Department of Plant Sciences, Weizmann Institute of Science, Rehovot, Israel.
PLoS Genet. 2009 Dec;5(12):e1000777. doi: 10.1371/journal.pgen.1000777. Epub 2009 Dec 18.
The cuticle covering plants' aerial surfaces is a unique structure that plays a key role in organ development and protection against diverse stress conditions. A detailed analysis of the tomato colorless-peel y mutant was carried out in the framework of studying the outer surface of reproductive organs. The y mutant peel lacks the yellow flavonoid pigment naringenin chalcone, which has been suggested to influence the characteristics and function of the cuticular layer. Large-scale metabolic and transcript profiling revealed broad effects on both primary and secondary metabolism, related mostly to the biosynthesis of phenylpropanoids, particularly flavonoids. These were not restricted to the fruit or to a specific stage of its development and indicated that the y mutant phenotype is due to a mutation in a regulatory gene. Indeed, expression analyses specified three R2R3-MYB-type transcription factors that were significantly down-regulated in the y mutant fruit peel. One of these, SlMYB12, was mapped to the genomic region on tomato chromosome 1 previously shown to harbor the y mutation. Identification of an additional mutant allele that co-segregates with the colorless-peel trait, specific down-regulation of SlMYB12 and rescue of the y phenotype by overexpression of SlMYB12 on the mutant background, confirmed that a lesion in this regulator underlies the y phenotype. Hence, this work provides novel insight to the study of fleshy fruit cuticular structure and paves the way for the elucidation of the regulatory network that controls flavonoid accumulation in tomato fruit cuticle.
植物气生表面的角质层是一种独特的结构,在器官发育和抵御各种胁迫条件方面起着关键作用。在研究生殖器官外表面的框架内,对番茄无色果皮 y 突变体进行了详细分析。y 突变体果皮缺乏黄色类黄酮色素柚皮素查尔酮,据推测,该色素会影响角质层的特性和功能。大规模代谢和转录谱分析显示对初生和次生代谢都有广泛的影响,主要与苯丙烷类生物合成有关,特别是类黄酮。这些不仅限于果实,也不限于其发育的特定阶段,表明 y 突变体表型是由于调控基因发生突变。事实上,表达分析指定了三个 R2R3-MYB 型转录因子,它们在 y 突变体果皮中显著下调。其中一个,SlMYB12,被映射到番茄染色体 1 上的基因组区域,该区域先前显示含有 y 突变。鉴定出与无色果皮特征共分离的另一个突变等位基因,SlMYB12 的特异性下调,以及在突变背景下过表达 SlMYB12 对 y 表型的挽救,证实了该调节剂的损伤是 y 表型的基础。因此,这项工作为肉质果实角质层结构的研究提供了新的见解,并为阐明控制番茄果实角质层中类黄酮积累的调控网络铺平了道路。