食品科学 ›› 2026, Vol. 47 ›› Issue (10): 306-319.doi: 10.7506/spkx1002-6630-20251210-096

• 包装贮运 • 上一篇    下一篇

多组学分析揭示外源亮氨酸对西兰花碳水化合物及能量代谢的影响

王云巧,张玉笑,盖英超,王慧慧,邹永康,Abbas AQLEEM,郭衍银   

  1. (1.山东理工大学农业工程与食品科学学院,山东 淄博 255049;2.临沂大学生命科学学院,山东 临沂 276000)
  • 出版日期:2026-05-25 发布日期:2026-06-10
  • 基金资助:
    国家自然科学基金面上项目(31671900);山东省自然科学基金青年科学基金项目(ZR2025QC180;ZR2022MC091)

Multi-omics Profiling Reveals the Effects of Exogenous Leucine on Carbohydrate and Energy Metabolism in Broccoli

WANG Yunqiao, ZHANG Yuxiao, GAI Yingchao, WANG Huihui, ZOU Yongkang, Abbas AQLEEM, GUO Yanyin   

  1. (1. College of Agricultural Engineering and Food Science, Shandong University of Technology, Zibo 255049, China; 2. College of Life Sciences, Linyi University, Linyi 276000, China)
  • Online:2026-05-25 Published:2026-06-10

摘要: 为探究亮氨酸对采后西兰花碳水化合物与能量稳态的影响及其分子机制,本研究对采后西兰花进行亮氨酸浸泡处理并对其进行转录组学与代谢组学的整合分析。结果表明,亮氨酸处理提高了采后西兰花的ATP、ADP含量及能荷水平,从而增强了细胞能量状态。亮氨酸通过下调丙酮酸脱羧酶和乙醇脱氢酶的表达抑制乙醇发酵。亮氨酸处理能够上调丙酮酸脱氢酶E1、E2亚基、柠檬酸合酶及苹果酸脱氢酶的表达,促进糖酵解及葡萄糖向丙酮酸的转化,并增强三羧酸循环,引导更多丙酮酸进入三羧酸循环代谢流。此外,亮氨酸处理还改善了氧化磷酸化过程,有效将还原型烟酰胺腺嘌呤二核苷酸(磷酸)储存的能量转化为ATP。本研究结果可为开发提升采后西兰花能量状态、延长其货架期的调控策略提供理论依据。

关键词: 西兰花;碳水化合物;能荷;多组学;亮氨酸处理

Abstract: To investigate the effects and molecular basis of leucine on carbohydrate and energy homeostasis in postharvest broccoli, an integrated transcriptomic and metabolomic analysis was conducted on postharvest broccoli treated with leucine soaking. Results showed that leucine treatment elevated the ATP and ADP contents and energy charge, which consequently enhanced the cellular energy status of postharvest broccoli. Leucine treatment suppressed alcoholic fermentation by down-regulating pyruvate decarboxylase and alcohol dehydrogenase expression. It enhanced the tricarboxylic acid (TCA) cycle by up-regulating the expression of pyruvate dehydrogenase E1 and E2 subunits, citrate synthase, and malate dehydrogenase and promoting glycolysis and the conversion of glucose into pyruvate, thereby directing a greater flux of pyruvate into the TCA cycle. Leucine treatment improved oxidative phosphorylation, effectively converting the energy stored in reduced nicotinamide adenine dinucleotide (phosphate) (NAD(P)H) into ATP. The findings offer a theoretical basis for developing strategies to improve energy status and thereby extending the commercial shelf life of postharvest broccoli.

Key words: broccoli; carbohydrate; energy charge; multi-omics; leucine treatment

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