Zhao Hu, Shen Cheng, Hao Qingping, Fan Mingqin, Liu Xiaoli, Wang Juan
Biology and Food Engineering College, Fuyang Normal University, Engineering Technology Research Center of Anti-Aging Chinese Herb, Fuyang, Anhui, China.
Front Plant Sci. 2023 Mar 20;14:1142840. doi: 10.3389/fpls.2023.1142840. eCollection 2023.
Toon buds, a popular woody vegetable, contain large amounts of nutrients. However, toon buds have strong respiratory metabolism after harvest and are highly prone to decay, resulting in quality deterioration. Low temperature can effectively inhibit postharvest senescence of toon buds. GC-TOF-MS combined with quantitative real-time PCR was used to elucidate the toon bud deterioration mechanism after harvest by analyzing the difference in the relative contents of primary metabolites and their derivatives, and the expression of key genes associated with metabolic pathways in toon buds between low temperature and room temperature storages for 72 h. Results showed that the ethylene synthesis in toon buds accelerated under room temperature storage, along with significant changes in the primary metabolic pathway. The catabolism of amino acids, fatty acids, and cell membrane phospholipids was accelerated, and the gluconeogenesis synthesis was strengthened. Moreover, the sucrose synthesis was increased, the glycolysis and TCA cycle were broken down, and the pentose phosphate pathway was vigorous. As metabolic intermediates, organic acids were considerably accumulated. Moreover, varieties of toxic compounds were produced in parallel with the activation of aromatic compounds. This work provided a comprehensive understanding of the metabolic regulation, thereby revealing how low and room temperatures differentially influenced the quality deterioration of postharvest toon buds.
香椿芽是一种受欢迎的木本蔬菜,含有大量营养成分。然而,香椿芽采后呼吸代谢旺盛,极易腐烂,导致品质劣变。低温可有效抑制香椿芽采后衰老。采用气相色谱-飞行时间质谱联用技术(GC-TOF-MS)并结合实时定量PCR,通过分析低温和室温贮藏72小时后香椿芽中初级代谢产物及其衍生物相对含量的差异以及与代谢途径相关关键基因的表达,阐明香椿芽采后劣变机制。结果表明,室温贮藏下香椿芽中乙烯合成加速,同时初级代谢途径发生显著变化。氨基酸、脂肪酸和细胞膜磷脂的分解代谢加速,糖异生合成增强。此外,蔗糖合成增加,糖酵解和三羧酸循环被破坏,磷酸戊糖途径活跃。作为代谢中间产物,有机酸大量积累。此外,随着芳香族化合物的激活,还产生了多种有毒化合物。这项工作全面了解了代谢调控,从而揭示了低温和室温对采后香椿芽品质劣变的不同影响。