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首页> 外文期刊>Journal of Food Processing & Technology >Radiation Sensitivity of Cajanus Cajan to Gamma Radiations
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Radiation Sensitivity of Cajanus Cajan to Gamma Radiations

机译:Cajanus Cajan对伽玛射线的辐射敏感性

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Gamma irradiation induces various physiological, biochemical alterations in plants with modulation of certain metabolic and defensive pathway. Pre-sowing seed irradiation is considered as an effective method of improving production, yield components and chemical composition in plants. In the present study Cajanus Cajan was subjected to gamma irradiation with absorbed doses 0 Gy, 30 Gy, 50 Gy, 100 Gy, 150 Gy and 200 Gy with a dose rate 2.08 Kilo Gray per hour (2.08 KGh-1). Cajanus cajan when exposed to variable doses of gamma radiation showed persistent changes in the growth and development under both in vivo & in vitro conditions. Radiation sensitivity test based on germination percentage of irradiated and non-irradiated seeds demonstrated that significant reduction in germination percentage was observed with increasing gamma dosage under both in vivo and in vitro conditions. Biochemical analysis confirmed that protein, photosynthetic pigments, proline are very sensitive to gamma radiation, and are good indicators of tolerance. Effective stimulatory dose for plant development under in vivo conditions is 100 Gy while the absorbed doses of 150 Gy and 200 Gy can prove detrimental. However under in vitro conditions, results hold 150 Gy as threshold dose for increasing plant growth, plant vigour and development. Conclusively productivity of Cajanus cajan and consequent economic gains could be enhanced through adoption of suitable cultivar and level of gamma radiation. Gamma rays prove to be an important tool in increasing the breeding efficiency and regeneration frequency, especially that of the recalcitrant varieties. Results in the present study provide sufficient evidence to the effect that γ-irradiation does activate a biochemical system.
机译:γ辐射通过调节某些代谢和防御途径,诱导植物产生各种生理,生化改变。播种前的辐照被认为是提高植物产量,产量构成和化学组成的有效方法。在本研究中,Cajanus Cajan以每小时2.08 Kilo Gray(2.08 KGh-1)的剂量率接受了0 Gy,30 Gy,50 Gy,100 Gy,150 Gy和200 Gy的γ射线辐照。当暴露于不同剂量的伽马射线时,卡贾努斯·卡扬在体内和体外条件下均显示出生长和发育的持续变化。基于辐照种子和未辐照种子的发芽百分比的辐射敏感性测试表明,在体内和体外条件下,随着γ剂量的增加,发芽百分比均显着降低。生化分析证实蛋白质,光合色素,脯氨酸对伽玛射线非常敏感,并且是耐受性的良好指标。在体内条件下植物生长的有效刺激剂量为100 Gy,而150 Gy和200 Gy的吸收剂量可能有害。但是,在体外条件下,结果保持150 Gy作为增加植物生长,植物活力和发育的阈值剂量。最终,可以通过采用合适的品种和伽马辐射水平来提高卡贾努斯·卡扬的生产力并因此提高经济收益。伽玛射线被证明是提高育种效率和再生频率的重要工具,尤其是顽calc型品种。本研究的结果提供了足够的证据证明γ辐射确实激活了生化系统。

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