College of Food Science and Technology, Nanjing Agricultural University, Nanjing, 210095, China.
College of Food Science, Shenyang Agricultural University, Shenyang 110866, PR China.
Plant Physiol Biochem. 2024 Jul;212:108745. doi: 10.1016/j.plaphy.2024.108745. Epub 2024 May 17.
As a leaf vegetable, Gynura bicolor DC (G. bicolor) experiences a rapid deterioration after harvest including insufficient supply of sugar and destruction of cell membranes. In this research, four treatments were experimented on G. bicolor including the control (CK), 12% (g/g) sucrose (ST), 10 μL L 1-MCP (MT), and the combination of sucrose and 1-MCP (SMT). The results showed that three treated groups reduced respiratory rate, inhibited hexose consumption and promoted the decrease of starch and sucrose, which was converted into hexose including glucose and fructose to maintain cell membrane integrity. Meanwhile, the activities of AI, NI, SS-C, amylase, and corresponding gene expression levels were significantly up-regulated in three treated groups at 1 d, among which AI played a crucial role in regulating the accumulation of hexose. Furthermore, ST exerted a pronounced effect on hexose accumulation at the beginning while MT reduced hexose consumption through lowered respiratory metabolism during storage. Notably, SMT exhibited an optimum preservation effect on inhibited respiratory metabolism, maintaining cell membrane integrity, enhancing the retention of hexose, indicating that a synergistic effect of ST and MT were developed during storage.
菊三七(Gynura bicolor DC)是一种叶菜类蔬菜,在收获后会迅速变质,包括糖供应不足和细胞膜破坏。在这项研究中,对菊三七进行了四种处理,包括对照(CK)、12%(g/g)蔗糖(ST)、10 μL/L 1-MCP(MT)和蔗糖与 1-MCP 的组合(SMT)。结果表明,三组处理均降低了呼吸速率,抑制了己糖的消耗,促进了淀粉和蔗糖的减少,这些物质被转化为包括葡萄糖和果糖在内的己糖,以维持细胞膜的完整性。同时,三组处理在 1 天内显著上调了 AI、NI、SS-C、淀粉酶和相应基因的表达水平,其中 AI 在调节己糖积累方面起着关键作用。此外,ST 在开始时对己糖积累有明显作用,而 MT 通过降低呼吸代谢来减少己糖消耗。值得注意的是,SMT 对抑制呼吸代谢、保持细胞膜完整性、提高己糖保留率具有最佳的保鲜效果,表明 ST 和 MT 在贮藏过程中存在协同作用。