首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Nitric Oxide-Induced Dormancy Removal of Apple Embryos Is Linked to Alterations in Expression of Genes Encoding ABA and JA Biosynthetic or Transduction Pathways and RNA Nitration
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Nitric Oxide-Induced Dormancy Removal of Apple Embryos Is Linked to Alterations in Expression of Genes Encoding ABA and JA Biosynthetic or Transduction Pathways and RNA Nitration

机译:一氧化氮诱导的苹果胚休眠去除与编码ABA和JA生物合成或转导途径以及RNA硝化的基因表达变化有关

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摘要

Short-term (3 h) treatment of embryos isolated from dormant apple (Malus domestica Borkh.) seeds with NO donors stimulates their transition from dormancy to germination. Seed dormancy is maintained by ABA, while germination is controlled mainly by gibberellins (GAs) and jasmonic acid (JA). NO-induced dormancy removal correlates with low ABA concentration in embryonic axes and reduced embryo sensitivity to ABA. We analyzed the expression of genes encoding key enzymes of ABA degradation (CYP707A1, CYP707A2), biosynthesis (NCED3, NCED9), and elements of the ABA transduction pathway (PYL1, PYL2, RCAR1, RCAR3, PP2CA, ABI1, ABI2, SNRK2, ABI5, AREB3, ABF). A role for JA in the regulation of germination led us to investigate the expression of genes encoding enzymes of JA biosynthesis (AOS1, JMT, JAR1) and the transduction pathway (COI1, MYC2, JAZ3, JAZ12). The expression profiles of the genes were estimated in embryonic axes isolated from dormant or NO fumigated apple embryos. The analyzed genes were differentially regulated during dormancy alleviation, the main modifications in the transcription level were detected for NCED3, NCED9, CYP707A2, RCAR1, ABF, AOS1, JMT, JAR1 and JAZ3. A regulatory role of NO in the removal of seed dormancy is associated with the stimulation of expression of genes related to ABA degradation, down-regulation of genes responsible for ABA synthesis, an increase of expression level of genes engaged in JA synthesis and modification of the expression of genes engaged in signaling pathways of the hormones. To confirm a signaling role of NO during dormancy breakage, an increased RNA nitration level in embryonic axes was demonstrated.
机译:短期(3小时)用NO供体处理从休眠苹果(Malus domestica Borkh。)种子中分离的胚会刺激其从休眠状态转变为发芽状态。 ABA保持种子休眠,而发芽主要由赤霉素(GAs)和茉莉酸(JA)控制。 NO诱导的休眠去除与胚轴中ABA浓度低和胚胎对ABA的敏感性降低相关。我们分析了编码ABA降解关键酶(CYP707A1,CYP707A2),生物合成(NCED3,NCED9)的基因的表达以及ABA转导途径的元素(PYL1,PYL2,RCAR1,RCAR3,PP2CA,ABI1,ABI2,SNRK2,ABI5 ,AREB3,ABF)。 JA在发芽调控中的作用促使我们研究编码JA生物合成酶的基因的表达( AOS1 JMT JAR1 )和转导途径( COI1 MYC2 JAZ3 JAZ12 )。在从休眠或NO熏蒸的苹果胚胎中分离的胚轴中估计了基因的表达谱。分析的基因在缓解休眠过程中受到差异调节,检测到 NCED3 NCED9 CYP707A2 的转录水平的主要修饰RCAR1 ABF AOS1 JMT JAR1 JAZ3 。 NO在消除种子休眠中的调节作用与刺激与ABA降解相关的基因表达,下调负责ABA合成的基因的表达,参与JA合成的基因的表达水平的提高以及对ABA的修饰有关参与激素信号通路的基因的表达。为了确认NO在休眠破坏过程中的信号传导作用,在胚胎轴中增加了RNA硝化水平。

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