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Calcium chloride and 1-methylcyclopropene treatments delay postharvest and reduce decay of New Queen melon

机译:氯化钙和1-甲基环丙烯处理可延缓采后并减少新女王瓜的腐烂

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摘要

In this study, newly harvested New Queen melons were treated with calcium chloride (CaCl2) and 1-methylcyclopropene (1-MCP) alone or in combination before storage. The results showed that the respiration rate, ethylene release, the activity and gene expression of pectinases such as polygalacturonase (PG), pectin methylesterase (PME) and pectate lyase (PL) in New Queen melons were dramatically decreased by treatments with 0.18 mol/L CaCl2 and/or 1 μL/L 1-MCP. Meanwhile, the climacteric behavior and flesh hardness reduction were inhibited. We also found that softer melon flesh was more conducive to the growth and reproduction of decay-causing microorganisms according to their growth curves in melons that were different in flesh hardness, suggesting inhibiting fruit softening can slow down the growth of microorganisms in fruit flesh, and thus reduce fruit decay rate. The combined use of CaCl2 and 1-MCP was more effective in suppressing respiration rate, ethylene release and protopectin hydrolysis, which could greatly delay the softening, reduce the decay rate, and extend the shelf life of New Queen melons.
机译:在这项研究中,新收获的新皇后瓜在储存前单独或联合用氯化钙(CaCl2)和1-甲基环丙烯(1-MCP)处理。结果表明,采用0.18μmol/ L的处理后,新皇后甜瓜的呼吸速率,乙烯释放,果胶酶(如半乳糖醛酸酶(PG),果胶甲基酯酶(PME)和果胶酸裂合酶(PL))的活性和基因表达明显降低。 CaCl2和/或1μL/ L 1-MCP。同时,抑制了更年期行为和果肉硬度的降低。我们还发现,根据果肉硬度不同的甜瓜的生长曲线,较软的瓜果肉更有助于引起腐烂的微生物的生长和繁殖,这表明抑制果实软化可以减慢果肉中微生物的生长,并且从而降低果实腐烂率。 CaCl2和1-MCP的组合使用在抑制呼吸速率,乙烯释放和原果胶水解方面更有效,可以大大延迟软化,降低腐烂率并延长新女王瓜的货架期。

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