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Deficit irrigation strategies combined with controlled atmosphere preserve quality in early peaches

机译:亏缺灌溉策略与可控气氛相结合可保持桃子的早期品质

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Due to the water scarcity in the Mediterranean countries, irrigation must be optimized while keeping fruit quality. The effect of deficit irrigation strategies on changes in quality parameters of the early "Flordastar" peaches was studied. The deficitirrigation was programmed according to signal intensity of the maximum daily trunk shrinkage; deficit irrigation plants were irrigated to maintain maximum daily trunk shrinkage signal intensity values close to 1.4 or 1.3 in the case of Dli or Dl2 plants, respectively. Results were compared to a control watered at 150% crop evapotranspiration. Fruits were stored up to 14 days at 0°C and 95% Relative Humidity (RH) in air or in controlled atmosphere (controlled atmosphere; 3-4 kPa 02 and 12-14 kPa C0_2),followed by a retail sale period of 4 days at 15"C and 90-95% Relative Humidity in air. Weight losses were lower in controlled atmosphere stored peaches from deficit irrigation. Air-stored fruits developed a more intense red color due to a faster ripening, which was not affected by the type of watering. At harvest, deficit irrigation peaches showed higher soluble solids content, which provided a better sensory evaluation. The soluble phenolic content was initially higher (55.26 ±0.18 mg gallic acid equivalents/100 g fresh weight) and more stable throughout postharvest life in DI-, fruits than in those from the other irrigation treatments. Concerning vitamin C, control fruits at harvest showed higher ascorbic acid than dehydroascorbic acid content (5.43 versus 2.43mg/100g fresh weight, respectively), while water stressed peaches showed the opposite results. The combination of Dl2 and controlled atmosphere storage allowed saving a significant amount of water and provided peaches with good overall quality, maintaining the bioactive compounds analyzed.
机译:由于地中海国家缺水,必须在保持果实品质的同时优化灌溉。研究了亏水灌溉策略对早期“ Flordastar”桃子品质参数变化的影响。根据最大每日躯干收缩的信号强度对缺水进行编程。对于Dli或Dl2植物,对缺水灌溉植物进行灌溉,以保持最大每日树干收缩信号强度值分别接近1.4或1.3。将结果与以150%作物蒸散量灌溉的对照进行比较。水果在0°C和95%相对湿度(RH)下在空气中或在受控气氛(受控气氛; 3-4 kPa 02和12-14 kPa C0_2)中存储长达14天,随后的零售期为4在15“ C和90-95%的相对湿度下放置几天。在缺乏灌溉条件的可控气氛下储存的桃子,失重降低。由于更快的成熟时间,空气贮藏的果实呈现出更强烈的红色,而不受果实的影响。收获时,亏水灌溉的桃子表现出较高的可溶性固形物含量,从而提供了更好的感官评估,可溶性酚类含量最初较高(55.26±0.18 mg没食子酸当量/ 100 g鲜重),并且在整个收获后的生命周期中都比较稳定。维生素C方面,收获时对照水果的抗坏血酸含量高于脱氢抗坏血酸含量(分别为5.43和2.43mg / 100g鲜重),而水分胁迫桃子显示相反的结果。 Dl2和可控气氛存储的结合可以节省大量的水,并为桃子提供良好的总体质量,从而保持所分析的生物活性化合物。

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