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短期低压处理通过调节桃果实膜脂脂肪酸代谢减轻冷害。

Short-term hypobaric treatment alleviates chilling injury by regulating membrane fatty acids metabolism in peach fruit.

机构信息

Shandong Institute of Pomology, Tai'an, PR China.

Huangdao Customs District P. R. China, Qingdao, PR China.

出版信息

J Food Biochem. 2022 Jul;46(7):e14113. doi: 10.1111/jfbc.14113. Epub 2022 Feb 20.

Abstract

Short-term hypobaric treatment (SHT) on postharvest quality and membrane fatty acids metabolism were studied in peach fruit (Prunus persica [L.] Batsch., cv. Feicheng) during shelf life after cold storage. SHT was effective in alleviating chilling injury (CI) and maintaining postharvest quality. SHT reduced the production of malondialdehyde (MDA) and electrolyte leakage (EL), and increased membrane fluidity. In addition, SHT plays an imperative role in reducing saturated fatty acid (SFA), increasing unsaturated fatty acid (USFA), and keeping a higher unsaturation level in peach fruit. Meanwhile, SHT enhanced the activity of fatty acid synthetase (FAS), upregulated the expression levels of FAD2, FAD3-1, FAD3-2, and FAD7 genes at the early stage of storage, as well as inhibited the activity of lipoxygenase (LOX) and gene expression of LOX1. These results suggested that SHT could increase fatty acids unsaturation by regulating FAS activity, FAD and LOX1 gene expression, thus maintain high membrane stability and alleviate CI. PRACTICAL APPLICATIONS: CI is an important factor affecting the postharvest quality of peaches in cold storage, and metabolism of membrane fatty acids is one of the main CI response mechanisms. Our previous study has shown that SHT could alleviate CI in peach fruit. Therefore, it is of great significance to investigate the regulation of membrane fatty acids metabolism under SHT. Results from this study suggest that the enhancement of chilling tolerance by SHT in peaches could be explained, at least in part, as being due to enhanced FAS activity, upregulated the expression of FAD gene, and inhibited LOX1 to maintain higher unsaturation level. All in all, we explored the response mechanism of membrane fatty acids metabolism under SHT in peach fruit, and supplied theoretical guidance for application of the technology.

摘要

短期低压处理(SHT)对冷藏后货架期桃果实(Prunus persica [L.] Batsch.,cv. Feicheng)采后品质和膜脂肪酸代谢的影响。SHT 能有效缓解冷害(CI),保持采后品质。SHT 降低了丙二醛(MDA)和电解质渗漏(EL)的产生,增加了膜的流动性。此外,SHT 在降低饱和脂肪酸(SFA)、增加不饱和脂肪酸(USFA)和保持桃果实较高的不饱和水平方面发挥着重要作用。同时,SHT 增强了脂肪酸合成酶(FAS)的活性,在贮藏早期上调了 FAD2、FAD3-1、FAD3-2 和 FAD7 基因的表达水平,同时抑制了脂氧合酶(LOX)的活性和 LOX1 基因的表达。这些结果表明,SHT 可以通过调节 FAS 活性、FAD 和 LOX1 基因表达来增加脂肪酸的不饱和度,从而保持高膜稳定性,缓解 CI。实际应用:CI 是影响桃果实冷藏后品质的重要因素,而膜脂肪酸代谢是 CI 主要响应机制之一。我们之前的研究表明,SHT 可以缓解桃果实的 CI。因此,研究 SHT 下膜脂肪酸代谢的调节具有重要意义。本研究结果表明,SHT 增强桃果实的耐寒性,至少部分原因是 FAS 活性增强,FAD 基因表达上调,LOX1 抑制维持较高的不饱和度。总之,我们探讨了 SHT 下膜脂肪酸代谢的响应机制,为该技术的应用提供了理论指导。

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