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Changes in Membrane Lipid Metabolism Accompany Pitting in Blueberry During Refrigeration and Subsequent Storage at Room Temperature

机译:冷藏和随后在室温下保存期间膜上脂质代谢的变化伴随着蓝莓的点蚀

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摘要

Low-temperature storage is the primary postharvest method employed to maintain fruit quality and commercial value. However, pitting can develop during refrigeration, especially during the shelf life. In this study, a membrane lipidomic approach was employed to analyze the potential relationship between pitting and membrane lipid metabolism during post-cold-storage shelf life. We also determined the changes in ultrastructure and water distribution by low-field nuclear magnetic resonance (LF-NMR) and assessed the permeability of membrane, membrane lipid peroxidation, proline and malondialdehyde contents, and the activity and gene expression of phospholipase D and lipoxygenase, which are involved in membrane lipid metabolism. The results indicated that the changes in blueberry phospholipids during storage could be caused by cold stress. Furthermore, dehydration is a manifestation of chilling injury. Finally, the significant increase in electrolyte leakage, content of malondialdehyde and proline, and activity of phospholipase D and lipoxygenase in chilled blueberry also indicated that membrane lipid metabolism plays an important role in cold stress response.
机译:低温贮藏是用来保持果实品质和商业价值的主要采后方法。但是,在制冷过程中,特别是在保质期内,可能会出现点蚀现象。在这项研究中,采用膜脂质组学方法分析了冷存储后的货架期点蚀和膜脂质代谢之间的潜在关系。我们还通过低场核磁共振(LF-NMR)确定了超微结构和水分布的变化,并评估了膜的通透性,膜脂质过氧化,脯氨酸和丙二醛含量,以及磷脂酶D和脂氧合酶的活性和基因表达,参与膜脂代谢。结果表明,蓝莓磷脂在贮藏过程中的变化可能是由于冷胁迫引起的。此外,脱水是冷害的表现。最后,冷藏蓝莓中电解质泄漏,丙二醛和脯氨酸含量以及磷脂酶D和脂氧合酶活性的显着增加也表明膜脂质代谢在冷应激反应中起重要作用。

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