Chinese Academy of Inspection and Quarantine, Beijing, China.
School of Food Science and Engineering, Nanjing University of Finance and Economics, Nanjing, China.
J Food Sci. 2023 Nov;88(11):4529-4543. doi: 10.1111/1750-3841.16784. Epub 2023 Oct 23.
Foliar spraying to improve the quality of fruits is a general approach nowadays. In this study, 10 ppm nano-selenium (nano-Se) diluted with distilled water was sprayed on peach leaves every 10 days for a total of 7 sprays during the fruit set period. And then their fruit quality was compared with that of control group. It was found that the firmness, soluble solid concentration, total phenol, and proanthocyanidin content of the peaches were raised after the nano-Se treatment. Moreover, the ascorbic acid glutathione loop (ASA-GSH loop) was fully activated in the nano-Se treated group, and the associated antioxidant capacity and enzyme activity were significantly increased. Metabolomics revealed that nano-Se could upregulate some metabolites, such as phenylalanine, naringenin, and pinocembrin, to fully activate the metabolism of phenylpropanoids. Further, based on transcriptomics, nano-Se treatment was found to affect fruit quality by regulating genes related to phenylpropanoid metabolism, such as arogenate/prephenate dehydratase (ADT), genes related to abscisic acid metabolism such as (+)-abscisic acid 8'-hydroxylase (CYP707A), and some transcription factors such as MYB. Based on the comprehensive analysis of physicochemical indicators, metabolomics, and transcriptomics, it was found that nano-Se improved fruit quality by activating phenylpropanoid metabolism and enhancing antioxidant capacity. This work provides insights into the mechanism of the effect of nano-Se fertilizer on peach fruit quality. PRACTICAL APPLICATION: The firmness and soluble solid concentration of peaches are higher after nano-Se treatment, which is more in line with people's demand for hard soluble peaches like "Yingzui." The antioxidant capacity, antioxidant substance content, and antioxidant enzyme activity of nano-Se-treated peaches are higher, with potential storage resistance and health effects on human body. The mechanism of nano-Se affecting peach quality was analyzed by metabolomics and transcriptomics, which is a reference and guide for the research and application of nano-Se.
叶面喷施提高果实品质是目前的一种常用方法。本研究在桃果实套袋后,每隔 10 天用 10ppm 的纳米硒(nano-Se)溶液(用蒸馏水稀释)喷施桃叶片,共喷施 7 次。并与对照组进行比较。结果发现,纳米硒处理后,桃的硬度、可溶性固形物浓度、总酚和原花青素含量均提高。此外,纳米硒处理组中的抗坏血酸-谷胱甘肽循环(ASA-GSH 循环)被完全激活,相关抗氧化能力和酶活性显著增加。代谢组学研究表明,纳米硒可以上调一些代谢物,如苯丙氨酸、柚皮素和松属素,从而充分激活苯丙烷代谢。进一步基于转录组学研究发现,纳米硒通过调控与苯丙烷代谢相关的基因,如莽草酸/预苯酸脱水酶(ADT)、与脱落酸代谢相关的基因如(+)-脱落酸 8'-羟化酶(CYP707A)和一些转录因子如 MYB,影响果实品质。基于理化指标、代谢组学和转录组学的综合分析,发现纳米硒通过激活苯丙烷代谢和增强抗氧化能力来提高果实品质。这项工作为纳米硒肥料对桃果实品质影响的作用机制提供了新的见解。
纳米硒处理后的桃硬度和可溶性固形物浓度较高,更符合人们对“硬溶质”如“映霜红”桃的需求。纳米硒处理桃的抗氧化能力、抗氧化物质含量和抗氧化酶活性较高,具有一定的贮藏抗性和对人体健康的影响。通过代谢组学和转录组学分析了纳米硒影响桃品质的机制,为纳米硒的研究和应用提供了参考和指导。