棉花高级品系遗传变异、遗传力及其性状与皮棉产量和纤维品质的关系

O. Alishah
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引用次数: 2

摘要

O.阿里沙,2020。棉花高级品系遗传变异、遗传力及植物性状与皮棉产量和纤维品质的关系作物学报,22(4):350-364。(波斯)。植物性状的遗传变异性和遗传力及其与皮棉产量和纤维品质的相关性对棉花育种计划中的育种和选择策略以及遗传增益预测具有重要意义。为此,本研究于2016年和2017年在伊朗Gorgan的Hashem-Abad棉花研究站采用随机完全区组设计进行了4个重复的田间试验。对棉花40个基因型的16个数量和质量性状进行变异、遗传力和遗传改良评价;31个重组自交系(F7)和9个亲本基因型。方差分析以及表型、基因型和环境方差分析表明,棉花基因型间存在较大差异。聚类分析将棉花基因型分为3个不同的类别。总体而言,所有性状的表型变异系数(PCV)估计值均高于基因型变异系数(GCV)估计值,表明环境对所研究性状有影响。籽棉产量、合束枝数和单束枝数的PCV和GCV值最高。衣分(76.7%和15.2%)、铃数(72.6%和23.5%)、铃重(67.9%和19.7%)和丛数(56.8%和79.3%)具有较高的遗传力和遗传改良性,说明这些性状具有加性基因作用和对选择的有利响应。上述性状均与籽棉产量呈显著正相关,是籽棉产量的主要组成部分。结果表明,单株铃数、铃重、衣分和单株丛枝数的选择是早期间接性棉花产量和纤维品质改良的理想选择指标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessment of genetic variability, heritability and association of plant attributes with lint yield and fiber quality in advanced lines of cotton (Gossypium hirsutum L.)
Alishah, O. 2020. Assessment of genetic variability, heritability and association of plant attributes with lint yield and fiber quality in advanced lines of cotton (Gossypium hirsutum L.). Iranian Journal of Crop Sciences. 22(4): 350-364. (In Persian). Information on genetic variability and heritability of plant attributes and their correlation with lint yield and fiber quality is important for planning breeding and selection strategies for prediction of genetic gains in cotton breeding programs. For these purpose, a field experiment was carried out using randomized complete block design with four replications in 2016 and 2017 at Hashem-Abad cotton research station, Gorgan, Iran. Variability and heritability and genetic improvement for sixteen quantitative and qualitative traits were evaluated in 40 cotton genotypes including; 31 recombinant inbred lines (F7) and nine parental genotypes.in. The analyisis of variance as well as phenotypic, genotypic and environmental variances revealed high variation among cotton genotypes. Cotton genotpeswere grouped in three distinct classes using cluster analysis. In general, phenotypic coefficient of variation (PCV) estimates were higher than genotypic coefficients of variation (GCV) for all the studied attributes, implying the environment effect on the studied traits. The highest PCV and GCV were estimated for seed cotton yield, sympodial and monopodial branch numbers. High heritability and genetic improvement was observed in lint percentage (76.7% and 15.2%, respectively), boll number (72.6% and 23.5%, respectively), boll weight (67.9% and 19.7%, respectively) and sympodial number (56.8% and 79.3%, respectively), indicating the effect of additive gene action and favorable response of these traits to selection. Also, the above mentioned traits had significant positive correlation with seed cotton yield and reaffirmed to be the main cotton yield components. The results indicated that selection for boll number per plant, boll weight, lint percentage and sympodial branch number per plant are desirable selection indices for indirect selection for lint yield and fiber quality improvement of cotton at early generations.
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