Faculty of Agriculture and Natural Resources, University of Mohaghegh Ardabili, Ardabil, Iran.
Moghan College of Agriculture and Natural Resource, University of Mohaghegh Ardabili, Ardabil, Iran.
Int J Radiat Biol. 2023;99(9):1424-1432. doi: 10.1080/09553002.2023.2173821. Epub 2023 Feb 13.
The current study investigated the effects of gamma irradiation on biochemical parameters and secondary metabolite accumulation in Summer Savory under field conditions.
The dry seeds of Summer Savory (with a moisture content of 12%) were exposed to gamma radiation at the doses of 20, 40, 60, 80, and 100 Gy. Non-irradiated seeds (0 Gy) were used as control.
Our findings showed that gamma radiation at low doses (20-40 Gy) had no effect on biochemical parameters and secondary metabolites accumulation in . These parameters are steadily and significantly increased by raising gamma irradiation doses from 40 to 100 Gy. The highest amount of chlorophyll a and b, carotenoids, anthocyanin, and total phenolic and flavonoid content were observed in 80 and 100 Gy treatments. Plants exposed to 80 and 100 Gy treatments accumulated the maximum amounts of rosmarinic acid and caffeic acid, respectively. Furthermore, the analysis of essential oil revealed that gamma radiation significantly alters its components. Carvacrol, α-Pinene, and α-Thujene levels raised dramatically compared to control with an increase in gamma irradiation dose from 20 to 100 Gy, while Thymol and α-Terpinene levels lowered.
Our results showed that treatment of Summer Savory seeds with gamma radiation at 80 and 100 Gy doses could significantly be raised biochemical parameters and secondary metabolites accumulation under field conditions. The current study showed that gamma irradiation could be used as a pre-sowing elicitor to improve the quantity and quality of phytochemicals in Summer Savory.
本研究在田间条件下研究了γ辐照对夏季香薄荷生化参数和次生代谢物积累的影响。
将夏季香薄荷(含水量为 12%)的干种子暴露在 20、40、60、80 和 100Gy 的γ射线下。未辐照的种子(0Gy)用作对照。
我们的研究结果表明,低剂量(20-40Gy)的γ辐射对夏季香薄荷的生化参数和次生代谢物积累没有影响。这些参数通过将γ辐射剂量从 40 增加到 100Gy 而稳定且显著增加。叶绿素 a 和 b、类胡萝卜素、花青素以及总酚和类黄酮含量在 80 和 100Gy 处理中最高。暴露于 80 和 100Gy 处理的植物分别积累了最高量的迷迭香酸和咖啡酸。此外,对精油的分析表明,γ辐射显著改变了其成分。与对照相比,20 至 100Gy 的γ辐射剂量增加,香芹酚、α-蒎烯和α-侧柏烯的含量急剧上升,而百里香酚和α-松油烯的含量下降。
我们的结果表明,用 80 和 100Gy 剂量的γ辐射处理夏季香薄荷种子可显著提高田间条件下的生化参数和次生代谢物积累。本研究表明,γ辐射可作为一种播种前诱导剂,提高夏季香薄荷中植物化学物质的数量和质量。