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Hierarchical chirality transfer in the growth of Towel Gourd tendrils

机译:毛巾葫芦卷须生长中的层次手性转移

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摘要

Chirality plays a significant role in the physical properties and biological functions of many biological materials, e.g., climbing tendrils and twisted leaves, which exhibit chiral growth. However, the mechanisms underlying the chiral growth of biological materials remain unclear. In this paper, we investigate how the Towel Gourd tendrils achieve their chiral growth. Our experiments reveal that the tendrils have a hierarchy of chirality, which transfers from the lower levels to the higher. The change in the helical angle of cellulose fibrils at the subcellular level induces an intrinsic torsion of tendrils, leading to the formation of the helical morphology of tendril filaments. A chirality transfer model is presented to elucidate the chiral growth of tendrils. This present study may help understand various chiral phenomena observed in biological materials. It also suggests that chirality transfer can be utilized in the development of hierarchically chiral materials having unique properties.
机译:手性在许多表现出手性生长的生物材料,例如攀爬的卷须和扭曲的叶片的物理性质和生物学功能中起着重要作用。然而,生物材料的手性生长的潜在机制仍不清楚。在本文中,我们研究了毛巾葫芦卷须如何实现手性生长。我们的实验表明,卷须具有手性等级,从较低的水平转移到较高的水平。纤维素原纤维在亚细胞水平的螺旋角的变化引起卷须的固有扭曲,导致卷须丝的螺旋形态的形成。提出了手性转移模型来阐明卷须的手性生长。本研究可能有助于理解在生物材料中观察到的各种手性现象。这也表明手性转移可用于具有独特性质的分层手性材料的开发中。

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