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Plants on the move: Towards common mechanisms governing mechanically-induced plant movements

机译:移动中的植物:寻求控制机械引起的植物运动的通用机制

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摘要

One may think that plants seem relatively immobile. Nevertheless, plants not only produce movement but these movements can be quite rapid such as the closing traps of carnivorous plants, the folding up of leaflets in some Leguminosae species and the movement of floral organs in order to increase cross pollination. We focus this review on thigmotropic and thigmonastic movements, both in vegetative and reproductive parts of higher plants. Ultrastructural studies revealed that most thigmotropic and thigmonastic movements are caused by differentially changing cell turgor within a given tissue. Auxin has emerged as a key molecule that modulates proton extrusion and thus causing changes in cell turgor by enhancing the activity of H+ATPase in cell membranes. Finding conserved molecules and/or operational molecular modules among diverse types of movements would help us to find universal mechanisms controlling movements in plants and thus improve our understanding about the evolution of such phenomena.
机译:可能有人认为植物似乎相对静止。然而,植物不仅会产生运动,而且这些运动可能会非常迅速,例如食肉植物的关闭陷阱,某些豆科植物的小叶折叠以及花器官的运动,以增加异花授粉。我们将本综述的重点放在高等植物的营养和生殖部分的触变运动和触动运动。超微结构研究表明,大多数触变性和触变性运动是由给定组织内不同的细胞膨大引起的。生长素已经成为调节质子挤出并因此通过增强细胞膜中H + ATPase活性而引起细胞膨胀变化的关键分子。在各种类型的运动中寻找保守分子和/或操作性分子模块将有助于我们找到控制植物运动的通用机制,从而增进我们对这种现象演变的理解。

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