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首页> 外文期刊>Postharvest Biology and Technology >Differences in the cell morphology and microfracture behaviour of tomato fruit (Solanum lycopersicum L.) tissues during ripening
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Differences in the cell morphology and microfracture behaviour of tomato fruit (Solanum lycopersicum L.) tissues during ripening

机译:番茄果实(Solanum Lycopersicum L.)组织在成熟过程中的细胞形态和微折衷行为的差异

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Fresh tomato fruit (Solanum lycopersicum L.) is very susceptible to microdamage during post-harvest handling. This study reveals the differences in 3D cell morphology (e.g., shape, size, arrangement, and wall thickness) and microfailure behaviour of different tissues in the tomato fruit. At each ripening stage, the 3D shape, size and arrangement of cells in different tissues of a tomato fruit were investigated based on two microscopic orthogonal images. Additionally, the cell wall thickness was determined using transmission electron microscopy, and the microfailure mode of each tissue under shear and tension was quantitatively assessed based on the cell rupture rate in the crack growth path. The cells in different tissues of a tomato fruit showed obvious differences in the 3D shape and growth direction. Septa cells had the largest sizes. Cell wall thickness was closely associated with fruit ripeness and tissue type. Epidermal cell walls in the pink exocarp were the thickest compared with the other tissue cell walls. The cell rupture rate was dependent on the fruit ripening stage, the type of tissue and the direction/mode of the applied force (p < 0.05). Two failure modes, namely, cell rupture and separation, were observed in the different tissues of the tomato fruit at each ripening stage under shear and tension. This work provides a vital basis for modelling and simulating microscopic mechanical damage experienced by fresh tomato fruits due to excessive external forces during post-harvest handling.
机译:新鲜的番茄果(Solanum Lycopersicum L.)在收获后处理过程中非常易受微米摩擦。该研究揭示了番茄果实中不同组织的3D细胞形态(例如,形状,尺寸,布置和壁厚)和微免药行为的差异。在每个成熟阶段,基于两个微观正交图像研究了番茄果实不同组织中的3D形状,大小和布置。另外,使用透射电子显微镜测定细胞壁厚度,并且根据裂纹生长路径中的细胞破裂速率定量评估剪切和张力下的每个组织的微毛线模式。番茄果实不同组织中的细胞显示3D形状和生长方向的明显差异。隔膜细胞具有最大的尺寸。细胞壁厚度与果实成熟和组织类型密切相关。与其他组织电池壁相比,粉红色Exocarp中的表皮细胞壁是最厚的。电池破裂率取决于果实成熟阶段,组织的类型和施加力的方向/模式(P <0.05)。在剪切和张力下的每个成熟阶段,在番茄果实的不同组织中观察到两种故障模式,即细胞破裂和分离。这项工作为在收获后处理过程中由于过度的外力而产生了新鲜番茄水果的微观机械损伤,为模拟和模拟了微观机械损伤提供了重要的基础。

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