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Mapping of cell wall aromatic moieties and their effect on hygroscopic movement in the awns of stork's bill

机译:细胞壁芳香部分的映射及其对鹳账单AWNS中吸湿运动的影响

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摘要

The awn in stork's bill (Erodium gruinum) seed dispersal units coils as it dries. This hygroscopic movement promotes the dissemination and sowing of the seeds. Here we aimed to understand the movement rate, by correlating water dynamics within the awn to the spatial variation in the chemical composition of the awn's cell walls. We followed the hygroscopic movement visually and measured the kinetics of water adsorption-desorption in segments along the awn. We integrated data from white light, fluorescence, and Raman microscopy, and Matrix Assisted Laser Desorption Ionization imaging to characterize the micro chemical makeup of the awn. We hydrolyzed awns and followed the change in the cell walls' composition and the effect on the movement. We found that the coil's top segment is more sensitive to humidity changes than the coil's base. At the top part of the coil, we found high concentration of modified lignin. In comparison, the base part of the awn contained lower concentration of mostly unmodified lignin. Ferulic acid concentration increased along the awn, apparently cross-linking hemicellulose and strengthening cell-to-cell adhesion. We propose that the high concentration of modified lignin at the coil's top increased the hydrophobicity of the cell walls, allowed faster water molecules dynamics; thus inducing fast reaction to ambient humidity. Strong cell-to-cell adhesion in this region created a durable tissue required for the awn's repeated movement that is induced by the diurnal humidity cycles.
机译:鹳喙(Erodium gruinum)种子分散装置中的芒在干燥时盘绕。这种吸湿运动促进了种子的传播和播种。在这里,我们的目的是通过将芒内的水动力学与芒细胞壁化学成分的空间变化相关联来了解移动速率。我们目测吸湿运动,并测量沿芒节段的水吸附-解吸动力学。我们整合了白光、荧光和拉曼显微镜以及基质辅助激光解吸电离成像的数据,以表征芒的微观化学组成。我们水解芒,观察细胞壁组成的变化以及对运动的影响。我们发现线圈的顶部比底部对湿度变化更敏感。在线圈的顶部,我们发现高浓度的改性木质素。相比之下,芒的基部含有较低浓度的未改性木质素。阿魏酸浓度沿芒增加,明显交联半纤维素并加强细胞间粘附。我们认为,线圈顶部高浓度的改性木质素增加了细胞壁的疏水性,允许更快的水分子动力学;从而对环境湿度产生快速反应。这一区域的细胞间粘附力很强,为芒的重复运动创造了一种持久的组织,这种运动是由白天的湿度周期诱导的。

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