Genetic architecture of barley (Hordeum vulgare L.) genotypes for grain yield and yield attributing traits

S. Swati, K. C. Tiwari, J. Jaiswal, Anil Kumar, P. Goel
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引用次数: 3

Abstract

Combining ability for yield and its related traits was studied in 13 barley genotypes and their F1 progenies obtained through line x tester mating design. Significant differences for most of the traits in both gca and sca components revealed the importance of both additive and non-additive gene actions with the predominant effect of nonadditive gene action. Among parents, lines DWRB 134, BH 902 and RD2919 emerged as good general combiner for yield and important component traits whereas DWRUB 52 was identified as the best tester. Hence, these are considered as good general combiners for deriving desirable transgressive segregants for specific characters. However, line BH 902 emerged as good general combiner for maximum number of yield contributing traits i.e., peduncle length, spike length, awn length, productive tillers per plant, flag leaf area, number of grains per spike, weight of spike, 1000 grain weight, biological yield per plant and grain yield per plant. Among thirty crosses, seven displayed significant and positive specific combining ability (sca) effects for grain yield. Out of these seven crosses, four hybrids viz., BH 976 × RD 2849, DWRB 134 × DWRUB 52, BH 965 × DWRUB 52, BH 902 ×DWRB 101, were identified as the best promising combinations having good specific combining ability effects along with high per se performance for grain yield as well as other attributing characters in desired direction. The estimates of general combining ability (gca) effects as a whole suggested that if most of the characters are to be improved, inclusion of F1 hybrids showing high sca in crop improvement program and parents with good gca, into multiple crosses, bi-parental mating, and diallel selective mating could prove a worthwhile approach for tangible advancement of grain yield in barley..
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大麦(Hordeum vulgare L.)籽粒产量和产量性状基因型的遗传结构
通过x系试验配合力设计,对13个大麦基因型及其F1后代的产量配合力及其相关性状进行了研究。gca和sca组分的大部分性状存在显著差异,表明加性和非加性基因作用都很重要,但以非加性基因作用为主。在亲本中,DWRB 134、bh902和RD2919是产量和重要成分性状的良好综合组合,而DWRB 52是最佳组合。因此,这些被认为是为特定性状衍生出理想的越界分离的良好一般组合子。然而,品系bh902在最大产量贡献性状上表现良好,即:花序长度、穗长、芒长、单株有效分蘖数、旗叶面积、每穗粒数、穗重、千粒重、单株生物产量和单株籽粒产量。在30个杂交组合中,有7个对籽粒产量表现出显著的正比配合力效应。其中,BH 976 × RD 2849、DWRB 134 × DWRUB 52、BH 965 × DWRUB 52、BH 902 ×DWRB 101 4个组合具有较好的特定配合力效应,在籽粒产量和其他性状方面具有较高的自身表现。一般配合力(gca)效应的总体估计表明,如果要提高大多数性状,在作物改良计划中纳入高配合力的F1杂交种和具有良好gca的亲本,进行多重杂交、双亲本配合力和双列选择配合力,可能是切实提高大麦籽粒产量的一种有价值的方法。
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