A Protocol for Recovery of whole Plants through in Vitro Shoots Regeneration from Leaflet Explants of Mature Trees of Albizia procera (Roxb.) Benth
DOI:
https://doi.org/10.36808/if/2017/v143i5/114976Keywords:
Albizia procera, 2, 4-D, Reaflet Explant, BAP, IBA, Shoot Bud Regeneration, Root Initiation.Abstract
The in vitro method has, for the first time, been developed to facilitate shoot formation and recovery of hardened plantlets from leaves of adult trees of A. procera in a cycle of 150 days. Leaves were dissected from micro propagated shoot cultures of mature trees of Albizia procera. Effect of five culture media viz., MS, B5, NN, SH and WPM medium with various concentrations of 2, 4-D were tested to determine the conditions most conducive for callus induction. The highest number of adventitious buds at 30 days after inoculation was obtained on MS medium supplemented with 2.5μM 2, 4-D. The regenerated shoot buds were elongated on half strength MS medium containing 0.25μM each of BAP and IBA, which took 30 days after inoculation. The adventitious shoots obtained so were the in-vitro rooted at 30 days after inoculation on B5 medium supplemented with 3μM IBA. The regenerated plantlets were hardened on sterilized sand.References
Aberg B. (1961). Vitamins as growth factors in higher plants. Encyclopedia of Plant Physiology, 14:418-449.
Ahlawat S.P. (1997). Regeneration of Tree Legumes. Albizia procera (Roxb.) Benth. through tissue culture. Indian Forester, 127:1058-1066.
Al-JabouryK. (2012). In vitro propagation of Albizialebbeck through axillarybud culture. IbnAl-Haitham. J.Pureand Applied Science, 25:74-79.
Ancora C., Belldonna M.C. and Cuzzo L.L. (1981). Globe artichoke plants obtained from shoot apices through rapid in vitro micropropagation. Scientia Horticulture, 14(3):207-211.
Anon. (1985). Albizia procera Benth. In: The Wealth of India. A Dictionary of Indian Raw Materials and Industry Products. (ed. Chadha, Y.R.). Publication and Information Directorate, CSIR, New Delhi., pp.129-131.
Ansari S.A., Sharma S., Pant N.C. and Mandal A.K. (2002). Synergism between IBA and thiamine for induction and growth of adventitious roots in Tectona grandis. J. Sustainable Forestry, 15(4): 99-112.
Ansari S.A., Singh S. and Rani A. (2004). Inorganic salts influence IAA Ionization and adventitious rhizogenesis in Pongamia pinnata. J. Plant Physiology, 161:117-120.
Barlass M., Grant W.J.R. and Skene K.G.M. (1980). Shoot regeneration in-vitro from native Australian fruit bearing tree - Quandong and plum bush. Australian J. Botany, 28: 405-409.
Bobak M., Blchova A., Kristin J., Ovecka M. and Samaj J. (1995). Direct plant regeneration from leaf explants of Drosera rotundifolia cultured in vitro. Plant Cell Tissue and Organ Culture, 43:43-49.
Bonner J. and Bonner H. (1948). The B vitamins as plant hormones. Vitamins and Hormones, 6:225-275.
Casson S.A. and Lindsey K. (2003). Genes and signaling in root development. New Phytologist, 158(2):11-38.
Chandra I. and Bhanja P. ( 2002). Study of organogenesis in vitro from callus tissue of Flacourtia jangomas (Lour). Raeusch through scanning electron microscopy. Current Science, 83(4):476-479.
Das T. and Mitra G.C. (1990). Micropropagation of Eucalyptus tereticornis Smith. Plant Cell Tissue and Organ Culture, 22:95-103.
Escalettes V. and Dosba F. (1993). In-vitro adventitious shoot regeneration from leaves of Prunus spp. Plant Science (Limerick), 90:201-209.
Garrido G., Guerreo J.R., Cano E.A., Acosta M. and Sanchez-Bravo J. (2002). Origin and basipetal transport of the IAA responsible for rooting of carnation cuttings. Physiologia Plantarum, 114:251- 256.
Gharyal P.K. and Maheshwari S.C. (1981). In-vitro differentiation of somatic embryoides in a leguminous tree Albizia lebbeck. L. Naturwissenschaften, 67:379-380.
Gharyal P.K. and Maheshwari S.C. (1983). In-vitro differentiation of plantlets from tissue cultures of Albizia lebbeck L. Plant Cell Tissue and Organ Culture, 2:49-53.
Gharyal P.K. and Maheshwari S.C. (1990). Differentiation in explant from mature leguminous trees. Plant Cell Report, 8:550-553.
Ghosh R.C. (1976). Afforestation problems of saline and alkaline soils in India. Van Vigyan, 14:1-17.
Hirose N., Takei K., Kuroha T., Kamada-Nobusada T., Hayashi H. and Sakakibora H., (2008). Regulation of cytokinin biosynthesis, compartmentalization and translocation. J. Experimental Botany, 59(1):75-83.
Howard B.H. (1994). In Manipulating rooting potential in stockplants before collecting cuttings. (T.D. Davis and B.E. Haissig, Eds.), Biology of Adventitious Root Formation. Plenum Press, New York, pp.123–142.
Hu C.Y. and Wang P.J. (1983). Meristem shoot tip and bud cultures, In: Handbook of Plant Cell Culture. (D.A. Evans, W.R. Sharp, P.B. Ammirato, and Y. Yamada, Eds.), Macmillan Publishers, Inc., New York, pp. 177-227.
Javris B.C. and Booth A. (1981). Influence of IBA, boron, myoinositol, vitamin D and seedling age on adventitious root development in cuttings of Phaseolus aureus. Physiologia Plantarum, 53:213-218.
Johnson B.B. (1978). In- vitro propagation of Gloxinia from leaf explants. Horticulture Science, 13:149-150.
Kartha K.K., Pahl K., Leung N.L. and Morginski L.A. (1981). Plant regeneration from meristems of grain legumes: soybean, cowpea, peanut, chickpea and bean. Canadian J. Botany, 59:1671–1679.
Kiba T., Kudo T., Kojima M. and Sakakibara H. (2011). Hormonal control of nitrogen acquisition: roles of auxin, abscisic acid, and cytokinin. J. Experimental Botany, 62(4):1399-1409.
Kitto S.L. and Young M.L. (1981). In-vitro propagation of Carrizo citrange. Horticulture Science, 16:305-306.
Kruszewski S.P. and Jacobs W.P. (1974). Polarity of thiamine movement through tomato petioles. Plant physiology, 54:310-311.
Kumar K., Sarkar A. and kunhikannan C. (1998). Regeneration of plants from leaflet explants of tissue culture raised safed siris (Albizia procera). Plant Cell Tissue and Organ Culture, 54:137–143.
Kumar K., Sarkar A. and Kunhikannan C. (1998). Regeneration of plants from leaflet explants of tissue culture raised safed siris (Albizia procera). Plant Cell Tissue and Organ Culture, 54:137–143.
Mamun A., Matin M., Bari M., Siddique N., Sultana R., Rahman M. and Musa A. (2004). Micropropagation of woody legume (Albizia lebbeck) through tissue culture. Pakistan J. Biological Science, 7:1099-1103.
Murashige T. and Skoog F. (1962). A revised medium for rapid growth and bioassays with tobacco tissue cultures. Physiology of Plant, 15:473-497.
Murashige T. (1974). Plant propagation through tissue culture. Annual Review of Plant Physiology, 25:135-166.
Nemeth G. (1986). Induction of roots. In: Biotechnology in agriculture and forestry I: Tree I, (Y.P.S. Bajaj, Eds.) Springer- Verlag, Berlin, pp. 49-64.
Neuberg M., Palikova D., Zizkova V. and Pavlik M. (2011). Different type of N nutrition and their impact on endogenous cytokinin levels in Festuliliumand Trifolium pretense L. Plant Soil Environment, 57:381-387.
Palanisamy K., Ansari S.A., Kumar P. and Gupta B.N. (1998). Adventitious rooting in shoot cutting of Azadirachta indica and Pongamia pinnata. New Forests, 16:81- 88.
Parrotta J.A. (1987). Albizia procera (Roxb.) Benth. Silvics of Forest Trees of the American Tropics. USDA Forest Service, International Institute of Tropical Forestry, Rio Piedras, Puerto Rico.
Perveen S., Varshney A., Anis M. and Aref M. (2011). Influence of cytokinins, basal media and pH on adventitious shoot regeneration from excised root cultures of Albizia lebbeck. J. Forestry Research, 22(1):47- 52.
Pop T.I., Pamfi L.D. and Bellini C. (2011). Auxin control in the formation of adventitious roots. Notulae Botanicae Horti Agrobotanici ClujNapoca, 39(1):307–316
Pospisilova J., Ticha I., Kadlecek P., Haisel D. and Plzakova S. (1999). Acclimatization of micropropagated plants to ex-vitro conditions. Biologia Plantarum, 42(4):481- 497.
Purohit V.K., Palni L.M.S., Nandi S.K. and Rikhari H.C. (2002). In-vitro generation of Quercus floribunda Lindl. through cotyledonary nodes: an important tree of Central Himalaya. Current Science, 83:312-316.
Rajeshwari V. and Paliwal K. (2006). In-vitro propagation of Albizia Odoratissima L. F. (Benth.) from cotyledonary node and leaf nodal explants. In vitro Cell and Developmental Biology Plant, 42:399–404.
Rajeshwari V. and Paliwal K. (2008). In-vitro adventitious shoot organogenesis and plant regeneration from seedling explants of Albizia odoratissima L. f. (Benth.). In vitro Cell and Developmental Biology Plant,44:78-83.
Rajeshwari V. and Paliwal K. (2006). In-vitro propagation of Albizia Odoratissima L. F. (Benth.) from cotyledonary node and leaf nodal explants. In vitro Cell and Developmental Biology Plant, 42:399–404.
Sandal I., Kumar A., Bhattacharya A, Sharma M., Shankar A. and Ahuja P.S. (2005). Gradual depletion of 2, 4-D in the culture medium for indirect shoot regeneration from leaf explants of Camellia sinensis (L.) O. Kuntze. Plant Growth Regulation, 47:1-121
Scott T.K. (1972). Auxins and roots. Annals Review Plant Physiology, 23:235-258.
Sharma S., Rana P.K., Mandal A.K. and Ansari S.A. (2000). Promotion of in-vitro shoot multiplication by vipul (Tricontanol) and adventitious rhizogenesis by rice bran extract in Tectona grandis. J. Plant Biology, 27:265-269.
Shirin F., Hossain M., Kabir M.F., Roy M. and Sarkar S.R. (2007). Callus induction and plant regeneration from intermodal and leaf explants of four potato (Solanum tuberosum L.) Cultivars. World J. Agricultural Sciences, 3(1): 01-06.
Shirin F., Kumar S. and Mishra Y. (2000). In-vitro plantlets production system for Kaempferia galanga, a rare Indian medicinal herb. Plant cell Tissue and Organ Culture, 63:193-197.
Sinha R., Majumdar K. and Sinha S. (2000). In vitro differentiation and plant propagation of Albizia chinensis (OSB.) MERR. In vitro Cell and Developmental Biology of Plant, 36:370-373.
Skoog F. and Miller C.O. (1957). Chemical regulation of growth and organ formation in plant tissue cultures in vitro. Symposium of Society Experimental Biology, 11:118-130.
Sorin C., Bussel J.D., Camus I., Ljung K., Kowalczyk M., Geiss G. and Sandberg G. (2005). Auxin and light control of adventitious rooting in Arabidopsis require argonautei. Plant Cell, 17:1343- 1359.
Su Ying-Hua., Liu Yu-Bo and Zhang Xian-Sheng (2011). Auxin–Cytokinin Interaction Regulates Meristem Development. Molecular Plant, 4(6):616–625.
Subbaiah M.M. and Minocha S.C. (1990). Shoot regeneration from stem and leaf callus of Eucalyptus tereticornis. Plant Cell Report, 9:370-373.
Sudhadevi A.M. and Nataraja K. (1987). In-vitro regeneration and establishment of plantlets in stem culture of Dalbergia latifolia Roxb. Indian Forester, 11:4-5.
Swamy S., Ganguli J. and Puri S. (2004), Regeneration and multiplication of Albizia procera Benth. through organogenesis. Agroforestry Systems, 60:113–121.
Tomar U.K. and Gupta S.C. (1988). In-vitro plant regeneration of leguminous trees (Albizia spp.). Plant Cell Report, 7:385-388.
Torrey J.G. (1976). Root hormones and plant growth. Annual Review of Plant Physiology, 27:435- 459.
Trewaves A.J. (1981). How do plant grow substance work? I. Plant Cell and Environment, 4:203-228.
Trewaves A.J. (1991). How do plant grow substance work? II. Plant Cell and Environment, 14:1-12.
Varghese T.M., Kaur A. and Kaur A. (1991). Micropropagation of Albizia lebbeck Benth. Acta Horticulture, 289:161-162.
Venkataramany P. (1968). Silviculture of genus Albiziaand species. Silviculture of Indian trees. No.22. Government of India, Delhi, India.
Waywood E.R., Oaks A. and Maclachlan G.A. (1956). The enzymatically catalyzed oxidation of indoleacetic acid. Canadian Journal of Botany, 34:905-926.
Yadav K. and Singh N. (2011). Effect of seed harvesting season and sterilization treatments on germination and in vitro propagation of Albizia lebbeck. (L.) Benth. Analele Universitatii din Oradea - Fascicula Biologie, 18:151-156.
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