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通过多组学分析发现,超氧化物清除剂胰蛋白酶调控火龙果中的脂类代谢。

Lipid metabolism regulated by superoxide scavenger trypsin in Hylocereus undatus through multi-omics analyses.

机构信息

College of Food and Bioengineering, Henan University of Science and Technology, Luoyang, China.

Key Laboratory of Microbial Resources Exploitation and Utilization, Luoyang, China.

出版信息

J Food Biochem. 2022 Jul;46(7):e14144. doi: 10.1111/jfbc.14144. Epub 2022 Apr 11.

DOI:10.1111/jfbc.14144
PMID:35403710
Abstract

To analyze the mechanism of the effect of trypsin on the preservation of Hylocereus undatus, the transcriptomic and widely targeted metabolomic profiles of H. undatus after trypsin treatment were evaluated. Among 477 genes related to lipid metabolism, 32 genes had significant expression differences. GO analysis results showed that the main enriched GO functions include pectinesterase and asparagine esterase activities, and so on. The KEGG metabolic pathway with the highest enrichment rate was fatty acid elongation. The protein-protein interaction (PPI) network analysis results showed that the PPI network of lipid metabolism is a complex biological network of scale-free cells. KCS1, QRT1, and ACC1 acted as hubs to regulate a large number of other proteins and amplify the regulatory role of trypsin to achieve a preservation effect. In addition, three unsaturated fatty acids were upregulated, while eight saturated fatty acids were downregulated. PRACTICAL APPLICATIONS: The postharvest storage of fresh fruits and vegetables brings about bottlenecks to fresh fruits and vegetables. There was also an increasing need for biopreservation techniques. Trypsin could significantly enhance the antioxidant capacity of fruits and vegetables, as a preserver for the storage of fruits and vegetables, which was convenient to operate and more economical. The regulation mechanism of trypsin on lipid metabolism in fruits and vegetables during storage of H. undatus is studied in this paper. The application of trypsin would provide a new strategy for quality control of fruit and vegetable storage.

摘要

为了分析胰蛋白酶对火龙果保鲜效果的作用机制,评估了胰蛋白酶处理后火龙果的转录组和广泛靶向代谢组学谱。在与脂质代谢相关的 477 个基因中,有 32 个基因的表达差异具有统计学意义。GO 分析结果表明,主要富集的 GO 功能包括果胶酯酶和天冬酰胺酯酶活性等。富集率最高的 KEGG 代谢途径是脂肪酸延长。蛋白质-蛋白质相互作用(PPI)网络分析结果表明,脂质代谢的 PPI 网络是一个具有无标度细胞特征的复杂生物网络。KCS1、QRT1 和 ACC1 作为枢纽,调节大量其他蛋白质,放大胰蛋白酶的调控作用,达到保鲜效果。此外,三种不饱和脂肪酸上调,八种饱和脂肪酸下调。实际应用:新鲜果蔬的采后贮藏给新鲜果蔬带来了瓶颈,对生物保鲜技术的需求也越来越大。胰蛋白酶能显著提高果蔬的抗氧化能力,作为果蔬贮藏的保鲜剂,操作方便,更经济。本文研究了胰蛋白酶对火龙果贮藏过程中脂质代谢的调控机制。胰蛋白酶的应用将为果蔬贮藏的质量控制提供新的策略。

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Lipid metabolism regulated by superoxide scavenger trypsin in Hylocereus undatus through multi-omics analyses.通过多组学分析发现,超氧化物清除剂胰蛋白酶调控火龙果中的脂类代谢。
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