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Specific Changes of Exocarp and Mesocarp Occurring during Softening Differently Affect Firmness in Melting (MF) and Non Melting Flesh (NMF) Fruits

机译:软化期间外果皮和中果皮的特定变化对融化(MF)和非融化果肉(NMF)水果的硬度影响不同

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摘要

Melting (MF) and non melting flesh (NMF) peaches differ in their final texture and firmness. Their specific characteristics are achieved by softening process and directly dictate fruit shelf life and quality. Softening is influenced by various mechanisms including cell wall reorganization and water loss. In this work, the biomechanical properties of MF Spring Crest’s and NMF Oro A’s exocarp and mesocarp along with the amount and localization of hydroxycinnamic acids and flavonoids were investigated during fruit ripening and post-harvest. The objective was to better understand the role played by water loss and cell wall reorganization in peach softening. Results showed that in ripe Spring Crest, where both cell turgor loss and cell wall dismantling occurred, mesocarp had a little role in the fruit reaction to compression and probe penetration response was almost exclusively ascribed to the epidermis which functioned as a mechanical support to the pulp. In ripe Oro A’s fruit, where cell wall disassembly did not occur and the loss of cell turgor was observed only in mesocarp, the contribution of exocarp to fruit firmness was consistent but relatively lower than that of mesocarp, suggesting that in addition to cell turgor, the integrity of cell wall played a key role in maintaining NMF fruit firmness. The analysis of phenols suggested that permeability and firmness of epidermis were associated with the presence of flavonoids and hydroxycinnamic acids.
机译:融化(MF)和不融化的果肉(NMF)桃子的最终质地和硬度不同。它们的特殊特性通过软化过程来实现,并直接决定了水果的货架期和质量。软化受到各种机制的影响,包括细胞壁重组和水分流失。在这项工作中,研究了MF Spring Crest和NMF Oro A的外果皮和中果皮的生物力学特性,以及在果实成熟和收获后羟基肉桂酸和类黄酮的含量和位置。目的是更好地了解水分流失和细胞壁重组在桃子软化中的作用。结果表明,在成熟的春C中,发生了细胞膨大损失和细胞壁分解,中果皮在果实对压缩的反应中几乎没有作用,探针的渗透反应几乎完全归因于表皮,而表皮是对果肉的机械支撑。 。在成熟的Oro A果实中,没有发生细胞壁分解并且仅在中果皮中观察到了细胞膨大的损失,外果皮对果实硬度的贡献是一致的,但相对低于中果皮,这表明除了细胞膨大之外,细胞壁的完整性在保持NMF果实硬度方面起着关键作用。苯酚的分析表明,表皮的渗透性和牢固性与类黄酮和羟基肉桂酸的存在有关。

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