Assessment of Gene Action and Identification of Heterotic Hybrids for Enhancing Yield in Field Pea

Author:

Yadav Indu1,Sharma Vijay1ORCID,Kumar Mukul1ORCID,Yadav Lalu Prasad2ORCID,Mishra Anuj1ORCID,Singh Vivek3,Singh Dhanda Parmdeep4,Yadav Alpa5,Yadav Manisha5,Singh Shalesh Kumar1,Kamaluddin 1,Prajapati Pawan Kumar1ORCID,Kaushik Prashant6,Gangwar Vaishali7

Affiliation:

1. Department of Genetics and Plant Breeding, Banda University of Agriculture and Technology, Banda 210001, India

2. ICAR-Central Horticultural Experiment Station, CIAH Regional Station, Godhra 389340, India

3. Department of Genetics and Plant Breeding, Chaudhary Sharvan Kumar Himachal Pradesh Agricultural University, Palampur 176062, India

4. Department of Biochemistry, Punjab Agricultural University, Ferozepur Road, Ludhiana 141027, India

5. Department of Botany, Indira Gandhi University, Rewari 122502, India

6. Instituto de Conservación y Mejora de la Agrodiversidad Valenciana, Universitat Politècnica de València, 46022 Valencia, Spain

7. Department of Crop Physiology, Banda University of Agriculture and Technology, Banda 210001, India

Abstract

Eight field pea parental lines and their twenty-eight F1s resulting from diallel design (excluding reciprocal) were analyzed for their combining ability and heterosis for yield and associated traits. ANOVA revealed significant variation among parents and among hybrids for days to 50% flowering, plant height, total number of pods, effective pods, seeds per pod, 100-seed weight, biological yield and seed yield; pod length also revealed significant differences among hybrids, suggesting the occurrence of considerable variability for studied traits. Crosses P-1541-16 × P-92-97-11 and P-1541-16 × P-1297-97 displayed significant heterosis over better-parent and control varieties for seed yield and associated traits. Combining ability analysis showedthat SCAvariance was considerably higher than corresponding GCAvariance for all traits. Genotype Aman and P-1297-97 were identified as good general combiners for seed yield, while cross P-1541-16 × P-1297-97, Aman × EC-564817, P-1541-16 × P-92-97-11 and P-1297-97 × P-92-97-11 were identified as specific cross-combiners for most of the studied traits. Consequently, these crosses might be exploited in future breeding programs to find desired segregants. PCA explained 81.68% and 83.34% variability in parents and crosses, respectively, for yield component. Furthermore, trait association between GCA effects and SCA effects demonstrates that biological yield, total number of pods, and effective pods exhibit additive gene action, but 100-seed weight exhibits non-additive gene action.

Publisher

MDPI AG

Subject

Horticulture,Plant Science

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