Departamento de Química Orgánica-CIHIDECAR, Facultad de Ciencias Exactas y Naturales, Universidad de Buenos Aires, Ciudad Universitaria, 1428 Buenos Aires, Argentina.
Carbohydr Polym. 2013 Jan 30;92(1):830-41. doi: 10.1016/j.carbpol.2012.09.091. Epub 2012 Oct 8.
The cell wall polysaccharides of Regina and Sunburst cherry varieties at two developmental stages were extracted sequentially, and their changes in monosaccharide composition and functional properties were studied. The loosely-attached pectins presented a lower d-galacturonic acid/rhamnose ratio than ionically-bound pectins, as well as lower thickening effects of their respective 2% aqueous solution: the lowest Newtonian viscosity and shear rate dependence during the pseudoplastic phase. The main constituents of the cell wall matrix were covalently bound pectins (probably through diferulate cross-linkings), with long arabinan side chains at the RG-I cores. This pectin domain was also anchored into the XG-cellulose elastic network. Ripening occurred with a decrease in the proportion of HGs, water extractable GGM and xylogalacturonan, and with a concomitant increase in neutral sugars. Ripening was also associated with higher viscosities and thickening effects, and to larger distribution of molecular weights. The highest firmness and compactness of Regina cherry may be associated with its higher proportion of calcium-bound HGs localized in the middle lamellae of cell walls, as well as to some higher molar proportion of NS (Rha and Ara) in covalently bound pectins. These pectins showed significantly better hydration properties than hemicellulose and cellulose network. Chemical composition and functional properties of cell wall polymers were dependent on cherry variety and ripening stage, and helped explain the contrasting firmness of Regina and Sunburst varieties.
对 Regina 和 Sunburst 樱桃品种在两个发育阶段的细胞壁多糖进行了顺序提取,并研究了其单糖组成和功能特性的变化。松散附着的果胶比离子结合的果胶具有更低的半乳糖醛酸/鼠李糖比例,以及更低的增稠效果,其 2%水溶液的牛顿粘度和剪切率依赖性在假塑性阶段最低。细胞壁基质的主要成分是共价结合的果胶(可能通过 diferulate 交联),在 RG-I 核心处具有长阿拉伯聚糖侧链。该果胶域也锚定到 XG-纤维素弹性网络中。随着 HG、水溶性 GGM 和木半乳聚糖比例的降低,以及中性糖比例的增加,成熟度降低。成熟还与更高的粘度和增稠效果以及更大的分子量分布相关。 Regina 樱桃的最高硬度和紧实度可能与其在细胞壁中层定位的更高比例的钙结合 HG 有关,以及与共价结合的果胶中某些更高摩尔比例的 NS(鼠李糖和阿拉伯糖)有关。这些果胶的水合性能明显优于半纤维素和纤维素网络。细胞壁聚合物的化学组成和功能特性取决于樱桃品种和成熟度,有助于解释 Regina 和 Sunburst 品种之间的硬度差异。