伽马射线对亚麻基因型 Linum usitatissimum L 的生长、产量和产量成分八个性状的影响

Saad Edan Abdullah Al_Raheem, A. Anees
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引用次数: 0

摘要

为研究伽马射线对亚麻作物基因变异的影响,2020-2021 年期间在萨拉赫丁省阿拉姆区的农田里进行了一项田间试验。研究因素包括四种伽马射线水平(0、9、18 和 27 Gy)和六种亚麻作物基因型(Sakha1、Sakha2、Sakha3、Giza8、Syrian 和 Poloni),采用完全随机区组设计,分小区系统,三次重复,研究性状包括 50%开花持续时间和成熟天数、株高、叶片比、无性系分枝数、蒴果数、种子数、千粒重、植株产量和种子产量。研究结果表明,伽马射线对所有研究的性状都有显著影响,对比处理的植株50%开花天数和成熟天数分别为(110.24)天和(155.05)天,而接受9Gy辐照的植株在叶片百分比(21.基因型 Sakha1 在无性系分枝数(3.63)分枝植株-1、每株蒴果数(54.35)蒴果植株-1、单株产量(2.22)克植株-1 和种子产量(433.63)公斤公顷-1 方面的平均值最高。至于交互作用,非辐照 Sakha1 基因型的交互作用显著,其单株蒴果数、每粒蒴果种子数、单株产量和种子总产量(62.22)蒴果株-1 9.96 粒种子蒴果-1(2.89)克植株-1(578.60)千克公顷-1 的特征值分别最高。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Gamma Rays on Growth, Yield and Yield Components Eight Traits of Flax Genotypes Linum usitatissimum L
A field experiment was carried out at agricultural field in al-Alam district\Sallahiddin Governorate during 2020-2021 season to study the Creation of genetic variations in the flax crop as a result of gamma rays. The study factors included four levels of gamma rays, which were 0, 9, 18 and 27 Gy and six genotypes of the flax crop, which were Sakha1, Sakha2, Sakha3, Giza8, Syrian and Poloni, use a completely randomized block design with split plot system and was used three replications, traits studied were Duration to 50% flowering  and Duration of days to maturity, Plant height, Leaves ratio, Number of vegetative branches, Number of capsules Number of seeds, 1000 seeds weight, Plant yield and seed yield.The results of the study indicated that gamma rays had a significant effect on all studied traits, comparison treatment gave a lower value from the number of days to flowering 50% of plants and days to maturity (110.24) and (155.05) days, respectively, while the plants irradiated with the level 9 Gy recorded a significant superiority in the percentage of leaves (21.46) %, while the non-irradiated plants outperformed in the rest of the studied traits. the genotype Sakha1 gave the highest average mean in characteristics of number of vegetative branches (3.63) branch plant-1, number of capsules per plant (54.35) capsule plant-1, individual plant yield (2.22) gm plant-1, and seeds yield (433.63) kg ha-1. As for the interaction, it was significant through the non-irradiated Sakha1 genotype, which gave the highest value of the characteristics of the number of capsules per plant, the number of seeds per capsule, individual plant yield and total seed yield (62.22) capsule plant-1 9.96 seed capsule-1 (2.89) g plant-1 (578.60) kg ha-1, respectively.
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