60Co-γ射线辐射对橡胶草种子萌发、幼苗生长及生理特性的影响

Effects of 60Co-γ radiation on seed germination, seedling growth, and physiological characteristics of Taraxacum kok-saghyz Rodin

  • 摘要: 【目的】 探究60Co-γ射线辐射对橡胶草种子萌发、幼苗生长和生理特性的影响,确定最佳辐射剂量,为选育优良新品种及丰富橡胶草种质资源提供理论依据。【方法】 以橡胶草K445种子为试验材料,采用不同辐射剂量0(对照)、60、100、140、180 Gy的60Co-γ射线辐射处理橡胶草种子,对比分析不同辐射剂量处理对橡胶草种子萌发指标、幼苗形态指标及生理指标的影响。【结果】 经不同剂量60Co-γ射线辐射后,橡胶草种子发芽率、发芽势、发芽指数和出苗率均较对照组显著降低(P<0.05,下同),且随辐射剂量升高呈逐渐降低趋势,表明橡胶草种子萌发受到明显抑制。橡胶草种子经不同剂量60Co-γ射线辐射后,芽苗生长受到明显的抑制,不同剂量组间橡胶草胚根的形态差异明显;与对照组相比,60Co-γ射线辐射后橡胶草的胚根明显变短,根尖呈棕褐色坏死,随辐射剂量的增加,胚根坏死程度加深。随着辐射剂量的增加,橡胶草种子的出苗率和相对成苗率均呈降低趋势,各剂量处理组间存在显著差异;幼苗的芽长、根长、干重和鲜重整体上也呈降低趋势,表明不同剂量60Co-γ射线对橡胶草幼苗生长均有明显抑制作用,且随着辐射剂量的增加,幼苗生长受到的抑制越明显。通过建立辐射剂量(x)与相对成苗率(y)最优拟合回归方程y=-0.550x+84.825,R2=0.828,计算获得橡胶草50%相对成苗率的半致死剂量(LD50)为63.32 Gy,即推荐辐射剂量。随着辐射剂量的增加,过氧化氢(H2O2)含量和丙二醛(MDA)含量呈先升高后降低的趋势,且均显著高于对照组;橡胶草幼苗叶片的过氧化物酶(POD)、超氧化物歧化酶(SOD)和过氧化氢酶(CAT)活性呈先升高后降低的趋势,均显著高于对照组。【结论】 橡胶草对60Co-γ射线辐射表现出较高的敏感性,LD50仅为63.32 Gy,且60Co-γ射线辐射下橡胶草种子萌发和幼苗生长表现出剂量依赖性和抑制效应,适宜的辐射剂量可激活橡胶草幼苗的抗氧化防御系统,但超过一定剂量后,防御系统被破坏,细胞膜脂质过氧化程度加剧。

     

    Abstract: 【Objective】 This study aimed to investigate the effects of 60Co-γ radiation mutagenesis on seed germination, seedling growth, and physiological characteristics of Taraxacum kok-saghyz Rodin, to determine the optimal radiation dose, providing theoretical basis for breeding novel superior varieties and enriching Taraxacum kok-saghyz Rodin germplasm resources. 【Method】 Seeds of Taraxacum kok-saghyz Rodin K445 were used as experimental materials. Seeds were treated with different 60Co-γ radiation doses 0 (control,CK), 60, 100, 140, 180 Gy to conduct comparative analysis of the effects of different radiation dose treatments on seed germination indicators, seedling morphological indicators, and physiological indicators of Taraxacum kok-saghyz Rodin. 【Result】 After different doses of 60Co-γ radiation, the germination rate, germination potential, germination index, and seedling emergence rate of Taraxacum kok-saghyz Rodin were significantly decreased compared to control group (P<0.05, the same below), exhibiting a gradual decreasing trend with increasing radiation dose, indicating that seed germination was markedly inhibited. After different doses of 60Co-γ radiation for Taraxacum kok-saghyz Rodin seeds, seedling growth was markedly inhibited, with marked morphological radicle differences between different dose groups; compared with the control group, radicles were noticeably shortened after radiation, with brown necrosis at the root tips, and radicle necrosis turned severer as radiation dose increased. As radiation dose increased, both seedling emergence rate and relative seedling rate of Taraxacum kok-saghyz Rodin seeds showed a decreasing trend, with significant differences between dose treatment groups; leaf length, root length, dry weight, and fresh weight of seedlings also generally decreased, indicating that different 60Co-γ radiation doses markedly inhibited seedling growth of Taraxacum kok-saghyz Rodin, and seedling growth inhibition was intensified as radiation dose increased. By establishing the optimal regression equation of radiation dose (x) and relative seedling rate (y) as y=-0.550x+84.825, R2=0.828, the semi-lethal dose (LD50) for 50% relative seedling rate of Taraxacum kok-saghyz Rodin was calculated to be 63.32 Gy, which was the recommended radiation dose. As radiation dose increased, contents of hydrogen peroxide (H2O2) and malondialdehyde (MDA) first increased and then decreased, all significantly higher than those in the control group; activities of peroxidase (POD), superoxide dismutase (SOD), and catalase (CAT) in seedling leaves showed an initial increase followed by a decrease, all significantly higher than the control group. 【Conclusion】 Taraxacum kok-saghyz Rodin exhibits high sensitivity to 60Co-γ radiation, with an LD50 of only 63.32 Gy. Under 60Co-γ radiation, the seed germination and seedling growth of Taraxacum kok-saghyz Rodin show dose dependency and inhibitory effects. Appropriate radiation dose can activate antioxidant defense system in Taraxacum kok-saghyz Rodin seedlings, but excessive doses can damage the defense system, causing increased lipid peroxidation of cell membranes.

     

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