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首页> 外文期刊>Botany >Leaflet initiation is temporally and spatially separated in simple and complex tomato (Solanum lycopersicum) leaf mutants: a developmental analysis
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Leaflet initiation is temporally and spatially separated in simple and complex tomato (Solanum lycopersicum) leaf mutants: a developmental analysis

机译:在简单和复杂的番茄(Solanum lycopersicum)叶片突变体中,小叶起始在时间和空间上是分开的:发育分析

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摘要

Formation of a compound leaf requires the involvement of multiple factors, including KNOX1 gene expression. To further characterize simple and complex tomato leaf mutants, we analyzed their morphology and development by assessing: leaf phenotypes, primary leaf morphogenesis, expression of the class I KNOX gene LeT6, and meristematic activity of the marginal blastozone. Mutants with alterations in lobing and (or) pinnation (decrease/increase) were analyzed. Primary leaflet initiation is delayed in mutants with decreased lobing. In contrast, leaflet initiation is advanced or similar to the wild type in mutants with deep lobes. Leaves with increased pinnation along the rachis require a protracted developmental program to form their final leaf morphology. Using a morphometric analysis, we show that leaf complexity can be quantified. The expression pattern of LeT6 correlates with histological analysis of meristematic activity of the marginal blastozone, suggesting that LeT6 may play a role, through some unknown mechanism, to regulate meristematic competence, not only in the marginal blastozone to regulate leaflet lobing, but along the entire length of the leaf to regulate pinnation in compound leaves.
机译:复合叶的形成需要包括KNOX1基因表达在内的多种因素的参与。为了进一步表征简单和复杂的番茄叶片突变体,我们通过评估以下内容分析了它们的形态和发育:叶片表型,初级叶片形态发生,I类KNOX基因LeT6的表达以及边缘囊泡区的分生组织活性。分析了具有裂片和(或)羽绒的变化(减少/增加)的突变体。在具有低裂片的突变体中,初级小叶的启动被延迟。相反,在具有深裂片的突变体中,小叶的启动是提前的或类似于野生型。沿着羽状叶的羽状叶增加的叶片需要延长的发育程序才能形成最终的叶片形态。使用形态计量分析,我们表明叶的复杂度可以量化。 LeT6的表达模式与边缘囊泡分生组织的组织学分析有关,这表明LeT6可能通过某种未知的机制在调节边缘分生组织的功能中发挥作用,不仅在边缘囊胚调节小叶,而且在整个肺叶叶片的长度以调节复叶中的羽状叶。

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