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AgCl precipitates in isolated cuticular membranes reduce rates of cuticular transpiration

机译:AgCl在孤立的表皮膜中沉淀,降低表皮蒸腾速率

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Counter diffusion of chloride, applied as NaCl at the inner side of isolated cuticles, and silver, applied as AgNO3 at the outer side, lead to the formation of insoluble AgCl precipitates in isolated cuticles. AgCl precipitates could be visualized by light and scanning electron microscopy. The presence of AgCl precipitates in isolated cuticles was verified by energy dispersive X-ray analysis. It is argued that insoluble AgCl precipitates formed in polar pores of cuticles and as a consequence, cuticular transpiration of 13 out of 15 investigated species was significantly reduced up to three-fold. Water as a small and uncharged but polar molecule penetrates cuticles via two parallel paths: a lipophilic path, formed by lipophilic cutin and wax domains, and a aqueous pathe, formed by polar pores. Thus, permeances P (m s−1) of water, which is composed of the two quantities P Lipid and P Pore, decreased, since water transport across polar pores was affected by AgCl precipitates. Cuticles with initially high rates of cuticular transpiration were generally more sensitive towards AgCl precipitates compared to cuticles with initially low rates of transpiration. Results presented here, significantly improves the current model of the structure of the cuticular transpiration barrier, since the pronounced heterogeneity of the cuticular transport barrier, composed of lipophilic as well as polar paths of diffusion, has to be taken into account in future.
机译:氯化钠(作为NaCl)在隔离的表皮的内部反向扩散,而银(AgNO3 )在外侧的反向扩散,导致在隔离的表皮中形成不溶性AgCl沉淀。 AgCl沉淀物可以通过光和扫描电子显微镜观察。通过能量色散X射线分析证实了在分离的表皮中存在AgCl沉淀。有人认为,在表皮的极性孔中形成了不溶性的AgCl沉淀物,因此,研究的15种物种中有13种的表皮蒸腾作用显着降低了三倍。水是一种小的不带电荷的极性分子,它通过两条平行的路径穿过角质层:由亲脂性角质和蜡域形成的亲脂性路径,以及由极性孔形成的水性路径。因此,由两个量的P Lipid 和P Pore 组成的水的渗透率P(ms-1 )降低了,这是因为AgCl沉淀影响了水在极孔中的传输。 。与最初具有较低蒸腾速率的表皮相比,最初具有较高的表皮蒸腾速率的表皮通常对AgCl沉淀更为敏感。此处提出的结果显着改善了表皮蒸腾屏障结构的当前模型,因为将来必须考虑由亲脂性和极性扩散路径组成的表皮运输屏障的明显异质性。

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