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菊苣根中果聚糖在生长、储存和促成栽培期间的代谢

The metabolism of fructans in roots of Cichorium intybus during growth, storage and forcing.

作者信息

VAN DEN Ende Wim, Mintiens Annemieke, Speleers Hilde, Onuoha Amabilis A, VAN Laere André

机构信息

Laboratory for Developmental Biology, Botany Institute, Kardinaal Mercierlaan 92, B 3001 Heverlee, Belgium.

出版信息

New Phytol. 1996 Apr;132(4):555-563. doi: 10.1111/j.1469-8137.1996.tb01874.x.

Abstract

During the 1993 growing season samples from field-grown roots of chicory (Cicborium intybus L. var. folinsum ev. Flash) were analysed by ion-exchange HPLC (Dionex). We measured the concentrations (μmol g f. wt) of glucose, frurtose, sucrose, 1-kestosc and 1,1 nystose. The concentrations of the higher fructans were relative (units g f. wt). The data showed a significant increase in the concentration of fructans with a high degree of polymerization (DP) during July, August und September and a decrease of the glucose concentration. The Concentrations of sucrose, fructose and oligomeric fructans remained roughly constant over the same period. However, in early October, important changes occurred over a very short period. These changes included: (1) a significant increase in fructose concentration; (2) an increase in the concentration of fructans with a low DP; (3) a decrease in fructans with a high DP; (4) an appearance of alternative peaks (probably representing fructans without terminal glucose); and (5) an increase in sucrose concentration. These changes were not affected by a short-day treatment starting on 6 September. Forcing of the roots for endive production was accompanied by further breakdown, mainly of the larger fructans. Activity of SST (sucrose: sucrose fructosyl transferase) decreased slowly throughout the growing season lo essentially disappear by October. Neutral invertase activity increased more gradually. SST activity decreased very rapidly during cold storage and forcing.

摘要

在1993年生长季,对田间种植的菊苣(Cicborium intybus L. var. folinsum ev. Flash)根系样本进行了离子交换高效液相色谱(Dionex)分析。我们测定了葡萄糖、果糖、蔗糖、1-蔗果三糖和1,1-蔗果四糖的浓度(μmol/g鲜重)。较高果聚糖的浓度为相对值(单位为g鲜重)。数据显示,在7月、8月和9月期间,聚合度(DP)较高的果聚糖浓度显著增加,而葡萄糖浓度下降。同期,蔗糖、果糖和低聚果聚糖的浓度大致保持恒定。然而,在10月初,在很短的时间内发生了重要变化。这些变化包括:(1)果糖浓度显著增加;(2)低DP果聚糖浓度增加;(3)高DP果聚糖浓度下降;(4)出现替代峰(可能代表没有末端葡萄糖的果聚糖);(5)蔗糖浓度增加。这些变化不受9月6日开始的短日照处理的影响。用于生产菊苣的根的催芽伴随着进一步的分解,主要是较大果聚糖的分解。在整个生长季中,蔗糖:蔗糖果糖基转移酶(SST)的活性缓慢下降,到10月基本消失。中性转化酶活性增加得较为缓慢。在冷藏和催芽期间,SST活性迅速下降。

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