Seed Biosynthesis Research Unit, Northern Regional Research Center, U.S. Department of Agriculture, Agricultural Research Service, Peoria, Illinois 61604.
Plant Physiol. 1990 Nov;94(3):996-1001. doi: 10.1104/pp.94.3.996.
(14)C-Sugar uptake and incorporation into starch by slices of developing maize (Zea mays L.) endosperm were examined and compared with sugar uptake by maize endosperm-derived suspension cultures. Rates of sucrose, fructose, and d- and l-glucose uptake by slices were similar, whereas uptake rates for these sugars differed greatly in suspension cultures. Concentration dependence of sucrose, fructose, and d-glucose uptake was biphasic (consisting of linear plus saturable components) with suspension cultures but linear with slices. These and other differences suggest that endosperm slices are freely permeable to sugars. After diffusion into the slices, sugars were metabolized and incorporated into starch. Starch synthesis, but not sugar accumulation, was greatly reduced by 2.5 millimolar p-chloromercuribenzenesulfonic acid and 0.1 millimolar carbonyl cyanide m-chlorophenylhydrazone. Starch synthesis was dependent on kernel age and incubation temperature, but not on external pH (5 through 8). Competing sugars generally did not affect the distribution of (14)C among the soluble sugars extracted from endosperm slices incubated in (14)C-sugars. Competing hexoses reduced the incorporation of (14)C into starch, but competing sucrose did not, suggesting that sucrose is not a necessary intermediate in starch biosynthesis. The bidirectional permeability of endosperm slices to sugars makes the characterization of sugar transport into endosperm slices impossible, however the model system is useful for experiments dealing with starch biosynthesis which occurs in the metabolically active tissue.
(14)C-糖摄取和整合到发展中的玉米(玉米)胚乳切片淀粉进行了检查,并与玉米胚乳衍生的悬浮培养物的糖摄取进行了比较。蔗糖、果糖和 d-和 l-葡萄糖的摄取率相似,但在悬浮培养物中的这些糖的摄取率差异很大。蔗糖、果糖和 d-葡萄糖摄取的浓度依赖性呈双相(由线性加饱和成分组成)与悬浮培养物,但线性与切片。这些和其他差异表明胚乳切片对糖具有自由通透性。糖扩散到切片后,被代谢并整合到淀粉中。淀粉合成,但不是糖积累,大大减少了 2.5 毫摩尔对氯汞苯甲酸和 0.1 毫摩尔羰基氰化物 m-氯苯腙。淀粉合成依赖于内核年龄和孵育温度,但不依赖于外部 pH 值(5 至 8)。竞争糖通常不会影响(14)C 在 14C-糖孵育的胚乳切片中提取的可溶性糖之间的分布。竞争己糖减少(14)C 掺入淀粉,但竞争蔗糖不减少,这表明蔗糖不是淀粉生物合成的必要中间产物。胚乳切片对糖的双向通透性使得对糖进入胚乳切片的运输进行特征化成为不可能,然而该模型系统对于涉及发生在代谢活跃组织中的淀粉生物合成的实验是有用的。