Department of Biological Sciences, Purdue University, Lafayette, Indiana.
Plant Physiol. 1967 Feb;42(2):174-80. doi: 10.1104/pp.42.2.174.
During sucrose uptake by the cotyledons of castor bean seedlings excised from their endosperms, small amounts of glucose and fructose accumulate in the medium. When these hexoses were supplied separately, it was found that the rate of fructose uptake exceeded that of glucose at concentrations up to 0.5 m. Sucrose uptake exceeded that of both hexoses combined, particularly at concentrations greater than 0.1 m. Only minute amounts of labeled hexoses were recovered from the cotyledons after exposure to glucose-U-(14)C or fructose-U-(14)C; sucrose contained virtually all of the (14)C in the sugar fraction. The fructose and glucose moieties of the extracted sucrose were equally labeled when glucose-U-(14)C was supplied, and the glucose moiety contained 41% of the (14)C when fructose-U-(14)C was the substrate.Several considerations led to the conclusion that by far the greater part of sucrose absorbed by the cotyledons was not hydrolyzed prior to or during uptake. These included the differential responses of hydrolysis and uptake to pH, and to Tris(hydroxymethyl) aminomethane, the absence of interference of the hexoses on sucrose absorption and particularly the demonstration that when the cotyledons were supplied with fructosyl-(14)C sucrose, 90% of the (14)C was retained in the fructose residue of sucrose in the cotyledons.
在从去胚乳的蓖麻种子切片中,子叶吸收蔗糖时,培养基中会积累少量的葡萄糖和果糖。当单独供应这些己糖时,发现果糖的吸收速率在 0.5m 以下的浓度时超过葡萄糖,而在 0.1m 以上的浓度时,蔗糖的吸收速率超过了两者的总和。暴露于葡萄糖-U-(14)C 或果糖-U-(14)C 后,从子叶中仅回收了痕量的标记己糖;糖部分几乎所有的 (14)C 都来自蔗糖。当供应葡萄糖-U-(14)C 时,提取的蔗糖中的果糖和葡萄糖部分的标记程度相等,而当果糖-U-(14)C 是底物时,葡萄糖部分含有 41%的 (14)C。有几个因素导致了这样的结论,即在子叶吸收的蔗糖中,迄今为止,绝大部分在吸收之前或期间没有被水解。这些因素包括水解和吸收对 pH 和 Tris(hydroxymethyl) aminomethane 的不同反应,己糖对蔗糖吸收没有干扰,特别是证明了当子叶被提供果糖基-(14)C 蔗糖时,90%的 (14)C 保留在子叶中蔗糖的果糖残基中。