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γ 射线辐照对不同种子含水量小麦(Triticum aestivum L.)形态、生化和分子方面的影响。

Application of gamma irradiation on morphological, biochemical, and molecular aspects of wheat (Triticum aestivum L.) under different seed moisture contents.

机构信息

Crop and Horticultural Science Research Department, Bushehr Agricultural and Natural Resources Research and Education Center, AREEO, Bushehr, Iran.

Agriculture Research School, Nuclear Science and Technology Research Institute, PO Box 31485-498, Karaj, Iran.

出版信息

Sci Rep. 2022 Jun 30;12(1):11082. doi: 10.1038/s41598-022-14949-6.

Abstract

Nuclear technology is currently used as a tool in mutation breeding to improve crops by increasing genetic variation. The ionization of gamma rays produces large amounts of free radicals, simulating stressors in the natural environment. To avoid gamma-ray-induced oxidative stress, plants use antioxidant defense systems. Exposure of plants to irradiation can affect the germination, growth, and production of metabolites. Plants' sensitivity to irradiation depends on genetic and environmental factors such as moisture content. For this purpose, the effects of different gamma irradiation doses [0, 100, 200, 300, and 400 Gray (Gy)] and different seed moisture contents (7, 13, and 19%) on traits such as seed germination, seedling growth, molecular and biochemical alterations in antioxidant enzymes were examined in the current study. Based on the results, the highest seed germination percentage was observed in the interaction effect of seed moisture at 13% with an irradiation dose of 400 Gy (98.89%). Seedling survival percent and seedling length decreased with increasing doses of gamma irradiation at different seed moisture contents. Increasing gamma irradiation doses were reduced root and stem fresh and dry weight, and root and stem length. The highest level of catalase enzyme activity and expression was observed at 200 and 300 Gy irradiation doses at different moisture contents. The peroxidase and polyphenol oxidase gene expression were reduced at all contents of gamma irradiation doses and seed moisture compared to the control. It can be concluded that the dose of 200-300 Gy of gamma irradiation reduced plant growth by 30% in terms of fresh and dry weight and length of plants, as well as enhanced the expression of antioxidant enzymes. The results of this study could help plant breeders select an appropriate dose rate in wheat for further research.

摘要

核技术目前被用作诱变育种的工具,通过增加遗传变异来改良作物。伽马射线的电离会产生大量自由基,模拟自然环境中的胁迫因素。为了避免伽马射线诱导的氧化应激,植物利用抗氧化防御系统。植物暴露于辐照下会影响其萌发、生长和代谢产物的产生。植物对辐照的敏感性取决于遗传和环境因素,如含水量。为此,本研究考察了不同伽马辐照剂量[0、100、200、300 和 400 戈瑞(Gy)]和不同种子含水量(7、13 和 19%)对种子萌发、幼苗生长、抗氧化酶的分子和生化变化等特性的影响。基于结果,在种子含水量为 13%、辐照剂量为 400 Gy 的互作效应下观察到最高的种子萌发率(98.89%)。随着不同种子含水量的伽马辐照剂量的增加,幼苗成活率和幼苗长度降低。随着伽马辐照剂量的增加,根和茎的鲜重和干重以及根和茎的长度降低。在不同含水量下,过氧化氢酶酶活性和表达的最高水平出现在 200 和 300 Gy 辐照剂量下。与对照相比,在所有伽马辐照剂量和种子含水量下,过氧化物酶和多酚氧化酶基因表达均降低。可以得出结论,200-300 Gy 的伽马辐照剂量以鲜重和干重以及植株长度的 30%降低了植物的生长,并增强了抗氧化酶的表达。本研究的结果可以帮助小麦种植者选择适当的剂量率进行进一步研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/001b/9246975/8e25877b1aae/41598_2022_14949_Fig1_HTML.jpg

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