Department of Plant Sciences, 2431 Joe Johnson Drive, University of Tennessee, Tennessee 37996, USA.
Plant Physiol Biochem. 2009 Nov-Dec;47(11-12):1017-23. doi: 10.1016/j.plaphy.2009.07.005. Epub 2009 Jul 16.
Copaifera officinalis, the diesel tree, is known for massive production of oleoresin, mainly composed of sesquiterpene hydrocarbons. In this study, composition of these sesquiterpenes and their concentrations in leaves, stems and roots of C. officinalis at two developmental stages, including the three-week old (TW) seedlings and two-year old (TY) trees, were determined. The leaves of TW seedlings and TY trees contained similar number of sesquiterpenes, which also had comparable concentrations. The stems of TW seedlings had higher concentrations of sesquiterpenes than those of TY trees. In contrast, the number of sesquiterpene species and their concentrations in the roots of TW seedlings were much lower than those in the roots of TY trees. Cluster analysis of sesquiterpenes estimated that there are at least four terpene synthase genes involved in the production of sesquiterpenes in C. officinalis. Because sesquiterpenes are highly volatile, emissions of sesquiterpenes from healthy and wounded TW seedlings were examined using headspace analysis. Whereas very low emission of sesquiterpenes was detected from undamaged plants, the physically injured seedlings emitted a large number of sesquiterpenes, the quality and the relative quantity of which were similar to those in leaves determined using organic extraction. The implications of our findings to the biosynthetic pathways leading to the production of sesquiterpenes as well as their biological roles in C. officinalis are discussed.
巴西橡胶树,又称柴油树,以大量生产富含倍半萜烯的树胶而闻名。在这项研究中,我们测定了两种发育阶段(三星期大的幼苗和两年生的树木)的巴西橡胶树叶子、茎和根中这些倍半萜烯的组成及其浓度。三星期大的幼苗和两年生的树木的叶子含有相似数量的倍半萜烯,且浓度也相当。三星期大的幼苗的茎比两年生的树木具有更高的倍半萜烯浓度。相比之下,三星期大的幼苗的根中倍半萜烯的种类和浓度要远远低于两年生的树木。倍半萜烯的聚类分析估计,巴西橡胶树中至少有四个参与倍半萜烯生物合成的萜烯合酶基因。由于倍半萜烯具有很强的挥发性,我们使用顶空分析法检测了健康和受伤的三星期大幼苗释放的倍半萜烯。尽管未受损的植物释放的倍半萜烯含量非常低,但物理损伤的幼苗会释放大量的倍半萜烯,其质量和相对数量与使用有机溶剂提取法从叶子中确定的倍半萜烯相似。我们的研究结果对倍半萜烯生物合成途径及其在巴西橡胶树中的生物学作用具有重要意义。