首页> 外文期刊>International Agrophysics >Genetic analysis of morphological and physical stem characteristics determining lodging resistance in two- and six-rowed barley (Hordeum vulgare L.) lines.
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Genetic analysis of morphological and physical stem characteristics determining lodging resistance in two- and six-rowed barley (Hordeum vulgare L.) lines.

机译:遗传分析的形态和物理茎特性决定了两行和六行大麦(Hordeum vulgare L.)品系的抗倒伏性。

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The study presents the results of genetic analysis of selected morphological and physical stem characteristics determining lodging resistance in doubled haploid (DH) lines of spring barley produced from F1 hybrids of the six-rowed variety Klimek with the two-rowed variety Maresi. The DH lines, the initial forms, and F1 and F2 hybrids were tested in three-year field trials. Stem length, outside diameter and the thickness of stem walls were analyzed. Lodging rate was observed and stem material elasticity was examined using the ultrasound method. Analysis of variance was conducted for the obtained data and 6-rowed lines were compared with 2-rowed lines in terms of the investigated characteristics. Moreover, on the basis of DH lines and F1 and F2 hybrids, genetic parameters determining additive gene effects [d], dominance effects [h] and the effects of non-allelic interaction of loci in the homozygous [i] and heterozygous state [l] were estimated. For the investigated characteristics significant values of parameter [d] were found. Dominance effects turned out to be significant for stem length, stem tissue elasticity and lodging rate. Non-allelic interaction of homo- and heterozygous loci was significant for stem tissue elasticity and lodging rate. A comparison of 6-rowed and 2-rowed lines in terms of the investigated characteristics showed that 6-rowed forms exhibited smaller length and lower elasticity of stems, thinner stem walls and higher lodging rate than 2-rowed lines. It was also found that environmental factors (years) had an effect on both the mean values of the analyzed characteristics and on the difference between the 2- and 6-rowed barley lines..
机译:这项研究提出了遗传学分析的结果,这些遗传分析结果决定了六行品种Klimek与两行品种Maresi的F1杂种产生的春大麦的双单倍体(DH)品系的抗倒伏性。在三年的田间试验中测试了DH系,初始形式以及F1和F2杂种。分析茎长度,外径和茎壁厚度。观察倒伏率,并使用超声方法检查茎部材料的弹性。对获得的数据进行方差分析,并根据研究的特征将6行线与2行线进行比较。此外,基于DH系以及F1和F2杂种,遗传参数决定了加性基因作用[d],优势作用[h]和纯合子[i]和杂合子状态[l]的基因座非等位基因相互作用。估计。对于所研究的特性,找到了参数[d]的显着值。事实证明,支配作用对茎长,茎组织弹性和倒伏率具有重要意义。纯和杂合基因座的非等位基因相互作用对茎组织弹性和倒伏率具有重要意义。对6行和2行品系的研究特征进行比较表明,与2行品系相比,6行形式的茎长度更短,茎的弹性更低,茎壁更薄,倒伏率更高。还发现环境因素(年)对分析特征的平均值以及2行和6行大麦系之间的差异都有影响。

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