食品科学 ›› 2025, Vol. 46 ›› Issue (14): 37-48.doi: 10.7506/spkx1002-6630-20241101-003

• 基础研究 • 上一篇    

基于转录组学分析超声胁迫诱导鲜切紫甘蓝酚类物质合成机制

洪晨,郭丽娜,张莘妍,欧阳宁宁,吴平,马海乐   

  1. (1.江苏大学食品与生物工程学院,江苏?镇江 212013;2.江苏大学食品物理加工研究院,江苏?镇江 212013;3.江苏农牧科技职业学院食品科技学院,江苏?泰州 225300)
  • 发布日期:2025-06-20
  • 基金资助:
    国家自然科学基金面上项目(32072353);泰州市科技支撑计划(农业)项目(TN202220)

Transcriptomics Analysis of the Mechanism Underlying the Synthesis of Phenolic Compounds in Fresh-Cut Red Cabbage under Ultrasound Stress

HONG Chen, GUO Lina, ZHANG Xinyan, OUYANG Ningning, WU Ping, MA Haile   

  1. (1. School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, China; 2. Institute of Food Physical Processing, Jiangsu University, Zhenjiang 212013, China; 3. School of Food Science and Technology, Jiangsu Agri-animal Husbandry Vocational College, Taizhou 225300, China)
  • Published:2025-06-20

摘要: 为探究超声诱导鲜切果蔬中酚类物质合成的分子机制,以紫甘蓝为实验材料,对超声清洗后不同贮藏时期的鲜切紫甘蓝进行转录组测序与生物信息学分析。结果表明,在贮藏初期(2 d),与未经超声处理(对照组)(C2)相比,超声清洗(U2)可导致1 142 个基因差异表达,其中689 个基因表达上调,453 个基因表达下调。在贮藏后期(6 d),与对照组(C6)相比,超声清洗(U6)导致1 166 个基因差异表达,其中480 个基因表达上调,686 个基因表达下调。生物信息学分析结果表明,超声处理显著调控了与活性氧(reactive oxygen species,ROS)代谢、能量代谢、信号转导以及酚类物质生物合成相关的代谢途径,推测超声清洗打破了鲜切紫甘蓝体内ROS的平衡,在贮藏初期促进了ROS的产生,激活了ROS清除系统,从而引起酚类物质的合成。超声刺激可能通过调控鲜切紫甘蓝的信号转导系统,诱导糖类物质到酚类物质转化过程中相关基因的表达。与此同时,超声清洗能够使鲜切紫甘蓝在贮藏期间能够维持较高的能荷水平,从而为上述系列反应提供能量。综上所述,本研究通过对超声清洗前后鲜切紫甘蓝中的差异表达基因进行生物信息学分析,发现了超声促进酚类物质合成积累的重要机制,可为进一步研究在超声胁迫下鲜切果蔬中酚类物质生物合成的分子机制提供理论依据。

关键词: 鲜切紫甘蓝;超声清洗;转录组学;酚类物质;活性氧

Abstract: To investigate the molecular mechanism of ultrasound-induced phenolic synthesis in fresh-cut fruits and vegetables, transcriptome sequencing and bioinformatics analyses were carried out on fresh-cut red cabbage washed with and without the assistance of ultrasound at different storage periods. The results showed that at the early storage stage (day 2), 1 142 differentially expressed genes (DEGs) were identified between the control and treatment groups, of which 689 were up-regulated and 453 were down-regulated. At the late storage stage (day 6), 1 166 DEGs were identified, with 480 of them being up-regulated genes and 686 being down-regulated. Bioinformatics analyses revealed that ultrasound significantly modulated metabolic pathways related to reactive oxygen species (ROS) metabolism, energy metabolism, signal transduction, and phenolic biosynthesis. It was further hypothesized that ultrasound washing disrupted ROS homeostasis in fresh-cut red cabbage, promoted ROS production and activated the ROS scavenging system during the initial storage period, thereby inducing phenolic synthesis. Ultrasonic stimulation may induce the expression of genes involved in the conversion of carbohydrate to phenolics by modulating the signal transduction system of fresh-cut red cabbage. Meanwhile, ultrasound washing enabled fresh-cut red cabbage to maintain high levels of energy charge during storage, thus providing energy for this series of reactions. In conclusion, this study provides a theoretical basis for further research on the molecular mechanism of phenolic biosynthesis in fresh-cut fruits and vegetables under ultrasound stress.

Key words: fresh-cut red cabbage; ultrasound washing; transcriptomics; phenolic compounds; reactive oxygen species

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