Effects of N-Benzyl-9-(2-tetrahydropyranyl) Adenine in Combination with Indole-3-butyric Acid on in vitro Culture of Bauhinia variegata L.

Authors

  • Belai Meeta Suwal Singh Department of Botany, Patan Multiple Campus, Tribhuvan University, Patan Dhoka, Lalitpur, Nepal

DOI:

https://doi.org/10.48165/

Keywords:

Micropropagation, Nodal culture, BPA, IBA, Acclimatization

Abstract

Firstly, the multiple shoots were obtained from the nodal segments of  Bauhinia variegata L. cultured on Murashige and Skoog’s (1962) (MS)  medium containing 0.5 µM BAP (Benzylaminopurine) increased the high  multiplication rate. Nodal segments inoculated on the MS medium with  various combinations of 0.5, 1.0, 2.0 and 5.0 µM BPA (N-Benzyl-9-(2- tetrahydropyranyl) adenine with 0.1, 0.5, 1.0 and 2.0 µM concentrations of IBA (Indole-3-butyric acid) and separately showed drastically different  results. Healthy propagated plants were acclimatized and transferred to the  field. Data were worked out statistically with SPSS, a system of analytical  procedure. 

Downloads

Download data is not yet available.

References

Anonymous. (1970). Medicinal plants of Nepal Bulletin of the Department of medicinal plants no 3.

Beck, S. L, Dunlop, R. and Staden, J.V. (1998). Micropropagation of Acacia mearnsii from ex vitro material. Plant Growth Regulators, 26:143-148.

Dhar, U. and Upreti, J. (1999). In vitro regeneration of a leguminous liana (Bauhinia vahlii Wight and Arnott). Plant Cell Reports, 18:664-669.

Gharyal, P. K. and Maheshori S.C. (1980). Differentiation in explant from mature leguminous trees. Plant Cell Reports, 8:550-553.

Kumar, A. (1992). Micropropagation of a mature leguminous tree- Bauhinia purpurea. Plant Cell Tissue and Organ Culture, 31:257-259.

Mathur, J.and Mukunthakumar, S. (1992). Micropropagation of Bauhinia variegata and Parkinsonia aculeata from nodal explants of mature trees. Plant Cell Tissue and Organ Culture, 28:119-121

Mc Hughen, A. andSwartz, M. (1984). Embryo formation in cell cultures of the legume Cyamopsis tetragonoloba (guar). J. Plant Physiol, 117:163-167.

Mukhopadhyay, A. and Mohan R.H.Y.(1981). Regeneration of Plantlets from Excised Roots of Dalbergia sissoo. Indian Journal of Experimental Biology, 19:1113-1115.

Murashige, T and Skoog F. (1962). A revised medium for rapid growth and bioassays with tobacco tissue culture Plant Physiology, 15:473-497.

Rout, G. R, Das, G. Samatary S. and Das, P. (2001). Micropropagation of Plumbago zeylanica L. By encapsulated nodal explants. Journal of Horticultural Sciences and Biotechnology. 76 (1): 24-29. 11. Singh, B.M.S. (2019). Effects of N-Benzyl-9-2-tetrahydropyranyl and Indole-3-Acetic acid on invitro culture of Bauhinia purpurea L. International Journal of Scientific Research and Technology, 6(3): 238-242.

Sinha, R. K., Majumdar K. and Singh, S. (2000). In vitro differentiation and plant regeneration of Albizia chinensis Cosb. Merr. In Vitro Cell Dev. Biol-Plant September- October 36:370-373. 13. Skolmen, R. G. (1986).In: Bajaj YPS (ed.) Biotechnology in agriculture and forestry. Vol. 1: Trees 1, Springer Verlag, Berlin, 375-384.

Suwal, B., Karki, K. and S. Rajbhandary, B. (1988). The in vitro proliferation of forest trees1. Dalbergia sissoo Roxb. Ex DC. Sivae Genetica, 37:1, 26-28.

Published

2020-09-15

How to Cite

Singh, B.M.S. (2020). Effects of N-Benzyl-9-(2-tetrahydropyranyl) Adenine in Combination with Indole-3-butyric Acid on in vitro Culture of Bauhinia variegata L . Bulletin of Pure & Applied Sciences- Botany, 39(2), 65–69. https://doi.org/10.48165/