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Bioinformatics and Expression Analysis of NAC Transcription Factor Genes in Scutellaria baicalensis

机译:黄cutNAC转录因子基因的生物信息学和表达分析

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Background: NAC, as a unique transcription factor to plants, plays important roles in multiple biological functions, such as regulation of plant growth and development, hormone levels, and responses to various kinds of stresses. However, there is a lack of research of NAC genes in Chinese herbs. Objective: The study aimed to evaluate the potential functions of NAC genes in Scutellaria baicalensis by bioinformatics and expression analysis, and provide evidence of the molecular regulation mechanism involved in flavonoid biosynthesis in S. baicalensis. Methods: The genes of NAC transcription factors in S. baicalensis were obtained from cDNA library and their functions were explored using bioinformatic methods. The NAC genes were screened from the cDNA library of S. baicalensis using BLAST comparison software. Then, the open reading frame (ORF) finder online tool was used to predict the full-length ORFs of NAC genes and their protein characteristics were explored by bioinformatic methods. The expression of NAC genes was then detected by quantitative polymerase chain reaction in different parts of S. baicalensis and different leaves treated by gibberellin GA3 treatment. Results: Six genes of NAC transcription factors were cloned, two of which had complete ORFs. NAC genes cloned in this study were mainly expressed in the flowers of S. baicalensis. The expression levels of NAC2, NAC3, NAC4, NAC5, NAC6 were increased firstly and then decreased gradually after 100 μM GA3 treatment. Meanwhile, some NACs and PAL2 in S. baicalensis showed strong correlation. Conclusion: This study suggested that NACs cloned in this study were mainly regulated the flavonoid biosynthesis in the flowers of S. baicalensis; NAC6 in S. baicalensis might be involved in the regulation of PAL2 transcription and affected the accumulation of flavonoids in the root of S. baicalensis. Our results provided a basis for further understanding the molecular regulation mechanism of flavonoid biosynthesis in S. baicalensis.
机译:背景:NAC作为植物的独特转录因子,在多种生物学功能中发挥重要作用,例如调节植物的生长和发育,激素水平以及对各种胁迫的反应。但是,中草药中的NAC基因缺乏研究。目的:本研究旨在通过生物信息学和表达分析评估黄cut中NAC基因的潜在功能,并为黄ba中黄酮类生物合成的分子调控机制提供证据。方法:从cDNA文库中获得黄baNAC转录因子的基因,并利用生物信息学方法探讨其功能。使用BLAST比较软件从黄ba的cDNA文库中筛选NAC基因。然后,使用开放阅读框(ORF)查找器在线工具预测NAC基因的全长ORF,并通过生物信息学方法探索其蛋白质特性。然后通过定量聚合酶链反应检测NAC基因在黄连不同部位和赤霉素GA3处理后的不同叶片中的表达。结果:克隆了NAC转录因子的6个基因,其中2个具有完整的ORF。本研究克隆的NAC基因主要在黄ical花中表达。 100μMGA3处理后,NAC2,NAC3,NAC4,NAC5,NAC6的表达水平先升高后降低。同时,黄ical中的一些NAC和PAL2显示出强烈的相关性。结论:本研究克隆的NACs主要调控黄ba花中黄酮的合成。黄ical中的NAC6可能参与了PAL2转录的调控,并影响了黄ical根中黄酮类化合物的积累。我们的结果为进一步了解黄ba中黄酮类生物合成的分子调控机制提供了基础。

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  • 来源
    《世界中医药杂志(英文版)》 |2018年第2期|37-42|共6页
  • 作者单位

    Department in Chinese Academy of Chinese Medical Sciences, State Key Laboratory Breeding Base of Dao?di Herbs, Chinese Academy of Chinese Medical Sciences, Beijing, China;

    Department in Chinese Academy of Chinese Medical Sciences, State Key Laboratory Breeding Base of Dao?di Herbs, Chinese Academy of Chinese Medical Sciences, Beijing, China;

    Department in Chinese Academy of Chinese Medical Sciences, State Key Laboratory Breeding Base of Dao?di Herbs, Chinese Academy of Chinese Medical Sciences, Beijing, China;

    Department in Chinese Academy of Chinese Medical Sciences, State Key Laboratory Breeding Base of Dao?di Herbs, Chinese Academy of Chinese Medical Sciences, Beijing, China;

    Department in Chinese Academy of Chinese Medical Sciences, State Key Laboratory Breeding Base of Dao?di Herbs, Chinese Academy of Chinese Medical Sciences, Beijing, China;

    Department in Chinese Academy of Chinese Medical Sciences, State Key Laboratory Breeding Base of Dao?di Herbs, Chinese Academy of Chinese Medical Sciences, Beijing, China;

  • 收录信息 中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 04:27:02
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