首页> 外文期刊>American Journal of Plant Sciences >Mesophyll-Driven Blade Expansion in Pisum sativum var. argenteum Leaves
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Mesophyll-Driven Blade Expansion in Pisum sativum var. argenteum Leaves

机译:豌豆(Pisum sativum var)的叶肉驱动叶片扩张。银叶

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The growth rate of any multilayered plant organ is limited by the cell layer with the least extensibility. The dicot leaf blade has two epidermal layers covering the mesophyll layers, in which the vascular network is embedded. There has been a lingering uncertainty about which layer limits the rate of blade expansion in dicot leaves. The current study made use of leaf strips cut from the argenteum variety of Pisum sativum L., in which the epidermal layers can easily be removed with minimal damage. After this procedure, the mesophyll showed accelerated growth in short-term and long-term experiments and light and darkness. Extension of both layers is strongly promoted by acidic solutions. Isolated mesophyll layers expand in response to light. This effect depends on turgor pressure, photosynthesis, and the plasma membrane H+-ATPase. The data allow concluding that expanding leaf blades share with axial stem organs a similar arrangement of tissue tension: an expanding core tissue pushing against a restrictive epidermal envelope. In complete leaves, partial removal of the epidermis from only one side of the blade causes a strong epinastic or hyponastic response. Removal of matching epidermis strips from both sides of complete blades causes the exposed mesophyll strip to elongate in excess of the neighboring tissue: it buckles.
机译:任何多层植物器官的生长速率都受到细胞层的限制,其可扩展性最低。双子叶植物叶片有两个覆盖叶肉层的表皮层,其中嵌入了血管网络。关于哪一层限制双子叶植物叶片的叶片膨胀速率一直存在不确定性。当前的研究利用了从阿根廷豌豆(Pisum sativum L.)切下的叶条,其中表皮层可以很容易地去除,而损害最小。在此过程之后,叶肉在短期和长期实验以及明暗环境中均显示出加速的生长。酸性溶液强烈促进两层的延伸。孤立的叶肉层响应光而膨胀。这种作用取决于膨胀压力,光合作用和质膜H + -ATPase。数据可以得出结论,扩张的叶片与轴向干器官共享相似的组织张力安排:扩张的核心组织推向限制性表皮包膜。在完整的叶子中,仅从叶片的一侧除去表皮会引起强烈的上鼻或鼻下反应。从完整刀片的两侧去除匹配的表皮带会导致裸露的叶肉带伸长到超过邻近组织:它会弯曲。

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