Putranto Riza-Arief, Herlinawati Eva, Rio Maryannick, Leclercq Julie, Piyatrakul Piyanuch, Gohet Eric, Sanier Christine, Oktavia Fetrina, Pirrello Julien, Montoro Pascal
Centre International de Recherche Agronomique pour le Développement, Unité Mixte de Recherche Amélioration Génétique & Adaptation des Plantes Méditerranéennes et Tropicales, F-34398 Montpellier, France.
Indonesian Research Institute for Biotechnology and Bioindustry, Bogor 16128, Indonesia.
Int J Mol Sci. 2015 Aug 4;16(8):17885-908. doi: 10.3390/ijms160817885.
Ethephon, an ethylene releaser, is used to stimulate latex production in Hevea brasiliensis. Ethylene induces many functions in latex cells including the production of reactive oxygen species (ROS). The accumulation of ROS is responsible for the coagulation of rubber particles in latex cells, resulting in the partial or complete stoppage of latex flow. This study set out to assess biochemical and histological changes as well as changes in gene expression in latex and phloem tissues from trees grown under various harvesting systems. The Tapping Panel Dryness (TPD) susceptibility of Hevea clones was found to be related to some biochemical parameters, such as low sucrose and high inorganic phosphorus contents. A high tapping frequency and ethephon stimulation induced early TPD occurrence in a high latex metabolism clone and late occurrence in a low latex metabolism clone. TPD-affected trees had smaller number of laticifer vessels compared to healthy trees, suggesting a modification of cambial activity. The differential transcript abundance was observed for twenty-seven candidate genes related to TPD occurrence in latex and phloem tissues for ROS-scavenging, ethylene biosynthesis and signalling genes. The predicted function for some Ethylene Response Factor genes suggested that these candidate genes should play an important role in regulating susceptibility to TPD.
乙烯利是一种乙烯释放剂,用于刺激巴西橡胶树的乳胶生产。乙烯在乳胶细胞中诱导多种功能,包括活性氧(ROS)的产生。ROS的积累导致乳胶细胞中橡胶颗粒的凝聚,从而导致乳胶流动部分或完全停止。本研究旨在评估不同采割制度下生长的树木的乳胶和韧皮部组织中的生化和组织学变化以及基因表达的变化。发现橡胶树无性系的割面干涸(TPD)易感性与一些生化参数有关,如低蔗糖含量和高无机磷含量。高采割频率和乙烯利刺激在高乳胶代谢无性系中诱导TPD早期发生,在低乳胶代谢无性系中诱导TPD晚期发生。与健康树木相比,受TPD影响的树木的乳汁管数量较少,这表明形成层活动发生了改变。在乳胶和韧皮部组织中,观察到与TPD发生相关的27个候选基因在ROS清除、乙烯生物合成和信号基因方面的转录丰度存在差异。一些乙烯反应因子基因的预测功能表明,这些候选基因在调节对TPD的易感性方面应发挥重要作用。