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褪黑素通过一氧化氮调控抑制乙烯合成延缓梨果实采后衰老。

Melatonin Inhibits Ethylene Synthesis via Nitric Oxide Regulation To Delay Postharvest Senescence in Pears.

机构信息

College of Horticulture , Northwest A&F University , Taicheng Road NO.3 , Yangling , Shaanxi Province 712100 , China.

出版信息

J Agric Food Chem. 2019 Feb 27;67(8):2279-2288. doi: 10.1021/acs.jafc.8b06580. Epub 2019 Feb 15.

Abstract

Understanding ripening and senescence processes in postharvest stored fruit is key to the identification and implementation of effective treatment methods. Here, we explored the effects of exogenous applications of melatonin (MT) and nitric oxide (NO) on ripening and softening processes in three cultivars of European pear ( Pyrus communis L.). The results showed that MT and NO played important roles in the two processes: they decreased the rate of upregulation of PcCel and PcPG, inhibited expression of ethylene synthetase genes ( PcACS and PcACO), and reduced rates of respiration and ethylene production. MT increased activity of NO synthase through upregulation of expression of PcNOS that subsequently led to an increase in NO content. However, when NO synthesis was inhibited, the delaying effect of MT on fruit senescence was almost eliminated. These findings indicate that MT acted on the upstream process of NO synthesis that then delayed senescence in pear fruit.

摘要

了解采后贮藏水果的成熟和衰老过程是识别和实施有效处理方法的关键。在这里,我们探讨了外源施用褪黑素(MT)和一氧化氮(NO)对三个欧洲梨( Pyrus communis L.)品种成熟和软化过程的影响。结果表明,MT 和 NO 在这两个过程中发挥了重要作用:它们降低了 PcCel 和 PcPG 的上调速率,抑制了乙烯合成酶基因( PcACS 和 PcACO)的表达,并降低了呼吸和乙烯生成速率。MT 通过上调 PcNOS 的表达增加了一氧化氮合酶的活性,从而导致 NO 含量增加。然而,当抑制 NO 合成时,MT 对果实衰老的延缓作用几乎消失。这些发现表明,MT 作用于 NO 合成的上游过程,从而延缓了梨果实的衰老。

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