Chao Jinquan, Yang Shuguang, Chen Yueyi, Tian Wei-Min
Ministry of Agriculture Key Laboratory of Biology and Genetic Resources of Rubber Tree and State Key Laboratory Breeding Base of Cultivation and Physiology for Tropical Crops, Rubber Research Institute, Chinese Academy of Tropical Agricultural Sciences, Danzhou, China.
Front Plant Sci. 2017 Nov 7;8:1904. doi: 10.3389/fpls.2017.01904. eCollection 2017.
Latex exploitation enhances latex regeneration in rubber trees. The latex exploitation-caused latex flow lasts from 10 min to a few hours, which is convenient for exploring the transcript profiling of latex metabolism-related genes at the different stages of latex flow. In the present study, the expression pattern of 62 latex metabolism-related genes involved in water transportation, carbohydrate metabolism, natural rubber biosynthesis, hormone signaling, ROS generation and scavenging, and latex coagulum across three stages of latex flow between rubber tree clones CATAS7-33-97 and CATAS8-79 were comparatively analyzed by quantitative real-time PCR. The two clones show differences in latex regeneration and have a different duration of latex flow. The results showed that the expression levels of 38 genes were significantly higher in CATAS8-79 latex than in CATAS7-33-97 during latex regeneration, while 45 genes had a notably higher expression level in CATAS8-79 latex during latex flow. Together with the activation of the MEP pathway and jasmonate pathway in CATAS8-79 latex, should contribute to the high latex regeneration ability. The up-regulation of ethylene signaling and and the down-regulation of latex coagulation-related genes in CATAS8-79 latex might contribute to its longer latex flow duration. This study provides some cues for revealing the regulation of latex metabolism in rubber trees.
割胶促进橡胶树胶乳再生。割胶引起的胶乳流动持续10分钟至数小时,这便于探究胶乳流动不同阶段与胶乳代谢相关基因的转录谱。在本研究中,通过定量实时PCR比较分析了橡胶树无性系CATAS7 - 33 - 97和CATAS8 - 79在胶乳流动三个阶段中涉及水分运输、碳水化合物代谢、天然橡胶生物合成、激素信号传导、活性氧生成与清除以及胶乳凝固的62个胶乳代谢相关基因的表达模式。这两个无性系在胶乳再生方面存在差异,且胶乳流动持续时间不同。结果表明,在胶乳再生期间,38个基因在CATAS8 - 79胶乳中的表达水平显著高于CATAS7 - 33 - 97,而在胶乳流动期间,45个基因在CATAS8 - 79胶乳中的表达水平明显更高。结合CATAS8 - 79胶乳中MEP途径和茉莉酸途径的激活,应有助于其较高的胶乳再生能力。CATAS8 - 79胶乳中乙烯信号传导及其他相关基因的上调以及胶乳凝固相关基因的下调可能有助于其更长时间的胶乳流动持续时间。本研究为揭示橡胶树胶乳代谢的调控提供了一些线索。