Botanisches Institut der Universität Köln, Gyrhofstrasse 15, D-5000, Köln 41, Federal Republic of Gemany.
Planta. 1987 Jun;171(2):235-40. doi: 10.1007/BF00391099.
Uptake of glucose, 3-O-methylglucose and sucrose into beetroot protoplasts is considerably stimulated by 10(-6)M fusicoccin. This effect is decreased in the presence of 10mM Na(+) or K(+), 2 mM Mg(2+) or Ca(2+). Whereas fusicoccin causes no change in the pH-optimum of the sugar uptake (pH 5.0), the apparent Km of this uptake which obeys a biphasic kinetics is decreased by the action of fusicoccin. In the protoplast suspension, fusicoccin induces an acidification which is suppressed by uncoupling agents. Correspondingly, uncouplers as well as vanadate and diethylstilbestrol markedly inhibit the effect of fusicoccin on sugar uptake. The present data support the view that glucose uptake into beetroot protoplasts depend on the proton-pumping activity of the plasmalemma-ATPase. cis-Abscisic acid diminishes significantly the fusicoccin-enhanced glucose uptake. By using a radioimmunoassay, the internal abscisic acid content of the protoplast was estimated to be in the range of 10(-6) M. Protoplasts isolated from bundle tissue contain twice as much abscisic acid as those derived from storage parenchyma. Because protoplasts from the bundle tissue were shown to take up sugars much faster than those from the storage cells, the observed effect of abscisic acid might reflect an involvement of this hormone in the regulation of carbohydrate partitioning in the beet.
10(-6)M 的展青霉素能显著刺激甜菜原生质体摄取葡萄糖、3-O-甲基葡萄糖和蔗糖。在存在 10mM Na(+)或 K(+)、2mM Mg(2+)或 Ca(2+)的情况下,这种效应会降低。虽然展青霉素不会改变糖摄取的 pH 最佳值(pH5.0),但遵循双相动力学的这种摄取的表观 Km 却因展青霉素的作用而降低。在原生质体悬浮液中,展青霉素诱导酸化,解偶联剂可抑制这种酸化。相应地,解偶联剂以及钒酸盐和己烯雌酚显著抑制展青霉素对糖摄取的作用。目前的数据支持这样一种观点,即葡萄糖摄取到甜菜原生质体依赖于质膜-ATP 酶的质子泵活动。顺式脱落酸显著减少展青霉素增强的葡萄糖摄取。通过放射免疫测定,估计原生质体内部的脱落酸含量在 10(-6)M 的范围内。来自束组织的原生质体比来自贮藏组织的原生质体含有两倍多的脱落酸。由于来自束组织的原生质体比来自贮藏细胞的原生质体更快地摄取糖,因此观察到的脱落酸的作用可能反映了这种激素参与了甜菜中碳水化合物分配的调节。