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Size selectivity of aqueous pores in stomatous cuticles of Vicia faba leaves

机译:蚕豆叶片表皮中水孔的大小选择性

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Size selectivity of aqueous pores in Vicia leaf cuticles was investigated by measuring the penetration of calcium salts into the abaxial surface of detached leaves. Molecular weights of salts ranged from 111 g mol−1 to 755 g mol−1. Penetration in light at 20°C and 100% humidity was a first order process and rate constants of penetration ranged from 0.39 h−1 (CaCl2) to 0.058 h−1 (Ca-lactobionate). Penetration was a first order process in the dark as well, but the rate constants were smaller by a factor of 1.82. Plotting logarithmatised rate constants versus anhydrous molecular weights resulted in straight lines both in light and in the dark. The slopes per hour were very similar and the average slope was −1.2×10−3 mol g−1. Hence, size selectivity was not affected by stomatal opening, and in light or darkness permeability of Vicia cuticles decreased by a factor of 2.9 when molecular weight increased from 100 g mol−1 to 500 g mol−1. Silver nitrate was preferentially precipitated as silver chloride in guard cells, glandular trichomes and at the base of trichomes. It was concluded that these precipitates mark the location of aqueous pores in Vicia leaf cuticles. The size selectivity of aqueous pores in Vicia leaf cuticles is small compared to that observed in poplar leaf cuticles, in which permeability decreased by a factor of 7–13 for the same range of molecular weights. It is also much smaller than size selectivity of the lipophilic pathway in cuticles. These findings suggest that active ingredients of pesticides, growth regulators and chemical inducers with high molecular weights penetrate leaves at higher rates when formulated as ions.
机译:通过测量钙盐渗入离体叶片的背面,研究了蚕豆叶片表皮中水孔的尺寸选择性。盐的分子量范围为111 g mol-1 至755 g mol-1 。在20°C和100%湿度下在光中的渗透是一个一级过程,渗透速率常数范围为0.39 h-1 (CaCl2 )至0.058 h-1 (Ca-乳酸盐)。穿透也是黑暗中的一阶过程,但速率常数小了1.82倍。对数化的速率常数对无水分子量的作图在明暗情况下均产生直线。每小时的斜率非常相似,平均斜率为-1.2×10-3 mol g-1 。因此,当分子量从100 g mol-1 增加到500 g mol-1 时,气孔开口的大小选择性不受气孔开口的影响,在明暗环境中,蚕豆的表皮渗透率降低了2.9倍。 。硝酸银优先以氯化银的形式沉淀在保卫细胞,腺毛状体和毛状体的底部。结论是这些沉淀物标记了蚕豆叶片表皮中水孔的位置。与在杨树叶角质层中观察到的相比,在蚕豆叶片角质层中水孔的尺寸选择性小,在相同分子量范围内,通透性降低了7-13倍。它也远小于表皮中亲脂途径的尺寸选择性。这些发现表明,当配制为离子时,具有高分子量的农药,生长调节剂和化学诱导剂的活性成分可以较高的速率渗透叶片。

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