首页> 外文期刊>园芸学会杂志 >Effects of temperature and ethylene removing agents on respiration of mature-green mume (Prunus mume Sieb. et Zucc.) fruit held under air and controlled atmospheres.
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Effects of temperature and ethylene removing agents on respiration of mature-green mume (Prunus mume Sieb. et Zucc.) fruit held under air and controlled atmospheres.

机译:温度和除乙烯剂对保持在空气和受控气氛下的成熟绿色梅(Prunus mume Sieb。et Zucc。)果实呼吸的影响。

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Mature-green Japanese apricot fruits of 4 cultivars (Gojiro, Nankou, Hakuoukoume and Shirakaga) were held in air or a 3-5% O2 + 9-10% CO2 gas stream with or without ethylene removing agents (ERA) for 7 days at 25鳦. Hakuoukoume fruits were also heldunder various controlled atmospheres (CA) for 10 days at 10?or 8 days at 25?to investigate the influence of storage temperature. Fruits exhibited the climacteric respiratory pattern in air or CA at 25? irrespective of ERA. However, the onset of the climacteric rise was delayed or its duration prolonged with ERA. ERA were more effective in CA than in air. The respiration rate of fruits approaching the climacteric peak was reduced in CA, but unaffected by ERA. The O2 uptake rate of Hakuoukoume fruitsin air at 10?was reduced to 1/5 of that at 25? The rate was further reduced under various CAs, especially under high CO2 concentration at 10? A CA of 3-5% O2 + 9-10% CO2 combined with ERA was effective in preserving fruit quality at 25? O2 consumption during the first 3 days of storage under these conditions was reduced to 60-90% of that under CA without ERA, and to 20-40% of that under air without ERA. It was concluded that to market ERA-treated fruits with good quality stored at ambient temperature, the storage period should be limited to ? days, and the ERA should be applied at the preclimacteric stage. To store fruits for a longer period, it is recommended that they be kept in 4-5% O2 and 8-9% CO2 at 10?
机译:将4个品种(Gojiro,Nankou,Hakuoukoume和Shirakaga)的成熟绿色日本杏果实在空气中或在含或不含除乙烯剂(ERA)的3-5%O2 + 9-10%CO2气流下于7℃保存7天。 25鳦。还以不同的可控气氛(CA)将白豆蔻果实在10?下保持10天,或在25?下保持8天,以研究贮藏温度的影响。 25℃时,水果在空气或CA中表现出更年期呼吸模式。与ERA无关。但是,随着ERA的出现,更年期上升的发生被延迟或持续时间延长。 ERA在CA中比在空气中更有效。在CA中,接近更年期峰值的水果呼吸速率降低,但不受ERA的影响。空气中Hakuoukoume水果中的O2吸收率从10?降低到25?的1/5。在各种CA下,该速率进一步降低,尤其是在10?3的高CO 2浓度下。 3-5%O2 + 9-10%CO2的CA与ERA结合可有效保持25?在这些条件下,存储的前三天的氧气消耗减少到不使用ERA的CA下的60-90%,减少到不使用ERA的空气下20-40%。得出的结论是,要销售在环境温度下储藏质量良好的经ERA处理的水果,储藏期限应限制为?天,ERA应该在更年期前应用。要长时间保存水果,建议将其在10?4的氧气中保持在4-5%的O2和8-9%的CO2中。

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