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Cellular basis of developmental plasticity observed in heterophyllous leaf formation of Ludwigia arcuata (Onagraceae)

机译:Ludwigia arcuata(Onagraceae)异叶叶片形成中观察到的发育可塑性的细胞基础

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When heterophyllous plants of Ludwigia arcuata Walt. (Onagraceae) were transferred from aerial condition to submergence, young developing leaves were matured into leaves with intermediate shape between aerial-type and submerged-type, showing spatulate shape (spoon-shaped). This change was also induced by the exposure of plants to ethylene. On the other hand, when the plants were transferred from submergence to aerial conditions, young developing leaves were matured into intermediate-type leaves with elliptic shape (spearhead shape). Anatomical analysis revealed that the formation of spatulate leaf was caused by the reduction of the number of epidermal cells aligned in the leaf transverse direction in the basal region of the leaf while the tip regions remained as before and did not respond to this treatment. During development, the ethylene-induced spatulate leaves showed that three types of alterations in epidermal cell division were involved in this process. Changes in the distribution of cell divisions in leaf lamina were detected by the first day of ethylene exposure, and changes in the orientation of cell division planes were detected by the second day. However, changes in the number of cells aligned in the leaf transverse direction were not detected by this time. Three days after ethylene exposure, frequency of cell divisions changed, and by the time changes of cell numbers aligned in the leaf transverse direction were observed. Thus, the formation of intermediate-type leaves in L. arcuata was ascribed to the alterations of cell division patterns which was induced by ethylene.
机译:Ludwigia arcuata Walt的杂种植物。柳叶菜科(Onagraceae)从气生状态转变为淹没状态,年轻的发育中的叶片成熟成在气生型和淹没型之间处于中间形状的叶片,呈扇形(勺形)。这种变化也是由植物暴露于乙烯引起的。另一方面,当植物从淹没转移到空气条件下时,正在发育的幼叶成熟为椭圆形(矛头形)的中间型叶片。解剖学分析表明,形成叶状叶的原因是叶基部沿叶横向排列的表皮细胞数量减少,而叶尖区域依旧,对此处理无反应。在发育过程中,乙烯诱导的spa叶片表明表皮细胞分裂的三种类型的变化参与了该过程。乙烯暴露的第一天就检测到了叶片中细胞分裂分布的变化,第二天就检测到了细胞分裂面的方向变化。但是,此时未检测到沿叶片横向排列的细胞数的变化。暴露于乙烯的三天后,细胞分裂的频率发生了变化,并且随着时间的推移,观察到了沿叶片横向排列的细胞数的变化。因此,弓形假单胞菌中间型叶片的形成归因于乙烯诱导的细胞分裂模式的改变。

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