辐照对饲料豇豆种子生长和生产参数的影响

U. Abd-Elhameed, H. Lotfy, A. Abd El-Rahman, E. Salem
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引用次数: 0

摘要

通过对饲料豇豆种子发芽和生长的研究,探讨了γ对饲料豇豆种子生长的影响。干种子以10至30克不等的不同剂量暴露于伽马源。结果表明:在萌发期,辐照样品的茎、根的长度、厚度和鲜重均较对照样品有所增加。推导出的方程表明,不同γ辐射剂量(10、20和30 krad)下不同播期(5、10、15和20 d)茎长、茎粗和茎鲜质量的r2分别为(0.73 ~ 0.99)、(0.85 ~ 1.00)和(0.96 ~ 0.99),茎长和根长与γ辐射剂量(10、20和30 krad)的相关性较高。生长参数与辐照剂量之间存在显著差异。因此,我们发现,随着长度的增加;与对照和处理相比,增加辐照剂量对豇豆茎根厚度和鲜质量的影响。同时,通过延长发芽期,发现随着辐照剂量的增加,豇豆种子萌发参数的增加百分比呈下降趋势。因此,我们可以减少饲料的缺口。小米和豇豆。在植物中发现谷子和豇豆品种较多,耐受性较好。考察了利用诱变技术进行作物改良的第一个先决条件。谷子作物的LD50为6693gy, TN578和IT90K 372-1-2豇豆品种的LD50分别为176,6和209,4 Gy。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gamma Irradiation Affects to Growth And Productivity Parameters of Feed Cowpea Seeds
The effect of gamma was investigated by studying plant germination and growth of feed cowpea seeds criteria. Dry seeds were exposed to gamma sources at different doses ranging from 10 to 30 krad. Results were summarized as follows: all growth parameters lengths, thicknesses and fresh weight of stem and root of irradiated samples increased in comparison with the control sample during the germination period. Developed equations showed that, high relation between stem and root lengths exposed to different Gamma radiation doses (10, 20 and 30 krad) after different days of sowing (5, 10, 15 and 20 days), because of R 2 was ranged between (0.73 – 0.99), (0.85 – 1.00) and (0.96 – 0.99) for lengths, thicknesses and fresh mass of stem, respectively. There significant differences between the growth parameters and irradiation doses were used. So, it was found that, an increasing length; thickness and fresh mass of stem and root for cowpea plant by increasing irradiation doses compared with control or treatments. Meanwhile, by increasing germination period, it was noticed that, there is a decreasing percentages increase in germination parameters of cowpea seeds by increasing irradiation doses. So, we can reduce the gap of decreases the fodders. millet and cowpea. in in the Plant to find out varieties millet and cowpea, more and tolerant. examines the as a first prerequisite step, for crop improving using mutation induction technique. The LD50 was found to be 669,3Gy for millet crop and respectively 176,6 and 209,4 Gy for TN578 and IT90K 372-1-2 cowpea varieties.
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