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胡芦巴子叶对 D-甘露糖的摄取。

D-Mannose uptake by fenugreek cotyledons.

机构信息

Institute of General Botany, University of Athens, Panepistimiopolis, 15784, Athens, Greece.

出版信息

Planta. 1989 Oct;179(3):403-8. doi: 10.1007/BF00391087.

Abstract

The uptake of D-mannose was studied in detached cotyledons of germinated fenugreek (Trigonella foenum-graecum L.) seeds. Uptake kinetics indicate the involvement of two components, a saturable component operating at low concentrations and a diffusion-like one at high concentrations. Treatment of cotyledons with carbonyl-cyanide-m-chlorophenylhydrazone and p-chloromercuribenzenesulfonic acid reduced D-mannose-uptake rates by about 35% and 35-65%, respectively. No difference in the uptake rates was observed in the presence of D-galactose or 3-O-methylglucose. D-Mannose uptake was not very much affected by pH. The optimum pH for its uptake was 6.5 while at pH 8.5 its uptake was reduced by 22%. D-Mannose addition to fenugreek cotyledons did not induce alkalinization of the medium. Furthermore, low turgor, which enhances proton/sugar cotransport, decreased D-mannose uptake while the uptake of 3-O-methylglucose was increased. The rate of D-mannose uptake by fenugreek cotyledons depended on the hours of imbibition. These changes of uptake were not followed by analogous changes in the turgor pressure (Ψp) of fenugreek cotyledons, which remained fairly constant. Results indicate that D-mannose is partially taken up by a carrier which has high specificity for D-mannose, but not by a H(+)-sugar cotransport system. It is further concluded that the carrier plays an important role in switching on and off the uptake capacity of fenugreek cotyledons during seedling development.

摘要

发芽胡芦巴(Trigonella foenum-graecum L.)种子分离子叶对 D-甘露糖的摄取进行了研究。摄取动力学表明涉及两个成分,一个在低浓度下饱和的成分和一个在高浓度下扩散样的成分。用羰基氰化物 m-氯苯腙和对氯汞苯磺酸处理子叶,分别降低了 D-甘露糖摄取率约 35%和 35-65%。在 D-半乳糖或 3-O-甲基葡萄糖存在下,摄取速率没有差异。D-甘露糖摄取对 pH 值的影响不大。其摄取的最佳 pH 值为 6.5,而在 pH 值为 8.5 时,其摄取量减少了 22%。D-甘露糖添加到胡芦巴子叶中不会诱导介质的碱化。此外,降低膨压(Ψp),这会增强质子/糖共转运,会降低 D-甘露糖的摄取,而 3-O-甲基葡萄糖的摄取会增加。胡芦巴子叶对 D-甘露糖的摄取速率取决于吸胀时间。这些摄取的变化并没有伴随着胡芦巴子叶膨压(Ψp)的类似变化,后者保持相当恒定。结果表明,D-甘露糖部分通过具有对 D-甘露糖高度特异性的载体摄取,但不是通过 H(+) -糖共转运系统摄取。进一步的结论是,载体在幼苗发育过程中对胡芦巴子叶摄取能力的开启和关闭起着重要作用。

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