Department of Agronomy, Gyeongsang National University, Jinju, 52828, Korea.
Division of Applied Science (Brain Korea 21 Program), Gyeongsang National University, Jinju, 52828, Korea.
Radiat Environ Biophys. 2022 Aug;61(3):465-477. doi: 10.1007/s00411-022-00986-2. Epub 2022 Jul 14.
Quinoa is one of the crops well-adapted to high altitude regions that can grow relatively well under drought, humid, and high UV radiation conditions. This study was performed to investigate the effects of gamma-radiation on quinoa. Seeds were treated with various doses of 50 Gy, 100 Gy, 200 Gy, 300 Gy, 400 Gy, 600 Gy, 800 Gy, and 1000 Gy. We investigated germination, as well as plant height, chlorophyll content, and normalized difference vegetation index (NDVI) at 0, 30, 44, 58, and 88 days after transplanting (DAT) and panicle weight at 88 DAT. The plants grown from the seeds treated at radiation doses greater than 200 Gy showed reduced values in most growth and physiological characteristics. The germination rate and germination speed were higher in the 50 Gy-treated seeds than in 0 Gy-treated (control) seeds. Plant height and panicle weight were highest in the plants from 50 Gy-treated seeds. Chlorophyll content was higher in all treated samples than in the controls. NDVI value showed the highest value in 0 Gy controls and plants treated with 50 Gy. The antioxidant activity was also higher in the plants from the seeds treated with 50 Gy and 100 Gy, showing a steady increase as the radiation dose increased even at 200 Gy. The plants from seeds treated with 0 Gy showed higher expression of proteins related to photorespiration and tubulin chains. The plants from seeds treated with 50 Gy induced more stress-responsive proteins.
藜麦是一种适应高海拔地区的作物,在干旱、潮湿和高 UV 辐射条件下能相对较好地生长。本研究旨在探讨γ射线对藜麦的影响。种子经不同剂量的 50Gy、100Gy、200Gy、300Gy、400Gy、600Gy、800Gy 和 1000Gy 处理。我们研究了种子萌发以及移栽后 0、30、44、58 和 88 天的株高、叶绿素含量和归一化差异植被指数(NDVI)和 88 天的穗重。在辐射剂量大于 200Gy 的种子中生长的植株在大多数生长和生理特性上表现出降低的值。在 50Gy 处理的种子中,发芽率和发芽速度高于 0Gy 处理(对照)的种子。株高和穗重在 50Gy 处理的种子中最高。所有处理样品的叶绿素含量均高于对照。NDVI 值在 0Gy 对照和 50Gy 处理的植株中最高。抗氧化活性在 50Gy 和 100Gy 处理的种子中也更高,即使在 200Gy 时,随着辐射剂量的增加,活性也呈稳定增加。在 0Gy 处理的种子中,与光呼吸和微管链相关的蛋白质表达更高。在 50Gy 处理的种子中诱导了更多的应激响应蛋白。