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Development of marker genes for jasmonic acid signaling in shoots and roots of wheat

机译:小麦芽和根中茉莉酸信号的标记基因的开发

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The jasmonic acid (JA) signaling pathway plays key roles in a diverse array of plant development, reproduction, and responses to biotic and abiotic stresses. Most of our understanding of the JA signaling pathway derives from the dicot model plant Arabidopsis thaliana, while corresponding knowledge in wheat is somewhat limited. In this study, the expression of 41 genes implicated in the JA signaling pathway has been assessed on 10 day-old bread wheat seedlings, 24 h, 48 h, and 72 h after methyl-jasmonate(MeJA) treatment using quantitative real-time PCR. The examined genes have been previously reported to be involved in JA biosynthesis and catabolism, JA perception and signaling, and pathogen defense in wheat shoots and roots. This study provides evidence to suggest that the effect of MeJA treatment is more prominent in shoots than roots of wheat seedlings, and substantial regulation of the JA pathway-dependent defense genes occurs at 72 h after MeJA treatment. Results show that the expression of 22 genes was significantly affected by MeJA treatment in wheat shoots. However, only PR1.1 and PR3 were significantly differentially expressed in wheat roots, both at 24 h post-MeJA treatment, with other genes showing large variation in their gene expressionin roots. While providing marker genes on JA signaling in wheat, future work may focus on elucidating the regulatory function of JA-modulated transcription factors, some of which have well-studied potential orthologs in Arabidopsis.
机译:茉莉酸(JA)信号传导途径在植物的各种发育,繁殖以及对生物和非生物胁迫的响应中起着关键作用。我们对JA信号转导途径的大多数了解来自双子叶植物模型植物拟南芥,而小麦的相应知识则有限。在这项研究中,使用实时定量荧光定量PCR评估了茉莉酸甲酯(MeJA)处理后24 h,48 h和72 h在10日龄面包小麦幼苗上JA信号传导途径中涉及的41个基因的表达。 。先前已报道过检查的基因参与了JA生物合成和分解代谢,JA感知和信号传导以及小麦芽和根中的病原体防御。这项研究提供了证据表明,MeJA处理在芽中的作用比小麦幼苗的根部更为突出,并且在MeJA处理后72 h对JA途径依赖性防御基因进行了实质性调节。结果表明,MeJA处理可显着影响小麦嫩芽中22个基因的表达。然而,在MeJA处理后24小时,小麦根中只有PR1.1和PR3显着差异表达,而其他基因在根中的基因表达差异很大。在提供小麦JA信号的标记基因的同时,未来的工作可能集中在阐明JA调节的转录因子的调控功能上,其中一些在拟南芥中有充分研究的潜在直向同源物。

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