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Biomechanical tactics of chiral growth in emergent aquatic macrophytes

机译:新兴水生植物手性生长的生物力学策略

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摘要

Through natural selection, many plant organs have evolved optimal morphologies at different length scales. However, the biomechanical strategies for different plant species to optimize their organ structures remain unclear. Here, we investigate several species of aquatic macrophytes living in the same natural environment but adopting distinctly different twisting chiral morphologies. To reveal the principle of chiral growth in these plants, we performed systematic observations and measurements of morphologies, multiscale structures, and mechanical properties of their slender emergent stalks or leaves. Theoretical modeling of pre-twisted beams in bending and buckling indicates that the different growth tactics of the plants can be strongly correlated with their biomechanical functions. It is shown that the twisting chirality of aquatic macrophytes can significantly improve their survivability against failure under both internal and external loads. The theoretical predictions for different chiral configurations are in excellent agreement with experimental measurements.
机译:通过自然选择,许多植物器官已在不同的长度尺度上进化出最佳形态。然而,用于不同植物物种以优化其器官结构的生物力学策略仍不清楚。在这里,我们调查了生活在相同自然环境中但采用明显不同的扭曲手性形态的几种水生植物。为了揭示这些植物中手性生长的原理,我们进行了系统的观察和测量,观察了它们细长的茎秆或叶片的形态,多尺度结构和机械性能。预扭转梁弯曲和屈曲的理论模型表明,植物的不同生长策略可以与其生物力学功能密切相关。结果表明,水生植物的扭曲手性可以显着提高其在内部和外部载荷下抵抗破坏的生存能力。不同手性构型的理论预测与实验测量结果非常吻合。

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