Hong H, Xiao H, Yuan H, Zhai J, Huang X
Hainan Key Laboratory for Sustainable Utilization of Tropical Bioresources, College of Agriculture, Hainan University, Haikou, China.
Plant Biol (Stuttg). 2015 May;17(3):618-24. doi: 10.1111/plb.12288. Epub 2014 Dec 8.
Mechanical wounding or treatment with exogenous jasmonates (JA) induces differentiation of the laticifer in Hevea brasiliensis. JA is a key signal for latex biosynthesis and wounding response in the rubber tree. Identification of JAZ (jasmonate ZIM-domain) family of proteins that repress JA responses has facilitated rapid progress in understanding how this lipid-derived hormone controls gene expression and related physiological processes in plants. In this work, the full-length cDNAs of six JAZ genes were cloned from H. brasiliensis (termed HbJAZ). These HbJAZ have different lengths and sequence diversity, but all of them contain Jas and ZIM domains, and two of them contain an ERF-associated amphiphilic repression (EAR) motif in the N-terminal. Real-time RT-PCR analyses revealed that HbJAZ have different expression patterns and tissue specificity. Four HbJAZ were up-regulated, one was down-regulated, while two were less effected by rubber tapping treatment, suggesting that they might play distinct roles in the wounding response. A yeast two-hybrid assay revealed that HbJAZ proteins interact with each other to form homologous or heterogeneous dimer complexes, indicating that the HbJAZ proteins may expand their function through diverse JAZ-JAZ interactions. This work lays a foundation for identification of the JA signalling pathway and molecular mechanisms of latex biosynthesis in rubber trees.
机械损伤或用外源茉莉酸(JA)处理可诱导巴西橡胶树中乳管的分化。JA是橡胶树中乳胶生物合成和损伤反应的关键信号。对抑制JA反应的JAZ(茉莉酸ZIM结构域)蛋白家族的鉴定,有助于在理解这种脂质衍生激素如何控制植物基因表达和相关生理过程方面取得快速进展。在这项研究中,从巴西橡胶树中克隆了6个JAZ基因的全长cDNA(命名为HbJAZ)。这些HbJAZ具有不同的长度和序列多样性,但它们都含有Jas和ZIM结构域,其中两个在N端含有一个与ERF相关的两亲性抑制(EAR)基序。实时RT-PCR分析表明,HbJAZ具有不同的表达模式和组织特异性。4个HbJAZ上调,1个下调,而2个受割胶处理的影响较小,这表明它们可能在损伤反应中发挥不同的作用。酵母双杂交试验表明,HbJAZ蛋白相互作用形成同源或异源二聚体复合物,这表明HbJAZ蛋白可能通过不同的JAZ-JAZ相互作用扩展其功能。这项工作为鉴定橡胶树中JA信号通路和乳胶生物合成的分子机制奠定了基础。