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首页> 外文期刊>Tree Genetics & Genomes >Transcriptome dynamics of cork oak (Quercus suber) somatic embryogenesis reveals active gene players in transcription regulation and phytohormone homeostasis of embryo development
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Transcriptome dynamics of cork oak (Quercus suber) somatic embryogenesis reveals active gene players in transcription regulation and phytohormone homeostasis of embryo development

机译:软木橡木(栎)体细胞胚胎发生的转录组动力学揭示了胚胎发育的转录调控和植物激素的活性基因球员

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摘要

Cork oak (Quercus suber L.) is one of the most important Mediterranean forest tree species. The last decades have been marked by a decline in this species. Implementation of breeding programs is fundamental to revert this trend. Somatic embryogenesis is the system of choice for clonal propagation, constituting a valuable tool for embryo production and improved genotype testing. In this study, the cork oak transcriptome during somatic embryogenesis was characterized in four stages of development to identify relevant genes in the process and to understand the molecular and biochemical events occurring in each specific stage. A total 66,693 candidate coding regions were predicted from the generated de novo transcriptome assembly. Differential gene expression analysis identified 11,507 genes distributed in 30 clusters with distinct gene expression patterns and enriched in various biological process GO terms. Results show 1159 differentially expressed genes coding for transcription regulators, namely transcription factors (76%) with important roles in embryogenesis, like orthologous of AINTEGUMENTA-like, PLETHORA, CYTOKININ RESPONSE FACTOR, GATA transcription factors, and AUXIN RESPONSE FACTORs genes. Results also show 250 differentially expressed phytohormone-related genes involved in important aspects of embryogenesis as tissue specification, differentiation, and embryogenesis competence. Finally, we identified a group of genes with functions in cellular protection and abiotic stress tolerance coding for LATE EMBRYOGENESIS ABUNDANT proteins. Cork oak embryogenesis transcriptome characterization represents a tool for future biotechnological applications. Our results provide a molecular insight into embryo development, establishing a basis for further research towards improvement of somatic embryogenesis in cork oak.
机译:软木橡木(栎属Suber L.)是最重要的地中海林木树种之一。过去几十年来说,这一物种的下降标志着。养殖计划的实施是恢复这一趋势的基础。体细胞胚胎发生是克隆繁殖的选择系统,构成胚胎产生的有价值的工具和改进的基因型测试。在这项研究中,在体细胞胚胎发生过程中的软木橡木转录组的特征在于识别过程中的相关基因的四个阶段,并了解每个特定阶段发生的分子和生化事件。从生成的DE Novo转录组合组件预测了总共66,693个候选编码区。差异基因表达分析鉴定了11,507个基因分布在30种簇中,具有不同的基因表达模式,并富集各种生物过程GO术语。结果显示1159型差异表达的基因编码转录调节剂,即转录因子(76%),具有胚胎发生的重要作用,如丙素,血红蛋白,细胞蛋白响应因子,GATA转录因子和生长素响应因子基因。结果还显示了250种差异表达的植物激素相关基因,涉及胚胎发生的重要方面作为组织规范,分化和胚胎发生能力。最后,我们确定了一组具有细胞保护和非生物胁迫耐受性的功能的基因,用于晚期胚胎发生丰富的蛋白质。软木橡木胚胎发生转录组特征代表了未来生物技术应用的工具。我们的研究结果提供了对胚胎发育的分子洞察力,为进一步研究软木橡木中细胞胚胎发生的进一步研究。

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  • 来源
    《Tree Genetics & Genomes》 |2019年第4期|52.1-52.20|共20页
  • 作者单位

    IPBeja Ctr Biotecnol Agr & Agroalimentar Alentejo CEBAL Rua Pedro Soares P-7801908 Beja Portugal|Univ Lisbon Linking Landscape Environm Agr & Food Inst Super Agron P-1349017 Lisbon Portugal;

    IPBeja Ctr Biotecnol Agr & Agroalimentar Alentejo CEBAL Rua Pedro Soares P-7801908 Beja Portugal|Univ Evora ICAAM Evora Portugal;

    IPBeja Ctr Biotecnol Agr & Agroalimentar Alentejo CEBAL Rua Pedro Soares P-7801908 Beja Portugal;

    IPBeja Ctr Biotecnol Agr & Agroalimentar Alentejo CEBAL Rua Pedro Soares P-7801908 Beja Portugal|Univ Evora ICAAM Evora Portugal;

    Univ Lisbon Linking Landscape Environm Agr & Food Inst Super Agron P-1349017 Lisbon Portugal;

    IPBeja Ctr Biotecnol Agr & Agroalimentar Alentejo CEBAL Rua Pedro Soares P-7801908 Beja Portugal|Wellcome Sanger Inst Wellcome Genome Campus Cambridge CB10 1SA England;

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

    Quercus suber; Somatic embryogenesis; Transcriptomics; Transcription factor; Hormone; Plant biotechnology;

    机译:Quercus suber;体细胞胚胎发生;转录组织;转录因子;激素;植物生物技术;

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