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Hydro-Responsive Curling of the Resurrection Plant Selaginella lepidophylla

机译:复活植物小叶卷柏的水响应性卷曲

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摘要

The spirally arranged stems of the spikemoss Selaginella lepidophylla, an ancient resurrection plant, compactly curl into a nest-ball shape upon dehydration. Due to its spiral phyllotaxy, older outer stems on the plant interlace and envelope the younger inner stems forming the plant centre. Stem curling is a morphological mechanism that limits photoinhibitory and thermal damages the plant might experience in arid environments. Here, we investigate the distinct conformational changes of outer and inner stems of S. lepidophylla triggered by dehydration. Outer stems bend into circular rings in a relatively short period of desiccation, whereas inner stems curl slowly into spirals due to hydro-actuated strain gradient along their length. This arrangement eases both the tight packing of the plant during desiccation and its fast opening upon rehydration. The insights gained from this work shed light on the hydro-responsive movements in plants and might contribute to the development of deployable structures with remarkable shape transformations in response to environmental stimuli.
机译:古老的复活植物穗状卷柏(Selaginella lepidophylla)的螺旋状排列的茎在脱水后紧密卷曲成巢球状。由于其螺旋叶序,植物上较老的外部茎交织并包裹着较年轻的内部茎,形成了植物中心。茎卷曲是一种形态学机制,可限制植物在干旱环境中可能遭受的光抑制和热损伤。在这里,我们调查了脱水引起的S. lepidophylla外部和内部茎的独特构象变化。在相对较短的干燥时间内,外茎弯曲成圆形环,而内茎由于受水力驱动的沿其长度方向的应变梯度而缓慢卷曲成螺旋状。这种布置既减轻了干燥期间植物的紧密包装,又减轻了其在补液后的快速打开。从这项工作中获得的见解揭示了植物中的水响应运动,并可能有助于响应环境刺激而具有显着形状变化的可展开结构的发展。

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