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Morphogenesis of Simple and Compound Leaves: A Critical Review

机译:简单和复合叶片的形态发生:批判性审查。

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The leaves of seed plants evolved from a primitive shoot system and are generated as determinate dorsiventral appendages at the flanks of radial indeterminate shoots. The remarkable variation of leaves has remained a constant source of fascination, and their developmental versatility has provided an advantageous platform to study genetic regulation of subtle, and sometimes transient, morphological changes. Here, we describe how eudicot plants recruited conserved shoot meristematic factors to regulate growth of the basic simple leaf blade and how subsets of these factors are subsequently re-employed to promote and maintain further organogenic potential. By comparing tractable genetic programs of species with different leaf types and evaluating the pros and cons of phylogenetic experimental procedures, we suggest that simple and compound leaves, and, by the same token, leaflets and serrations, are regulated by distinct ontogenetic programs. Finally, florigen, in its capacity as a general growth regulator, is presented as a new upper-tier systemic modulator in the patterning of compound leaves.
机译:种子植物的叶子是从原始的芽系统演化而来的,并在径向不确定芽的侧面作为确定的背腹附属物生成。叶子的显着变化一直是人们不断着迷的原因,它们的发育多功能性为研究微妙的,有时是短暂的形态变化的遗传调控提供了一个有利的平台。在这里,我们描述了双子叶植物如何招募保守的枝条分生因子来调节基本简单叶片的生长,以及随后如何重新利用这些因子的子集来促进和维持进一步的器官发生潜能。通过比较具有不同叶型的物种的易处理的遗传程序并评估系统发育实验程序的利弊,我们建议,简单的叶和复合叶,以及具有相同特征的叶和锯齿,受不同的个体发育程序调控。最后,在复合叶的图案形成中,作为一般生长调节剂的弗罗里根作为一种新型的上层系统调节剂被提出。

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