2010Electronic Journal of Plant BreedingOpen access

Combining ability analysis for yield and yield component traits in finger millet (Eleusine coracana (L.) Gaertn.).

C. Priyadharshini, T. Raguchander, A. J. Joel

Open full text 1 citations

Abstract

An experiment was conducted to estimate the gca and sca effects for yield and yield attributing traits in finger millet. In the present investigation, the parents were mated in half diallel mating design. The trial was conducted at Tamil Nadu Agricultural University, Coimbatore. Anova revealed that there was sufficient variability among genotypes, parents, and hybrids. Parents CO (Ra) 14, TNAU 1039 and CO 9 were found to be good combiners for yield and its attributing traits with highly significant per se performance. The parents with high gca effects were utilized in the identification of superior hybrids with favourable genes for grain yield and its component traits. In case of sca effects, crosses TNAU 1039 x CO (Ra) 14 exhibited higher per se performance and sca effects for yield and its component trait under evaluation. The crosses with high sca effects may be exploited to fix high yield in advanced generations. The sca variances were higher compared to gca variances for all the traits under study except the longest finger length which indicated the predominance of non- additive gene action in the control of these traits.

About this research paper

What this paper is about

An experiment was conducted to estimate the gca and sca effects for yield and yield attributing traits in finger millet. In the present investigation, the parents were mated in half diallel mating design. The trial was conducted at Tamil Nadu Agricultural University, Coimbatore. Anova revealed that there was sufficient variability among genotypes, parents, and hybrids. Parents CO (Ra) 14, TNAU 1039 and CO 9 were found to be good combiners for yield and its attributing traits with highly significant per se performance. The parents with high gca effects were utilized in the identification of superior hybrids with favourable genes for grain yield and its component traits. In case of sca effects, crosses TNAU 1039 x CO (Ra) 14 exhibited higher per se performance and sca effects for yield and its component trait under evaluation. The crosses with high sca effects may be exploited to fix high yield in advanced generations. The sca variances were higher compared to gca variances for all the traits under study except the longest finger length which indicated the predominance of non- additive gene action in the control of these traits.

Why it matters

OpenAlex reports 1 citations for this work. Citation counts describe recorded attention and do not establish research quality.

Key contribution

A contribution statement is not available in the OpenAlex record.

Method / approach

Method details are not available in the OpenAlex metadata.

Main findings

Findings are not separately available in the OpenAlex metadata.

Limitations

Limitations are not available in the OpenAlex metadata.

Applications

Application details are not available in the OpenAlex metadata.

Available abstract

An experiment was conducted to estimate the gca and sca effects for yield and yield attributing traits in finger millet. In the present investigation, the parents were mated in half diallel mating design. The trial was conducted at Tamil Nadu Agricultural University, Coimbatore. Anova revealed that there was sufficient variability among genotypes, parents, and hybrids. Parents CO (Ra) 14, TNAU 1039 and CO 9 were found to be good combiners for yield and its attributing traits with highly significant per se performance. The parents with high gca effects were utilized in the identification of superior hybrids with favourable genes for grain yield and its component traits. In case of sca effects, crosses TNAU 1039 x CO (Ra) 14 exhibited higher per se performance and sca effects for yield and its component trait under evaluation. The crosses with high sca effects may be exploited to fix high yield in advanced generations. The sca variances were higher compared to gca variances for all the traits under study except the longest finger length which indicated the predominance of non- additive gene action in the control of these traits.

Key concepts: Eleusine, Diallel cross, Hybrid, Biology, Mating design, Heritability, Forensic science, Finger millet

Related papers

Back to paper searchBrowse research topicsOriginal source
Combining ability analysis for yield and yield component traits in finger millet (Eleusine coracana (L.) Gaertn.). — Research Paper | ScholarLens