Redgwell Robert J, Curti Delphine, Rogers John, Nicolas Pierre, Fischer Monica
Nestlé Research Center, Nestec Ltd., Vers-chez-les-Blanc, P.O. Box 44, 1000, Lausanne 26, Switzerland.
Planta. 2003 Jun;217(2):316-26. doi: 10.1007/s00425-003-1003-x. Epub 2003 Mar 4.
Endosperm was isolated from Arabica Caturra coffee beans 11, 15, 21, 26, 31 and 37 weeks after flowering, and the chemical composition and relative solubility of its component polysaccharides determined at each growth stage. Chemical analysis of the total mannan content of the cell wall material was done after solubilisation of galactomannans by alkaline extraction of the cell wall material followed by enzymatic digestion of the alkali-insoluble residue with a mixture of endo-mannanse and endo-glucanase. Eleven weeks after flowering, galactomannans accounted for approximately 10% of the polysaccharides but were highly substituted, with galactose/mannose ratios between 1:2 and 1:7. As the bean matured, galactomannan became the predominant polysaccharide, until 31 weeks after flowering it accounted for approximately 50% of the polysaccharides. However, it was less substituted, possessing galactose/mannose ratios between 1:7 and 1:40. Early in bean growth, up to 50% of the cell wall polysaccharides were extractable but as the galactomannan content of the bean increased there was a reduction in the extractability of all polysaccharides. The decrease in the galactose/mannose ratio of the galactomannans commenced between 21 and 26 weeks after flowering and was in synchrony with a rise in the concentration of free galactose in the beans. The results indicated that the degree of substitution of the galactomannans in coffee beans is developmentally regulated and may result, in part, from the modification of a primary synthetic product by the action of an alpha-galactosidase.
在开花后11、15、21、26、31和37周从阿拉比卡卡图拉咖啡豆中分离出胚乳,并测定每个生长阶段其组成多糖的化学组成和相对溶解度。通过对细胞壁材料进行碱性提取以溶解半乳甘露聚糖,然后用内切甘露聚糖酶和内切葡聚糖酶的混合物对碱不溶性残渣进行酶消化后,对细胞壁材料的总甘露聚糖含量进行化学分析。开花后11周,半乳甘露聚糖约占多糖的10%,但取代程度很高,半乳糖/甘露糖比率在1:2至1:7之间。随着咖啡豆成熟,半乳甘露聚糖成为主要多糖,直到开花后31周,它约占多糖的50%。然而,其取代程度较低,半乳糖/甘露糖比率在1:7至1:40之间。在咖啡豆生长早期,高达50%的细胞壁多糖是可提取的,但随着咖啡豆中半乳甘露聚糖含量的增加,所有多糖得提取率都降低了。半乳甘露聚糖的半乳糖/甘露糖比率的降低始于开花后21至26周,并与咖啡豆中游离半乳糖浓度的升高同步。结果表明,咖啡豆中半乳甘露聚糖的取代程度受发育调控,部分可能是由α-半乳糖苷酶的作用对初级合成产物进行修饰所致。