Dou Jianhua, Wang Jie, Tang Zhongqi, Yu Jihua, Wu Yue, Liu Zeci, Wang Junwen, Wang Guangzheng, Tian Qiang
College of Horticulture, Gansu Agriculture University, Lanzhou 730070, China.
State Key Laboratory of Aridland Crop Science, Gansu Agricultural University, Lanzhou 730070, China.
Foods. 2022 Dec 19;11(24):4097. doi: 10.3390/foods11244097.
Melatonin plays key roles in improving fruit quality and yield by regulating various aspects of plant growth. However, the effects of how melatonin regulates primary and secondary metabolites during fruit growth and development are poorly understood. In this study, the surfaces of tomato fruit were sprayed with different concentrations of melatonin (0, 50, and 100 µmol·L) on the 20th day after anthesis; we used high-performance liquid chromatography (HPLC) and liquid chromatography/mass spectrometry (LC/MS) to determine the changes in primary and secondary metabolite contents during fruit development and measured the activity of sucrose metabolizing enzymes during fruit development. Our results showed that 100 µmol·L melatonin significantly promoted the accumulation of soluble sugar in tomato fruit by increasing the activities of sucrose synthase (SS), sucrose phosphate synthase (SPS), and acid convertase (AI). The application of 100 µmol·L melatonin also increased the contents of ten amino acids in tomato fruit as well as decreased the contents of organic acids. In addition, 100 µmol·L melatonin application also increased the accumulation of some secondary metabolites, such as six phenolic acids, three flavonoids, and volatile substances (including alcohols, aldehydes, and ketones). In conclusion, melatonin application improves the internal nutritional and flavor quality of tomato fruit by regulating the accumulation of primary and secondary metabolites during tomato fruit ripening. In the future, we need to further understand the molecular mechanism of melatonin in tomato fruit to lay a solid foundation for quality improvement breeding.
褪黑素通过调节植物生长的各个方面,在提高果实品质和产量方面发挥着关键作用。然而,褪黑素在果实生长发育过程中如何调节初级和次级代谢产物的作用却鲜为人知。在本研究中,在开花后第20天,用不同浓度的褪黑素(0、50和100 μmol·L)喷洒番茄果实表面;我们使用高效液相色谱(HPLC)和液相色谱/质谱(LC/MS)来测定果实发育过程中初级和次级代谢产物含量的变化,并测量果实发育过程中蔗糖代谢酶的活性。我们的结果表明,100 μmol·L的褪黑素通过提高蔗糖合酶(SS)、蔗糖磷酸合酶(SPS)和酸性转化酶(AI)的活性,显著促进了番茄果实中可溶性糖的积累。施用100 μmol·L的褪黑素还增加了番茄果实中十种氨基酸的含量,同时降低了有机酸的含量。此外,施用100 μmol·L的褪黑素还增加了一些次级代谢产物的积累,如六种酚酸、三种黄酮类化合物和挥发性物质(包括醇类、醛类和酮类)。总之,施用褪黑素通过调节番茄果实成熟过程中初级和次级代谢产物的积累,改善了番茄果实的内部营养和风味品质。未来,我们需要进一步了解褪黑素在番茄果实中的分子机制,为品质改良育种奠定坚实基础。