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首页> 外文期刊>Annals of Botany >A mathematical model of mucilage expansion in myxospermous seeds of Capsella bursa-pastoris (shepherd's purse).
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A mathematical model of mucilage expansion in myxospermous seeds of Capsella bursa-pastoris (shepherd's purse).

机译:伯氏Cap菜(Capsella bursa-pastoris)(i)的无精卵种子粘液扩展的数学模型。

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Background and Aims: Myxospermy is a term which describes the ability of a seed to produce mucilage upon hydration. The mucilage is mainly comprised of plant cell-wall polysaccharides which are deposited during development of those cells that comprise the seed coat (testa). Myxospermy is more prevalent among those plant species adapted to surviving on arid sandy soils, though its significance in determining the ecological fitness of plants is unclear. In this study, the first mathematical model of myxospermous seed mucilage expansion is presented based on seeds of the model plant species Capsella bursa-pastoris (shepherd's purse). Methods: The structures underpinning the expansion process were described using light, electron and time-lapse confocal micrographs. The data and experimental observations were used to create a mathematical model of myxospermous seed mucilage expansion based on diffusion equations. Key Results: The mucilage expansion was rapid, taking 5 s, during which the cell mucilage volume increased 75-fold. At the level of the seed, this represented a 6-fold increase in seed volume and a 2.5-fold increase in seed surface area. These increases were shown to be a function of water uptake (16 g water g-1 mucilage dry weight), and relaxation of the polymers which comprised the mucilage. In addition, the osmotic pressure of the seed mucilage, estimated by assessing the mucilage expansion of seeds hydrated in solutions of varying osmotic pressure, was -0.54 MPa (equivalent to 0.11 M or 6.6 g L-1 NaCl). Conclusions: The results showed that the mucilage may be characterized as hydrogel and seed-mucilage expansion may be modelled using the diffusion equation described. The potential of myxospermous seeds to affect the ecological services provided by soil is discussed briefly.Digital Object Identifier http://dx.doi.org/10.1093/aob/mcr296
机译:背景和目的:裸子植物是一个术语,描述了种子在水合作用时产生粘液的能力。粘液主要由植物细胞壁多糖组成,这些多糖在构成种皮(种皮)的那些细胞的发育过程中沉积。尽管在确定植物生态适应性方面的意义尚不清楚,但在适合于在干旱沙质土壤上存活的那些植物物种中,粘骨精子更为普遍。在这项研究中,提出了基于模型植物种<蒲Cap菜(Capsella bursa-pastoris )(牧羊皮)的种子的第一个数学模型。方法:使用光,电子和延时共聚焦显微照片描述支撑膨胀过程的结构。数据和实验观察结果用于基于扩散方程建立粘睾种子粘液扩展的数学模型。关键结果:黏液扩张迅速,持续5 s,在此期间细胞黏液体积增加了75倍。在种子水平上,这表示种子体积增加了6倍,种子表面积增加了2.5倍。这些增加显示为吸水量(16g水g -1 粘液干重)和构成粘液的聚合物松弛的函数。另外,通过评估在不同渗透压的溶液中水合的种子的黏液膨胀来估算的种子黏液的渗透压为-0.54 MPa(相当于0.11 M或6.6 g L -1 NaCl )。结论:结果表明,该粘液可以表征为水凝胶,并且可以使用所描述的扩散方程对种子粘液的膨胀进行建模。简要讨论了豆荚种子影响土壤提供的生态服务的潜力。数字对象标识符http://dx.doi.org/10.1093/aob/mcr296

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