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首页> 外文期刊>Planta: An International Journal of Plant Biology >Temperature-dependent changes of cell shape during heterophyllous leaf formation in Ludwigia arcuata (Onagraceae)
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Temperature-dependent changes of cell shape during heterophyllous leaf formation in Ludwigia arcuata (Onagraceae)

机译:温度变化依赖的细胞形状在异叶叶形成过程中的路德维希弓形(Onagraceae)

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Although elongation of epidermal cells in submerged leaves is thought to be a common feature of heterophyllous aquatic plants, such elongation has not been observed in Ludwigia arcuata Walt. (Onagraceae). In this study we found that reduced culture temperature induced the elongation of epidermal cells of submerged leaves in L. arcuata. Since such submerged leaves also showed a reduction in the number of epidermal cells aligned across the leaf transverse axis, these data indicate that heterophyllous leaf formation in L. arcuata is partially temperature sensitive, i.e., the elongation of epidermal cells was temperature sensitive while the reduction in the number of epidermal cells did not show such temperature sensitivity. To clarify the mechanisms that cause such temperature sensitivity, we examined the effects of ethylene, which induced the formation of submerged-type leaves on aerial shoots at the relatively high culture-temperature of 28 degrees C. At 23 degrees C, ethylene induced both cell elongation and reduction in the number of epidermal cells across the leaf transverse axis, while cell elongation was not observed at 28 degrees C. Moreover, both submergence and ethylene treatment induced a change in the arrangement of cortical microtubules (MTs) in epidermal cells of developing leaves at 23 degrees C. Such changes in the arrangement of MTs was not induced at 28 degrees C. Factors involved in the temperature-sensitive response to ethylene would be critical for temperature-sensitive heterophyllous leaf formation in L. arcuata.
机译:尽管淹没叶片中表皮细胞的伸长被认为是异质水生植物的共同特征,但在Ludwigia arcuata Walt中尚未观察到这种伸长。 (柳科)。在这项研究中,我们发现降低的培养温度诱导了弓形假单胞菌淹没叶片表皮细胞的伸长。由于此类淹没的叶片还显示出沿叶片横轴排列的表皮细胞数量减少,因此这些数据表明,弓形假单胞菌的异叶叶片形成部分对温度敏感,即表皮细胞的伸长对温度敏感,而减少表皮细胞的数量没有显示出这种温度敏感性。为了阐明引起这种温度敏感性的机制,我们研究了乙烯的影响,乙烯在较高的培养温度(28摄氏度)下诱导了空中芽上淹没型叶子的形成。在23摄氏度下,乙烯诱导了两个细胞叶横轴上表皮细胞的伸长和减少,而在28摄氏度下未观察到细胞伸长。此外,浸没和乙烯处理均引起发育中表皮细胞皮层微管(MTs)排列的变化叶片在23摄氏度时未发生这种变化。在28摄氏度时未诱导出MT的排列方式。对乙烯的温度敏感响应所涉及的因素对于弧菌中温度敏感异叶的形成至关重要。

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