Conventional breeding approach for obtaining ornamentally superior F1 hybrids of periwinkle (Catharanthus roseus L.)


55 / 8

Authors

  • MANINDERPAL SINGH Punjab Agricultural University, Ludhiana-141 004, Punjab, India Author
  • K K DHATT Punjab Agricultural University, Ludhiana-141 004, Punjab, India Author

Keywords:

Catharanthus roseus, genetic advance, heritability, variability, vinca

Abstract

Periwinkle is an herbaceous plant mostly known for its medicinal values. Its use as a flowering plant is limited but it has potential for being important summer and rainy season flowering annual in tropical and sub tropical areas. Keeping this in mind, eight inbred lines of distinct plant characters and flower colours (Magenta with white centre, Magenta, Cherry pink, Peach, Purple, Pink with dark pink centre, Light pink with white centre and White with red spot) were crossed in half-diallel to obtain twenty eight F1 hybrids. These hybrids along with the parents were evaluated for growth and flowering parameters. The results revealed the superiority of F1 hybrids in terms of their earliness to flowering, longer flowering duration and greater number of flowers per plant. The values of phenotypic and genotypic coefficients of variation were high (>20%) for number of flowers per plant and follicle length. Traits like plant height, plant spread, leaf width, leaf length, petiole length, flower diameter and corolla tube length were highly heritable. Moderate to high heritability along with greater genetic advance was recorded in traits viz. plant height, plant spread, number of branches per plant, petiole length, number of flowers per plant and follicle length. These results can be helpful in selection of superior cross combinations and development of improved genotypes in periwinkle for its use as potential ornamental crop.

Downloads

Download data is not yet available.

References

Allard, R.W. 1960. Principles of plant breeding. John Wiley and Sons Inc., London. (Original not seen. Cited by Baskaran, V., Jayanthi, R., Janakiram, T. and Abirami, K. (2009) Journal of Horticultural Sciences, 4: 174-176).

Baskaran, V., Jayanthi, R., Janakiram, T. and Abirami,

K. 2009. Studies on genetic variability, heritability and genetic advance in chrysanthemum. Journal of Horticultural Sciences, 4: 174-176.

Burton, G.W. 1952. Quantitative inheritance in grasses. Proceedings of the 5th International Grassland Congress 1: 227-283 (Original not seen. Cited by Rai, T.S., Chaudhary, S.V.S., Dhiman, S.R., Dogra, R.K., & Gupta, R.K. (2017) Indian Journal of Agricultural Sciences, 87: 540-543).

Burton, G.W. and DeVane, E.H. 1953. Estimating heritability in tall fescue Festuca arundinancea from replicated clonal material. Agronomy Journal, 45: 478-481.

Byadwal, R.K., Mishra, A., Sharma, A.K. and Kavita. 2018. Studies on genetic variability, heritability and genetic advance in gaillardia (Gaillardia pulchella Foug.). IOSR Journal of Agriculture and Veterinary Science, 11: 20-23.

Howe, T.K. and Waters, W.E. 1994. Evaluation of catharanthus (vinca) cultivars for the landscape. Proceedings of the Florida State Horticultural Society, 107: 404-408.

Johnson, H.W., Robinson, H.F. and Comstock, R.E. 1955. Estimates of genetic and environmental variability in soybean. Agronomy Journal, 47: 314- 318.

Kameswari, P.L., Pratap, M., Hameedunnisabegum and Anuradha, G. 2015. Studies on genetic variability and character association for yield and its attributes in chrysanthemum (Dendranthema grandiflora Tzvelev). Agricultural Science Digest, 35: 25-30.

Kaur, R. 2018. Combining ability analysis for growth and flowering characteristics in pansy (Viola × wittrockiana Gams.). Dissertation, Punjab Agricultural University, Ludhiana, India.

Kaur, R. and Dhatt, K.K. 2020. Estimation of genetic parameters for quantitative traits in pansy (Viola × wittrockiana). Indian Journal of Agricultural Sciences, 90: 835-837.

Khangjarakpam, G., Kumar, R., Seetharamu, G.K., Rao, T.M., Dhananjaya, M.V., Venugopalan, R. and Padmini, K. 2014. Genetic variability for quantitative traits in China aster [Callistephus chinensis (L.) Nees]. Journal of Horticultural Sciences, 9: 141-144.

Kumari, P., Kumar, R., Rao, T.M., Dhananjaya, M.V., & Bhargav, V. 2017. Genetic variability, character association and path coefficient analysis in China aster [Callistephus chinensis (L.) Nees]. Hort Flora Research Spectrum, 6: 278-282.

Lou, X.Y., Hu, Q.S., Bao, M.Z. and Ye, Y.M. 2010.

Analysis of combining ability of two-types of male sterile and four restorer lines of Zinnia elegans. Euphytica, 174: 91-103.

Lush, J.L. 1940. Inter-size correlation and regression of offspring on dairy as a method of estimating heritability of characters. Proceedings of the American Society of Animal Production, 33: 293-301. (Original not seen. Cited by Ghimire, B. and Timsina, D. 2015. World Journal of Agricultural Research, 3: 153-162).

Nyquist, W.E. 1991. Estimation of heritability and prediction of selection response in plant populations. Critical Reviews in Plant Science, 10: 235-322.

Panse, V.G. and Shukhatme, P.V. 1969. Statistical Methods for Agricultural Workers. ICAR, New Delhi, India (Original not seen. Cited by Kaur, R., & Dhatt, K.K. 2020. Indian Journal of Agricultural Sciences, 90: 835-837).

Rao, B.R.R. 2007. Periwinkle. In: Singh J (ed), Medicinal and Aromatic Crops, Aavishkar Publishers, Jaipur, India, pp. 11-30.

Robinson, H.F., Comstock, R.E. and Harvey, P.H. 1949. Estimates of heritability and the degree of dominance in corn. Agronomy Journal, 41: 353- 359.

Ross, I.A. 1999. Medicinal Plants of the World: Chemical Constituents, Traditional and Modern Medicinal Uses. Humana Press, New Jersey. (Original not seen. Cited by Kulkarni, R.N., Baskaran, K. and Jhang, T. 2016. Plant Genetic Resources: Characterization and Utilization, 14: 283-302).

Roychowdhury, R. and Tah, J. 2011. Evaluation of genetic parameters for agro-metrical characters in carnation genotypes. African Crop Science Journal, 19: 183-188.

Singh, K.P., Raju, D.V.S., Namita and Janakiram, T. 2014. Determination of genetic variation for vegetative and floral traits in African marigold (Tagetes erecta). Indian Journal of Agricultural Sciences, 84: 1057-1062.

Singh, P. and Narayanam, S.S. 2012. Biometrical Techniques in Plant Breeding, Kalyani Publishers, New Delhi, India, p. 343.

Sirohi, U., Kumar, M., Singh, S.K., Chauhan, P., Kumar, R. and Chand, P. 2018. Study on genetic variability, heritability, genetic advance and character association in tuberose (Polianthes tuberosa L.) genotypes. HortFlora Research Spectrum, 7: 109- 114.

Vanlalruati, Mandal, T. and Pradhan, S. 2013. Correlation and path coefficient analysis in tuberose. Journal of Crop and Weed, 9: 44-49.

Yuvraj and Dhatt, K.K. 2014. Studies on genetic variability, heritability and genetic advance in marigold. Indian Journal of Horticulture, 71: 592- 594.

Downloads

Submitted

2025-02-17

Published

2025-02-17

How to Cite

SINGH, M., & DHATT, K. K. (2025). Conventional breeding approach for obtaining ornamentally superior F1 hybrids of periwinkle (Catharanthus roseus L.). Journal of Ornamental Horticulture, 27(2), 153-163. https://epubs.icar.org.in/index.php/JOH/article/view/164899