The Smith Institute of Plant Sciences and Genetics in Agriculture, The Hebrew University of Jerusalem, Rehovot, 76100, Israel.
New Phytol. 2013 Jul;199(2):584-594. doi: 10.1111/nph.12254. Epub 2013 Apr 10.
The family Geraniaceae is characterized by a beak-like fruit, consisting of five seeds appended by a tapering awn. The awns exhibit coiling or bending hygroscopic movement as part of the seed dispersal strategy. Here we explain the variation in the hygroscopic reaction based on structural principles. We examined five representative species from three genera: Erodium, Geranium, and Pelargonium. Using X-ray diffraction, and electron and polarized light microscopy, we measured the cellulose microfibril angles in relation to the cell and cellulose helix axes. The behavior of separated single cells during dehydration was also examined. A bi-layered structure characterizes all the representative genera studied, with a hygroscopically contracting inner layer, and a stiff outer layer. We found that the cellulose arrangement in the inner layer is responsible for the type of awn deformation (coiling or bending). In three of the five awns examined, we identified an additional coiling outer sublayer, which adds coiling deformation to the awn. We divide the movements into three types: bending, coiling, and coiled-bending. All movement types are found in the Geranium genus. These characteristics are of importance for understanding the evolution of seed dispersal mechanisms in the Geraniaceae family.
野芝麻科的特征是具有一个喙状果实,由五个种子组成,每个种子都附有一个逐渐变细的芒。芒的卷曲或弯曲的吸湿运动是种子传播策略的一部分。在这里,我们根据结构原理解释吸湿反应的变化。我们检查了三个属的五个有代表性的物种:老鹳草属、牻牛儿苗属和天竺葵属。我们使用 X 射线衍射、电子显微镜和偏光显微镜,测量了纤维素微纤维角与细胞和纤维素螺旋轴的关系。还检查了分离的单个细胞在脱水过程中的行为。双层结构是所有研究的代表性属的特征,具有一个吸湿收缩的内层和一个坚硬的外层。我们发现内层中的纤维素排列负责芒的变形类型(卷曲或弯曲)。在检查的五个芒中的三个中,我们发现了一个额外的卷曲外层亚层,它为芒增加了卷曲变形。我们将运动分为三种类型:弯曲、卷曲和卷曲弯曲。所有运动类型都存在于牻牛儿苗属中。这些特征对于理解野芝麻科种子传播机制的进化很重要。