The Robert H. Smith Institute of Plant Sciences and Genetics in Agriculture, Hebrew University, Rehovot 76100, Israel.
Development. 2011 Feb;138(4):695-704. doi: 10.1242/dev.056770. Epub 2011 Jan 12.
During their development, leaves progress through a highly controlled yet flexible developmental program. Transcription factors from the CIN-TCP family affect leaf shape by regulating the timing of leaf maturation. Characterization of mutants in the tomato (Solanum lycopersicum) CIN-TCP gene LANCEOLATE (LA) led us to hypothesize that a threshold LA-like activity promotes leaf differentiation. Here, we examined the relationship between LA activity, leaf maturation, and final leaf size and shape. Leaves of diverse shapes from various Solanaceae species or from different positions on the tomato plant differed in the timing of growth and maturation, and these were often associated with altered LA expression dynamics. Accordingly, genetic manipulations of LA activity in tomato altered leaf growth and maturation, leading to changes in leaf size and shape. LA expression sustained until late stages of tomato leaf development, and stage-specific overexpression of miR319, a negative regulator of CIN-TCP genes, confirmed that LA-like proteins affect leaf development through these late stages. Together, our results imply that dynamic spatial and temporal leaf maturation, coordinated by LA-like genes, enables the formation of variable leaf forms.
在发育过程中,叶片经历一个高度受控但又灵活的发育程序。来自 CIN-TCP 家族的转录因子通过调节叶片成熟的时机来影响叶片的形状。番茄(Solanum lycopersicum)CIN-TCP 基因 Lanceolate(LA)的突变体的特征使我们假设一个阈值的 LA 样活性促进叶片分化。在这里,我们研究了 LA 活性、叶片成熟和最终叶片大小和形状之间的关系。来自不同茄科物种或番茄植株不同位置的不同形状的叶片在生长和成熟的时间上存在差异,这些差异通常与 LA 表达动态的改变有关。因此,番茄中 LA 活性的遗传操作改变了叶片的生长和成熟,导致叶片大小和形状的变化。LA 的表达持续到番茄叶片发育的后期阶段,miR319 的阶段特异性过表达,miR319 是 CIN-TCP 基因的负调控因子,证实了 LA 样蛋白通过这些后期阶段影响叶片发育。总之,我们的结果表明,LA 样基因协调的动态空间和时间叶片成熟使可变叶片形态的形成成为可能。