College of Life Sciences, Laboratory Center of Life Sciences, Nanjing Agricultural University, Nanjing 210095, China.
Life Science Group, Air Liquide (China) R&D Co., Ltd, Shanghai 201108, China.
Food Chem. 2024 Sep 30;453:139563. doi: 10.1016/j.foodchem.2024.139563. Epub 2024 May 7.
Molecular hydrogen is beneficial for fruits quality improvement. However, the mechanism involved, especially cellular metabolic responses, has not been well established. Here, the integrated widely targeted metabolomics analysis (UPLC-MS/MS) and biochemical evidence revealed that hydrogen-based irrigation could orchestrate, either directly or indirectly, an array of physiological responses in blueberry (Vaccinium spp.) during harvesting stage, especially for the delayed senescence in harvested stage (4 °C for 12 d). The hubs to these changes are wide-ranging metabolic reprogramming and antioxidant machinery. A total of 1208 distinct annotated metabolites were identified, and the characterization of differential accumulated metabolites (DAMs) revealed that the reprogramming, particularly, involves phenolic acids and flavonoids accumulation. These changes were positively matched with the transcriptional profiles of representative genes for their synthesis during the growth stage. Together, our findings open a new window for development of hydrogen-based agriculture that increases the shelf-life of fruits in a smart and sustainable manner.
氢气有益于改善水果品质。然而,其涉及的机制,尤其是细胞代谢反应,尚未得到很好的确立。在这里,综合广泛靶向代谢组学分析(UPLC-MS/MS)和生化证据表明,基于氢气的灌溉可以直接或间接地协调蓝莓(越橘属)在收获阶段的一系列生理反应,特别是对收获阶段(4°C 下 12 天)的衰老延迟。这些变化的关键是广泛的代谢重编程和抗氧化机制。共鉴定出 1208 种不同注释的代谢物,差异积累代谢物(DAMs)的特征表明,重编程特别涉及酚酸和类黄酮的积累。这些变化与生长阶段代表性基因的转录谱呈正相关,用于其合成。总之,我们的发现为发展基于氢气的农业开辟了一个新的窗口,以智能和可持续的方式延长水果的货架期。