Diversity Analysis of Advanced Chickpea (Cicer arietinum L.) Derivatives

Authors

  • Arshvir K. Boparai Department of Genetics and Plant Breeding, CSK Himachal Pradesh Krishi Vishvavidyalaya, Palampur-176 062
  • G. Katna Department of Genetics and Plant Breeding, CSK Himachal Pradesh Krishi Vishvavidyalaya, Palampur-176 062

Keywords:

Chickpea, Divergence, Principal Component Analysis, Variability.

Abstract

Genetic diversity analysis of 130 advanced interspecific chickpea derivatives derived from four wide crosses (Cross I: PUSA 372 X ILWC 229, Cross II: PBG 5 X ILWC 229, Cross III: PBG 5 X ILWC 246 and Cross IV: BGD 72 X ILWC 246) was estimated at CSK HPKV, Research Sub-Station, Berthin, Bilaspur during rabi 2019-20. On the basis of Mahalanobis D2-statistics these interspecific derivatives along with 4 checks were grouped into 8 main clusters. Cluster I was the largest cluster among all having forty six derivatives. Maximum inter-cluster distance was observed between cluster IV and cluster VI and maximum intra cluster distance was showed by cluster IV. Therefore, a hybridization programme involving lines from cluster IV and cluster VI can be devised to yield desirable transgressive segregants. The principal component analysis, revealed that 75.27 per cent of total variation has been contributed by the first three principal components i.e., PC1 explained 45.15 per cent, PC2 explained 17.57 per cent and PC3 explained 12.55 per cent of total variation. The positive correlation between days to 50 per cent flowering, days to 75 per cent maturity, inter-node length and branches per plant as revealed by two-dimensional ordination bi-plot can be utilized effectively for the indirect selection of lines with early maturity and high yield.

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Published

2021-06-30

How to Cite

Boparai, A. K., & Katna, G. (2021). Diversity Analysis of Advanced Chickpea (<i>Cicer arietinum</i> L.) Derivatives. Himachal Journal of Agricultural Research, 47(1), 88–94. Retrieved from https://hjar.org/index.php/hjar/article/view/166074

Issue

Section

Short Communication

References

Alipoor Yamchi HM, Bihamta MR, Peyghambari SA, Naghavi MR and Majnoon Hoseini N. 2013. Grouping of Kabuli chickpea genotypes using multivariate statistical methods. Iranian Journal of Pulses Research 4: 21-34.

Dwivedi KK and Gaibriyal ML. 2009. Assessment of genetic diversity of cultivated chickpea (Cicer arietinum L.). Asian Journal of Agricultural Science 1: 7-8.

Farshadfar M and Farshadfar E. 2008. Genetic variability and path analysis of chickpea (Cicer arietinum L.) Landraces and Lines. Journal of Applied Sciences 8: 3951-3956.

Federer WT. 1955. Augmented Designs. Hawaiir Planters Records 55: 191-208.

Ghorbani T, Chegharnirza K, Brdideh K and Basiri Shoar P. 2013. Recognition and determination of related traits importance with seed yield in chickpea (Cicer arietinum L.). Plant Breeding and Seed Science 68: 15-24.

Karl Pearson. 1901. Principal components analysis. The London, Edinburgh and Dublin Philosophical Magazine and Journal of Science 6 (2): 559.

Kashyap OP and Rastogi NK. 2003. Genetic divergence in chickpea (Cicer arietinum L.). Journal of Plant Genetic Research 16:1-3.

Mahalanobis PC. 1936. On the generalized distances in statistics. Proceedings of the National Institute of Sciences of India 2: 49-55.

Malik SR, Shabbir G, Zubir M, Iqbal SM and Ali A. 2014. Genetic diversity analysis of morpho-genetic traits in desi chickpea (Cicer arietinumm L.). International Journal of Agricultural and Biological Engineering 16: 956-960.

Nimbalkar RD, Katre YY and Phad DS. 2017. Genetic diversity in chickpea (Cicer arietinum L.). BIOINFOLET-A Quarterly Journal of Life Sciences 14: 60-63.

Rao CR. 1952. D2 Analysis. In: Advanced Statistical Methods in Biometrical Research. John Wiley and sons Inc., NewYork Edition 1.

Singh RK and Choudhary BD. 1977. D2 Analysis. In: Biometrical Methods in Quantitative Genetic Analysis. Kalyani publishers, New Delhi, pp 288-94.

Singh RP, Singh I, Singh S and Sandhu JS. 2012. Assessment of genetic diversity among interspecific derivatives in chickpea. Journal of Food Legumes 25: 150-152.

Sharifi P, Astereki H and Pouresmael M. 2018. Evaluation of variation in chickpea (Cicer arietinum L.) yield and yield components by multivariate technique. Annals of Agrarian Science 16: 136-142.

Sharma PK, Gupta PK and Balyan HS. 1998. Genetic diversity in a large collection of wheat (Triticum spp.). Indian Journal of Genetics and Plant Breeding 58:271-278.

Syed MA, Islam MR, Hossain MS, Alam MM and Amin MN. 2012. Genetic divergence in chickpea (Cicer arietinum L.). Bangladesh Journal of Agricultural Research 37: 129-136.

Talebi R and Rokhzadi A. 2013. Genetic diversity and interrelationships between agronomic traits in landrace chickpea accessions collected from “Kurdistan†province, north-west of Iran. International Journal of Agriculture and Crop Sciences 5: 2203-2209.

Toker C and Cagirgan MI. 2004. The use of phenotypic correlations and factor analysis in determining characters for grain yield selection in chickpea (Cicer arietinum L.). Hereditas 140: 226-228.

Verma AK, Singh D, Kumar J, Rizvi AH, Andrewa M and Yadav SS. 2008. Impact of Genetic divergence on the expression of individual trait in chickpea (Cicer arietinum L.). American-Eurasian Journal of Sustainable Agriculture 2: 205-11.

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