食品科学 ›› 2026, Vol. 47 ›› Issue (16): 1-13.doi: 10.7506/spkx1002-6630-20260127-225

• 基础研究 •    下一篇

3 种成熟期苹果质地品质、细胞壁多糖含量及果胶结构分析

陈大远,赵鲁迺克,张怀予,王聪,龙江林,覃绛雪,周军,王军节   

  1. (北方民族大学生物科学与工程学院,植物性农产品贮藏与加工重点实验室,宁夏?银川 750021)
  • 出版日期:2026-08-25 发布日期:2026-09-03
  • 基金资助:
    中央高校基本科研业务费专项(YCX24414);宁夏农业农村厅农产品冷链物流标准化示范项目(2021-187)

Texture Quality, Cell Wall Polysaccharide Content, and Pectin Nanostructure in Three Mature Apple varieties

CHEN Dayuan, ZHAO Lunaike, ZHANG Huaiyu, WANG Cong, LONG Jianglin, QIN Jiangxue, ZHOU Jun, WANG Junjie   

  1. (Key Laboratory of Storage and Processing of Plant-Based Agricultural Products, College of Biological Science and Engineering, North Minzu University, Yinchuan 750021, China)
  • Online:2026-08-25 Published:2026-09-03

摘要: 本研究以‘嘎啦’‘金矮生’和‘新红星’3 种苹果为实验材料,比较分析苹果质地品质与细胞壁多糖物质含量之间的潜在关系,并利用原子力显微镜(atomic force microscopy,AFM)研究其水溶性果胶(water-soluble pectin,WSP)、螯合性可溶性果胶(chelating-soluble pectin,CSP)和碳酸钠可溶性果胶(sodium carbonate-soluble pectin,SSP)的结构差异。结果表明:‘新红星’苹果果皮的硬度、脆度、咀嚼性、胶黏性和内聚性等质地品质和淀粉、原果胶、WSP、CSP、SSP、纤维素、半纤维素和木质素等细胞壁多糖物质含量均高于‘金矮生’苹果,‘嘎啦’苹果果肉的SSP、纤维素和半纤维素含量均高于硬度和脆度低的‘金矮生’,且果肉中原果胶与淀粉含量显著高于果皮。相关性分析表明,果皮和果肉硬度与SSP、半纤维素和纤维素等物质含量均呈显著正相关,且果皮硬度与SSP链高、链宽呈显著正相关。AFM图像显示,3 种苹果WSP、CSP和SSP的结构分别以聚集体、分支和树枝状呈现,但其结构之间存在明显的差异,其中‘嘎啦’和‘新红星’果皮WSP和CSP聚集体、果胶颗粒尺寸以及WSP链高(>375 nm)和链宽(>800 nm)频率均高于‘金矮生’;3 种苹果SSP结构整体均呈现树枝状,但‘嘎啦’果皮和果肉SSP主链周围存在较多杂乱的完整长链状结构,‘金矮生’主链周围存在短而多的毛刺状侧链,‘嘎啦’果皮具有更多的线性长链和密集的分支侧链。综上所述,细胞壁多糖物质的含量和果胶结构与质地特性有密切关系,细胞壁多糖含量高,WSP、CSP和SSP果胶长链高和链宽频率越高的苹果品种可能具有更优良的质地品质。这些结果可为苹果合理贮藏和提升加工制品的品质提供数据支持,帮助实现苹果加工品种专用化。

关键词: 苹果;质地;细胞壁多糖;果胶结构;原子力显微镜

Abstract: In this study, ‘Gala’, ‘Golden Dwarf’, and ‘Starking’ apples harvested at the mature stage were used as experimental materials to analyze the potential relationship between texture quality and cell wall polysaccharide contents. The structural differences in water-soluble pectin (WSP), chelating-soluble pectin (CSP), and sodium carbonate-soluble pectin (SSP) in the three cultivars were studied using atomic force microscopy (AFM). The results showed that the texture properties such as hardness, brittleness, chewiness, gumminess, and the contents of cell wall polysaccharides including starch, protopectin, WSP, CSP, SSP, cellulose, hemicellulose, and lignin in “Starking’ apple peel were higher than those of ‘Golden Dwarf’ apple peel. The contents of SSP, cellulose, and hemicellulose in ‘Gala’ apple pulp were higher than those in ‘Golden Dwarf’ apple pulp, which had lower hardness and brittleness, and the contents of protopectin and starch in the pulp were significantly higher than those in the peel. Correlation analysis showed that the hardness of the peel and pulp was significantly positively correlated with the contents of SSP, hemicellulose, and cellulose, and the hardness of the peel was significantly positively correlated with the chain height and width of SSP. AFM images revealed that WSP, CSP, and SSP in the three cultivars​ exhibited aggregate, branched, and dendritic structures, with significant structural differences among them. The size of WSP and CSP aggregates, pectin particle size, WSP chain height (> 375 nm), and chain width (> 800 nm) frequencies were higher in ‘Gala’ and ‘Starking’ apple peels than in ‘Golden Dwarf’ apple peel. The structure of SSP in all three cultivars was dendritic, while many disordered, intact long-chain structures surrounded the SSP major chain in ‘Gala’ apple peel and pulp. In contrast, the structure of SSP in ‘Golden Dwarf’ apple peel and pulp exhibited numerous short spike-like side chains around the major chain, and the structure of SSP in ‘Gala’ apple pulp contained more linear long chains and dense branched side chains. In summary, the content of cell wall polysaccharides and the structure of pectin are closely related to texture characteristics. Apple cultivars with higher cell wall polysaccharide contents and higher frequency of long-chain, wide-chain WSP, CSP and SSP may possess superior texture quality. These findings can provide data support for the appropriate storage of apples and the quality improvement of processed products, thus facilitating the specialization of apple varieties for processing.

Key words: apple; texture; cell wall polysaccharides; pectin structure; atomic force microscopy

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