2000Legume Research - An International JournalRequires access

Heterosis and combining ability in chickpea (Cicer arietinum L.).

N. D. Sarode, R. B. Deshmukh, J. V. Patil, M. R. Manjare, L. B. Mhase

Open publisher page 3 citations

Abstract

Heterosis and combining ability studies involving 8 genotypes in chickpea revealed the importance of variability in expression of heterosis. The hybrid Phule G-89219 x Phule G-12 found highly heterotic for seed yield/plant as well as pods/plant and 100 seed weight. Close association between divergence and heterosis was noticed in most of the crosses for seed yield/plant and pods/plant. The components of variances due to g.c.a. and s.c.a. revealed the predominance of non-additive gene action for all the characters und~r study except 100 seed weight. The genotype Phule G-89219 was found to be good combiner for seed yield/plant and pods/plant. Whereas the genotypes ICC-4958 and Bheema observed to be good general combiner for seed yield/plant and 100 seed weight. The crosses Phule G-89219 x Phule G-12 and Phule G-89219 x lCC-4958 were identified as the best combinations and could be exploited for improving seed yield in chickpea.

About this research paper

What this paper is about

Heterosis and combining ability studies involving 8 genotypes in chickpea revealed the importance of variability in expression of heterosis. The hybrid Phule G-89219 x Phule G-12 found highly heterotic for seed yield/plant as well as pods/plant and 100 seed weight. Close association between divergence and heterosis was noticed in most of the crosses for seed yield/plant and pods/plant. The components of variances due to g.c.a. and s.c.a. revealed the predominance of non-additive gene action for all the characters und~r study except 100 seed weight. The genotype Phule G-89219 was found to be good combiner for seed yield/plant and pods/plant. Whereas the genotypes ICC-4958 and Bheema observed to be good general combiner for seed yield/plant and 100 seed weight. The crosses Phule G-89219 x Phule G-12 and Phule G-89219 x lCC-4958 were identified as the best combinations and could be exploited for improving seed yield in chickpea.

Why it matters

OpenAlex reports 3 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

Heterosis and combining ability studies involving 8 genotypes in chickpea revealed the importance of variability in expression of heterosis. The hybrid Phule G-89219 x Phule G-12 found highly heterotic for seed yield/plant as well as pods/plant and 100 seed weight. Close association between divergence and heterosis was noticed in most of the crosses for seed yield/plant and pods/plant. The components of variances due to g.c.a. and s.c.a. revealed the predominance of non-additive gene action for all the characters und~r study except 100 seed weight. The genotype Phule G-89219 was found to be good combiner for seed yield/plant and pods/plant. Whereas the genotypes ICC-4958 and Bheema observed to be good general combiner for seed yield/plant and 100 seed weight. The crosses Phule G-89219 x Phule G-12 and Phule G-89219 x lCC-4958 were identified as the best combinations and could be exploited for improving seed yield in chickpea.

Key concepts: Heterosis, Forensic science, Biology, Yield (engineering), Horticulture, Hybrid, Veterinary medicine, Biotechnology

Related papers

Back to paper searchBrowse research topicsOriginal source
Heterosis and combining ability in chickpea (Cicer arietinum L.). — Research Paper | ScholarLens