S0049-3848(14)00284-9

Original Article

Morphological Variation and Genetic Diversity in Carnation (Dianthus caryophyllus L.) Using Agro-morphic Traits

Year: 2020 | Month: September | Volume 13 | Issue 3

References (20)

1.Archana, B., Patil, A.A., Hunje, R. and Patil, V.S. 2007. Studies on genetic variability analysis in gladiolus hybrids. Journal of Ornamental Horticulture, 11(2): 121-126.

View at Google Scholar

2.Baliyan, D., Siroh, A., Kumar, M., Kumar, V., Malik, S., Sharma, S. and Sharma, S. 2014. Comparative genetic diversity analysis in chrysanthemum: A pilot study based on morphoagronomic traits and ISSR markers. Scientia Hort., 167: 164-168.

View at Google Scholar

3.Doshi, S.P. and Gupta, K.C. 1991. SPAR-1 Software. Indian Agricultural Statistical Research, New Delhi (India).

View at Google Scholar

4.Giri, T.K., Kumar, M., Sharma, V.R., Malik, S., Chand, P., Naresh, R.K. and Prakash, S. 2019. Phenotypic variation and genetic divergence in marigold (Tagetes erecta L.) based on agro-morphic traits. Journal of Pharmacognosy and Phytochemistry, 8(1): 1298-1302.

View at Google Scholar

5.Gupta, A., Singh, M.K., Kumar, M., Singh, S.K., Katiyar, H., and Kumar, V. 2017. Study of genetic divergence in Pea (Pisum sativum L.) based on agro-morphic traits. Int.J.Curr. Microbiol.App.Sci., 6(11): 3816-3821.

View at Google Scholar

6.Kaushik, S., Kumar, M., Prakash, S., Kumar, V., Singh, M.K., Singh, B., Malik, S. and Singh, K.V. 2016. Study of genetic diversity in garlic (Allium sativum L.) by using morphological characters. Prog. Agric., 16(2): 204-210.

View at Google Scholar

7.Kumar, M. 2015a. Assessment of morphological variation in garlic (Allium sativum L.) based on morpho-agronomic traits. HortFlora Research Spectrum, 4(3): 285-287.

View at Google Scholar

8.Kumar, M. 2015b. Morphological characrarization of gladiolus (Gladiolus hybridus Hort.) germplasm. Journal of Plant Development Sciences, 7(4): 359-362.

View at Google Scholar

9.Kumar, M., Kumar, M., Kumar, V., Singh, J.B. and Prakesh, S. (2007). Evaluation of gladiolus cultivars under Western Uttar Pradesh condition. Progressive Research, 2(1/2): 79-81.

View at Google Scholar

10.Kumar, P., Kumar, M. and Kumar, A. 2014. Divergence studies in gladiolus (Gladiolus Hybridus L.) germplasm Journal of Plant Development Sciences, 6(4): 583-586.

View at Google Scholar

11.Kumar, S., Kumar, M., Kumar, R., Malik, S., Singh, M.K. and Kumar, S (2016). Analysis of genetic divergence in chrysanthemum (Dendranthema grandiflora Tzvelev) germplasm using morphological markers. Int. J. Agricult. Stat. Sci., 12(2): 255-260.

View at Google Scholar

12.Kumar, S., Kumar, M., Malik, S. and Kumar, S. 2014. Evaluation of chrysanthemum (Dendranthema grandiflora Tzvelev) genotypes using morphological characters under climatic conditions of Western Uttar Pradesh. Annals of Horticulture, 7(2): 162-165.

View at Google Scholar

13.Kumar, S., Kumar, M., Malik, S. and Kumar, S. 2014. Evaluation of chrysanthemum (Dendranthema grandiflora Tzvelev) genotypes using morphological characters under climatic conditions of Western Uttar Pradesh. Annals of Horticulture, 7(2): 162-165.

View at Google Scholar

14.Lin, M.S. 1991. Genetic base of japonica rice varieties released in Taiwan. Euphytica, 56: 43-46.

View at Google Scholar

15.Mahanobis, P.C. 1936. On generalized distance in statistics. Proceedings of National Institute of Science, 11(1): 49–55.

View at Google Scholar

16.Pant, M. 2016. A minimal cost micropropagation protocol for Dianthus caryophyllus L. an economically significant venture. Int. J. of Exp. Biologv., 54: 203-211.

View at Google Scholar

17.Prakash, A., Kumar, M., Kumar, A., Kumar, M., Gupta, A. and Badal, D.S. 2018. Performance and flower characterization of chrysanthemum (Dendranthema grandiflora Tzvelev) genotypes under Agro-climatic region of Western Uttar Pradesh. International Journal of Chemical Studies, 6(5): 1439-1442

View at Google Scholar

18.Prakash, A., Kumar, M., Naresh, R.K., Malik, S., Singh, M.K., Kumar, V. and Kumar, V. 2017. Divergence studies in chrysanthemum (Dendranthema grandiflora Tzeleve) based on agro-morphic traits. Int. J. Pure App. Biosci., 5(3): 982-988.

View at Google Scholar

19.Rao, C.R. 1952. Advance Statistical Methods in Biometric Research. John Willey and Sons, New York. United States of America.

View at Google Scholar

20.Sirohi, U., Kumar, M, Chauhan, P., Kumar, R., Chand, P. and Chaudhary, V. 2017. Morphological variation and genetic distance in tuberose (Polianthes tuberosa L.) genotypes for growth, yield and essential oil traits. Chemical Science Review and Letters, 6(24): 2086-2093.

View at Google Scholar

International Journal of Agriculture Environment & Biotechnology(IJAEB)| In Association with AAEB

27271952 - Visitors since February 20, 2019