Genetic variabitity, heritability and genetic advance for yield and yield contributing traits of greengram

Variability in yield and yield contributing traits of greengram

Authors

  • TAMALAPAKULA ANUHYA JAYAPRADA TAMALAPAKULA SHUATS, ALLAHABAD
  • G ROOPA LAVANYA
  • V RAM BABU
  • CH NAGA SAI KRISHNA
  • T SUDHEER REDDY

DOI:

https://doi.org/10.21921/jas.v8i2.7289

Keywords:

greengram, mungbean, variability, heritability, genetic advance

Abstract

Greengram is an important short duration pulse crop grown extensively throughout India. The productivity is very less when compared to other pulse crops in India and in Uttar Pradesh. Hence, the experiment was conducted with the aim of identifying different genotypes and characters that will be useful in improving its productivity. The present investigation was intended to study the extent of variation, heritability and genetic advance among different characters of greengram in sandy loam soils of Uttar Pradesh in a set of 20 genotypes including check Samrat in randomized block design with three replications during the Kharif, 2017. Observations were recorded for 13 quantitative characters. The genotypes KM11 584, KM11 583, RMG 1030, MH 934, NAVYA and SHARIF were identified as desirable genotypes. Harvest index, biological yield per plant, number of clusters per plant, number of seeds per pod exhibited high GCV, PCV, heritability and genetic advance as percent of mean. Thus priority should be given to these characters during selection in breeding programme for greengram yield improvement.

References

Anand G, Anandhi K and Paulpandi VK. 2016. Genetic variability, correlation and path analysis for yield and yield components in F6 families of Greengram (Vigna radiata (L.) Wilczek) under rainfed condition. Electronic Journal of Plant Breeding 7(2):434-437.

Biradar KS, Salimath PM and Ravikumar RL. 2007. Genetic studies in greengram and association analysis. Karnataka Journal of Agricultural Sciences 20(4):843-844.

Burton GW and Devane EH. 1953. Estimating heritability in tall Fesscue from replicated clonal marterial. Agronomy Journal 45:474-481.

Burton GW. 1952. Quantitative inheritance in grasses proceedings. International Grassland Congress 1:227-283.

De Candolle A. 1959. Origin of cultivated plants. Hafner Publication Company, New York, N. Y. (Reprint of 2nd edition).

Directorate of Pulse development. 2018. Annual Report 2017-18 DPD/Pub./TR/29/2017-18

Fisher RA. 1936. The correlation between relative on the supposition of genotypes grown in Kumaun Himalaya. Indian Journal of Genetics and Plant Breeding 66(1):37-38.

Johnson HW, Robinson HF and Comstock RE. 1955. Genotypic and phenotypic correlations in soybean and their implication in selection. Agronomy Journal 47:477- 483.

Karpechenko GD. 1925. Chromosomes of phaseonline. Bulletin Application of Botany 14:143-148.

Khaimichho EB, Hijam L, Sarkar KK and Mukherjee S. 2014. Genetic control and character association estimates of yield and yield attributing traits in some mungbean genotypes. Journal of Crop and Weed 10(2):82-88.

Lush. 1949. Inter-se correlation and regression of characters. Proceeding of American Society of Animal Production 33:293-301.

Narasimhulu R, Naidu NV, Priya SM, Rajarajeswari V and Reddy KHP. 2013. Genetic variability and association studies for yield attributes in mungbean (Vigna radiata (L.) wilczek). Indian Journal of Plant Sciences 2(3): 82-86.

Pinchhyo B, Lal GM and Thomas N. 2016. Studies on genetic variability, correlation and path analysis in greengram (Vigna radiata L. Wilczek) germplasm. International Journal of Agriculture Sciences 8(51):2267-2272.

Shiv A, Vinita R, Vadodariya GD, Modha KG and Patel RK. 2017. Genetic Variability, Heritability and Genetic Advance in F3 Progenies of Mungbean [Vigna radiata (L.) Wilczek]. International Journal of Current Microbiology and Applied Sciences 6(12):3086-3094.

Singh AK and Bhatt BP. 2013a. Effects of foliar application of zinc on growth and seed yield of late-sown lentil. Indian J. Agril. Sci. 83 (6): 622-626.

Singh AK, Kumar P and N Chandra. 2013b. Studies on yield production of mung bean (Vigna radiate) sown at different dates. J. Environ. Biol. 34: 1007-1011.

Singh AK, Singh SS, Prakash V, Kumar S and Dwivedi SK.2015.Pulses production in India: Present status, bottleneck and way forward. Journal of AgriSearch2 (2): 75-83.

Srivastava RL and Singh G. 2012. Genetic variability, correlation and path analysis in mungbean (Vigna radiata (L.) Wilczek). Indian Journal of Life Science 2(1):61-65.

Vavilov NI. 1951. The Origin, Variation, Immunity and Breeding of Cultivated Plants. (Translation by K.S. Chester). Chronica Botanica 13:1-364.

Wall LL, Gehrke CW, Neuner TE, Cathey RD, Rexroad PR. 1975. Total Protein Nitrogen: Evaluation and Comparison of Four Different Methods. Journal of the Association of Official Agricultural Chemists 85(4):811–817.

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Published

2021-06-30