首页> 外文期刊>Journal of Plant Physiology >MYC genes with differential responses to tapping, mechanical wounding, ethrel and methyl jasmonate in laticifers of rubber tree (Hevea brasiliensis Muell. Arg.).
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MYC genes with differential responses to tapping, mechanical wounding, ethrel and methyl jasmonate in laticifers of rubber tree (Hevea brasiliensis Muell. Arg.).

机译:MYC 基因对橡胶树( brasiliensis Muell。Arg。)的枝条tap窃,机械性伤害,乙醛和茉莉酸甲酯具有不同的响应。

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摘要

MYC2 transcription factor is a key component of the core module COI1-JAZ-MYC2 of jasmonate signaling in Arabidopsis, but the MYC transcription factor (s) associated with jasmonate signaling in jasmonate-responsive laticifer cells remains to be identified. Two full-length cDNAs, designated HblMYC1 and HblMYC2, were isolated from laticifer cells in Hevea brasiliensis by the method of RACE. HblMYC1 contained 1431 bp ORF encoding a putative protein of 476 amino acids while HblMYC2 contained 1428 bp ORF encoding a putative protein of 475 amino acids. Bioinformatic analysis showed that the putative proteins, HblMYC1 and HblMYC2, possessed a bHLH domain and were most related to the MYC2 among the selected 27 MYC members with identified functions in Arabidopsis. In addition to the presence of cis-regulatory elements involving jasmonate responsiveness in the promoter regions of HblMYC1 and HblMYC2, the abscisic acid-, salicylic acid- and gibberellin-responsive elements were found in the promoter region of HblMYC1. Transcripts of HblMYC1 and HblMYC2 were most abundant in latex, relatively low in male flowers and nearly undetected in bark tissues and roots by real-time RT-PCR analysis. Regular tapping, mechanical wounding, and ethrel remarkably up-regulated HblMYC1 expression, but had little effect on the expression of HblMYC2 in laticifer cells. Successive tapping, however, significantly down-regulated the expression of HblMYC2 while up-regulating the expression of HblMYC1. The HblMYC2 expression took a mutual ebb and flow relationship with the HblMYC1 expression upon treatment with methyl jasmonate. Characterization of HblMYC1 and HblMYC2 will contribute to the understanding of jasmonate signaling in laticifiers, a kind of specialized tissue for natural rubber biosynthesis in Hevea brasiliensis.
机译:MYC2转录因子是拟南芥茉莉信号传导的核心模块COI1-JAZ-MYC2的关键组成部分,但与茉莉酸敏感的迟钝性茉莉花细胞中茉莉信号传导相关的MYC转录因子仍有待研究确定。用RACE方法从巴西橡胶树中的乳杆菌细胞中分离出两个全长cDNA,分别命名为HblMYC1和HblMYC2。 HblMYC1 包含1431 bp的ORF,编码一个476个氨基酸的推定蛋白,而 HblMYC2 包含1428 bp的ORF,编码一个475个氨基酸的推定蛋白。生物信息学分析表明,推定的蛋白HblMYC1和HblMYC2具有bHLH结构域,并且与在拟南芥中鉴定出功能的27个MYC成员中与MYC2最为相关。除了在 HblMYC1 和 HblMYC2 的启动子区域中存在涉及茉莉酸酯响应性的 cis 调控元件外,脱落酸,水杨酸在 HblMYC1 的启动子区域发现了-和赤霉素响应元件。实时RT-PCR分析显示, HblMYC1 和 HblMYC2 的转录本在乳胶中含量最高,在雄花中相对较低,并且在树皮组织和根中几乎未被检测到。规律的敲击,机械伤和乙醛显着上调了 HblMYC1 的表达,但对 但是,连续敲击会显着下调 HblMYC2 的表达,同时上调 HblMYC1 的表达。茉莉酸甲酯处理后, HblMYC2 表达与 HblMYC1 表达具有相互的起伏关系。 HblMYC1 和 HblMYC2 的表征将有助于理解胶化剂中的茉莉酸酯信号,胶化剂是巴西橡胶树中天然橡胶生物合成的一种专门组织。

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