埃塞俄比亚亚麻籽(Linumusitatissimum L.)种质的形态-农艺性状、产油量和脂肪酸组分的遗传变异性和遗传力

Tadesse Ghiday, Wassu Mohamed, Y. Tsehaye, A. Wakjira, Chemeda Daba, Teasfaye Disasa
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引用次数: 0

摘要

有关遗传变异性和选择参数的综合信息对于设计育种策略至关重要。然而,有关埃塞俄比亚亚麻籽种质的信息非常有限。因此,本研究利用 126 个基因型(120 个埃塞俄比亚亚麻籽登录品种和 6 个已发布的品种)来估计遗传变异性、广义遗传率和遗传进展,并确定 19 个数量性状的选择。方差分析显示,所有性状的差异都非常显著(P < 0.01),表明所研究的亚麻籽基因型之间存在高度遗传多样性。每株种子产量和每株生物产量的 PCV 和 GCV 估计值差异较大,表明环境因素影响的重要性。在单株种子产量和单株生物产量方面,观察到了高遗传率和高遗传进展,这表明高遗传率是由加性基因效应造成的,因此选择可以有效地改善亚麻籽的这些性状。此外,每公顷产油量、蒴果数、二次分枝数、成熟天数、每公顷种子产量和株高的遗传率和遗传进展均为中等。这些结果表明,在这些性状中存在加性和显性基因效应的中间表达。在本研究中,观察到单株种子产量和单株生物产量的遗传率高且 GAM 高,这表明加性基因作用对这些性状的表达有更大的贡献;因此,可以通过选择来改善这些性状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Genetic Variability and Heritability of Morpho-Agronomic Traits, Oil Yield and Fatty Acid Components in Linseed (Linumusitatissimum L.) Germplasm in Ethiopia
Comprehensive information on genetic variability and selection parameters is very crucial to design breeding strategies. However, very limited information is available in Ethiopian linseed germplasm. Therefore, the present study was conducted to estimate genetic variability, broad sense heritability and genetic advance; and determine selection for 19 quantitative traits using 126 genotypes (120 Ethiopian linseed accessions and six released varieties). The analysis of variance showed highly significant (P < 0.01) differences for all of the traits demonstrating the presence of high genetic diversity among the studied linseed genotypes. Higher differences between PCV and GCV estimates were observed for seed yield per plant and biological yield per plant, signifying the importance of environmental factors influence. High heritability coupled with high genetic advance was observed for seed yield per plant and biological yield per plant, indicating that this high heritability is due to additive gene effects and therefore, selection can be effective for the improvement of linseed for these traits. In addition, moderate heritability coupled with moderate genetic advance was recorded for oil yield per hectare, number of capsules, number of secondary branches, days to maturity, seed yield per hectare and plant height. These results indicated the existence of intermediate expression in these traits for both additive and dominance gene effect. In the present study, high heritability coupled with high GAM was observed for seed yield per plant and biological yield per plant, indicating greater contribution of additive gene action for the expression of these traits; and therefore, improvement can be achieved through selection in these traits.
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