。鉴定的基因,大多数主要在花药中表达,编码蛋白质参与小麦花卉身份测定,花粉和花粉发育,花粉雌蕊相互作用等。特别地,25个注释的基因组与花粉壁形成有关,其中18个编码酶或参与脂质代谢途径的蛋白质,包括脂肪酸W-羟基化,烷烃和脂肪醇生物合成,以及甘油磷脂代谢。我们表明,比较转录组织方法有效地鉴定生殖发育的基因,发现脂质代谢在小麦花药中特别活跃。

著录项

  • 来源
    《International Journal of Genomics》 |2018年第1期|共13页
  • 作者单位

    The Applied Plant Genomics Laboratory of Crop Genomics and Bioinformatics Centre Nanjing Agricultural University Jiangsu 210095 China;

    The Applied Plant Genomics Laboratory of Crop Genomics and Bioinformatics Centre Nanjing Agricultural University Jiangsu 210095 China;

    The Applied Plant Genomics Laboratory of Crop Genomics and Bioinformatics Centre Nanjing Agricultural University Jiangsu 210095 China;

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

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