Chromosome Studies and Karyotype Analysis of some Triploid Banana (Musa Species) Cultivars of AAA Genomic Group
DOI:
https://doi.org/10.24154/jhs.v3i1.590Keywords:
Cavendish Banana, Triploid, Karyo-MorphologyAbstract
Bananas are the highly evolved, oldest fruits known to mankind. The Cavendish group cultivars are popular commercial varieties. AAA genomic group cultivars are said to have evolved from the wild AA Musa acuminata species by natural hybridization and polyploidization and these vigorous triploids were selected by man for cultivation. Basic cytological studies on banana are comparatively few due to the plant's complex nature. In this report, karyo-morphological studies on five AAA Cavendish group cultivars i.e. Robusta, Dwarf Cavendish, Grand Naine, Gros Michel and Red banana are reported. All the five cultivars had similar karyotype, except cv. Robusta. Total chromosome length was highest in Red banana and lowest in cv. Gros Michel.References
Agrawal, P. K. 1983. Cytogenetical investigations in Musaceae I Meiotic Studies in South Indian bananas. Cytologia, 48 : 847-852.
Agrawal, P. K. 1987. Cytogenetical investigations in Musaceae II Meiotic studies in eight male sterile triploid banana varieties of India. Cytologi, 52: 451-454.
Dodds, K. S. and Simmonds. N. W. 1948. Genetical and cytological studies of Musa. IX. The origin of an edible diploid and the significance of interspecific hybridization in the banana complex: an addendum on the nomenclature of edible banana. E.E. Cheesman (ed). J. Genetics. 48: 285-296.
Dolezel, J. 2004. Cytogenetic and cytometric analysis of nuclear genome in Musa. www.FAO.org.
Dolezel, J., Dolezelova, M., Roux N. and Vanden Hourve. I. 1998. A novel method to prepare slides for high-
resolution chromosome studies in Musa spp. Infomusa 7: 3-4.
Krishnamurthi, S. and Seshadri, V. S. 1958. Origin and evolution of cultivated bananas. 15: 135-45.
Levan, A. K., Fredga and Sandberg. A. A. 1964. Nomenclature for centromeric positions on chromosomes. Heriditas, 52:201-220.
Lilee, R. D. 1951. To prepare Schiff’s reagent. Stain Technology. 26: 163.
Osuji, J.O., Okoli, B.E. and Oritz. R. 1996. An improved procedure for mitotic studies of the Eumusa section of the genus Musa L (Musaceae). Infomusa 5: 12-14.
Rekha. A., Ravishankar, K.V., Anand. L and Hiremath, S. C. 2001. Genetic and genomic diversity in banana (Musa species and cultivars) based on D 2 analysis and RAPD markers. Infomusa, 10: 29-34.
Roy, R. S. and Sharma. G. 1951. Chromosome studies of Bihar bananas. Ind. J. Genetics Pl. breeding, 11: 211-214.
Shepherd, K. 1999. Cytogenetics of the genus Musa. INIBAP, Montpellier.
Simmonds N. W. 1962. Evolution of bananas. Longman Publications, London.
Stebbins, G. L. 1950. Variation and evolution in plants. Columbia University Press, N.Y.
Stebbins, G. L. 1971. Chromosomal evolution in higher plants. Edward Arnold, London.
Valsala Kumari, P. K. and Nair, P. C. S. 1990. Cytotaxonomical studies on banana cultivars. South Indian. Hortl., 38: 177-182.
Wang, Z., Lin, Z. and Pan, K. 1993. Cytogenetical studies in Musa (Eumusa). In current banana research and development in China (SCAU), South China Agril. Univ. p 29-43
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