Research and Development Division, Kagome Co., Ltd., 17 Nishitomiyama, Nasushiobara, 329-2762 Japan.
Plant Cell Physiol. 2013 Sep;54(9):1535-48. doi: 10.1093/pcp/pct100. Epub 2013 Aug 2.
Tomato (Solanum lycopersicum) fruit cuticle has been extensively studied due to its effect on the biochemical and physiological properties of the fruit. To date, several tomato mutants defective in proper cuticle formation have been identified. To gain insight into tomato cuticle formation, we investigated one such mutant, sticky peel/light green (pe lg). We verified the responsible gene by fine mapping and obtained the same conclusion as a previous report. To elucidate the pleiotropic effects of cuticle deficiency caused by the cd2 mutation, CD2 suppression lines were constructed. As found in the pe lg mutant, the suppression lines showed enhanced water permeability and aberrant leaf and fruit cuticles. Water use efficiency of the suppression line was lower than that of the wild type. However, photosynthetic ability was not affected in the suppression line. Since these phenotypes are related to altered deposition of wax and cutin, other lipidic metabolites might be changed, too. To confirm this hypothesis, we conducted metabolite profiling. The metabolite profiling revealed that not only lipid but also sugar, flavonoid and glycoalkaloid metabolites in fruit were changed in the cd2 mutant. These results indicate that CD2 is essential both for normal cutin and wax deposition and for proper accumulation of specific metabolites in tomato fruit.
番茄(Solanum lycopersicum)果皮的研究由来已久,因为其对果实生化和生理学特性有影响。迄今为止,已鉴定出几种番茄果皮形成缺陷的突变体。为了深入了解番茄果皮的形成,我们研究了其中一个突变体,粘性果皮/淡绿色果皮(pe lg)。我们通过精细定位验证了相关基因,得出的结论与之前的报道一致。为了阐明 cd2 突变导致的果皮缺陷的多效性影响,构建了 CD2 抑制系。与 pe lg 突变体一样,抑制系表现出增强的水分通透性和异常的叶片和果皮。抑制系的水分利用效率低于野生型。然而,抑制系的光合能力没有受到影响。由于这些表型与蜡质和角质沉积的改变有关,其他脂类代谢物也可能发生变化。为了证实这一假设,我们进行了代谢物分析。代谢物分析表明,不仅在果实的蜡质和角质沉积中,而且在糖、类黄酮和茄碱代谢物中,cd2 突变体也发生了变化。这些结果表明,CD2 对番茄果皮的正常角质和蜡质沉积以及特定代谢物的正确积累都是必需的。