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利用原子力显微镜研究苹果质地与细胞壁纳米结构的关系。

The relation of apple texture with cell wall nanostructure studied using an atomic force microscope.

机构信息

Institute of Agrophysics, Polish Academy of Sciences, Doswiadczalna 4, 20-290 Lublin, Poland.

出版信息

Carbohydr Polym. 2013 Jan 30;92(1):128-37. doi: 10.1016/j.carbpol.2012.08.103. Epub 2012 Sep 7.

Abstract

In this study, the relation of the nanostructure of cell walls with their texture was investigated for six different apple cultivars. Cell wall material (CWM) and cellulose microfibrils were imaged by atomic force microscope (AFM). The mean diameter of cellulose microfibrils for each cultivar was estimated based on the AFM height topographs obtained using the tapping mode of dried specimens. Additionally, crystallinity of cellulose microfibrils and pectin content was determined. Texture of apple cultivars was evaluated by sensory and instrumental analysis. Differences in cellulose diameter as determined from the AFM height topographs of the nanostructure of cell walls of the apple cultivars are found to relate to the degree of crystallinity and pectin content. Cultivars with thicker cellulose microfibrils also revealed crisper, harder and juicier texture, and greater acoustic emission. The data suggest that microfibril thickness affects the mechanical strength of cell walls which has consequences for sensory and instrumental texture.

摘要

在这项研究中,研究了六种不同苹果品种细胞壁的微观结构与其质地的关系。通过原子力显微镜(AFM)对细胞壁材料(CWM)和纤维素微纤维进行了成像。根据使用干燥样品的轻敲模式获得的 AFM 高度形貌图,估算了每个品种的纤维素微纤维的平均直径。此外,还测定了纤维素微纤维的结晶度和果胶含量。通过感官和仪器分析评估了苹果品种的质地。从苹果品种细胞壁微观结构的 AFM 高度形貌图中确定的纤维素直径差异与结晶度和果胶含量有关。纤维素微纤维较厚的品种口感更脆、更硬、更多汁,声发射也更大。研究数据表明,微纤维的厚度影响细胞壁的机械强度,从而对感官和仪器质地产生影响。

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