Micropropagation of selected genotype of Aloe vera L.-An ancient plant for modern industry

被引:24
作者
Singh, Mangal [1 ]
Rathore, M.S. [1 ]
Panwar, D. [1 ]
Rathore, J.S. [1 ]
Dagla, H.R. [1 ]
Shekhawat, N.S. [1 ]
机构
[1] Department of Botany, Jai Narain Vyas University, Jodhpur, Rajasthan
关键词
Aloe vera; Edible; Ex vitro; In vitro; Micropropagation; Selected clone; Soilrite;
D O I
10.1080/10549810903344660
中图分类号
学科分类号
摘要
Aloe vera Linn. (Syn. Aloe barbadensis Mill; Gwar-patha in Hindi) belongs to family Liliaceae. The plant, for its medicinal properties, has commercial value. Some of the genotypes of Aloe vera are consumed as a vegetable and processed to make curry and other edible products. We report here on the development of an efficient method for rapid clonal propagation by shoot proliferation from axillary meristem(s) of selected germplasm of Aloe vera. Explants were pretreated with 0.1% aqueous solution of both streptomycin and bavistin separately, each for 15 min. These were surface sterilized with 0.1% aqueous solution of mercuric chloride (HgCl2) for 4-5 min and washed several times with autoclaved water. These were kept in a chilled, sterile antioxidant (200.0 mg L-1 of ascorbic acid, 50.0 mg L-1 of citric acid, and 25.0 mg L-1 of polyvinylpyrrolidone; PVP) solution and cultured on semi-solid Murashige and Skoog's (MS) medium. The bud explants produced multiple (10.3 ± 0.675/explant) shoots on MS medium containing 13.32 μM of 6-Benzylaminopurine (BAP) and 100.0 mg L-1 of ascorbic acid, 50.0 mg L-1 each of citric acid and PVP, with 25.0 mg L-1 each of arginine and adenine sulphate as additives. The shoots were further multiplied by (a) repeated transfer to fresh MS medium with additives + 13.32 μM BAP, and (b) subculturing on MS medium with a lower (4.44 μM) concentration of BAP. On MS medium containing 4.44 μM of BAP and additives, a maximum number (27.8 ± 0.63) of shoots were produced. In liquid MS medium with 4.44 μM of BAP, the rate of shoot multiplication increased and the vigor of the shoots improved. One hundred percent of the cloned shoots rooted under in vitro conditions on hormone-free half-strength MS salts containing 200.0 mg L-1 of activated charcoal at 32 ± 2°C. The cloned shoots treated with 2.46 mM of indole-3-butyric acid (IBA) or 2.473 mM of β-naphthoxyacetic acid (NOA) for 5 min rooted under ex vitro conditions in the greenhouse. The rooted plants were hardened in the greenhouse and stored under an agro-net house. The cloned plants were transferred under different field conditions at various sites in Western Rajasthan. These plants grew normally. The higher rate of shoot multiplication and easier approach of direct rooting and hardening make this method superior to the methods previously reported on cloning/tissue culture of Aloe species. From a single shoot bud, approximately 5000 plants can be produced within 180 days. © Taylor & Francis Group, LLC.
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页码:935 / 950
页数:15
相关论文
共 29 条
  • [1] Abrie A.L., van Staden J., Micropropagation of endangered aloe polyphylla, Plant Growth Regulation, 33, 1, pp. 19-23, (2001)
  • [2] Aggarwal D., Barna K.S., Tissue culture propagation of elite plant of aloe vera Linn, Journal of Plant Biochemistry and Biotechnology, 13, pp. 77-79, (2004)
  • [3] Ahloowalia B.S., Plant tissue culture. In low cost options for tissue culture technology in developing countries, Proceedings of a Technical Meeting Organized by the Joint FAO/IAEA Division of Nuclear Techniques in Food and Agriculture, pp. 3-10, (2004)
  • [4] Arya V., Shekhawat N.S., Singh R.P., Micropropagation of leptadenia reticulata-A medicinal plant, In Vitro Cell Development Biology-plant, 39, pp. 180-185, (2003)
  • [5] Arya V., Singh R.P., Shekhawat N.S., A micropropagation protocol for mass multiplication and off-site conservation of celastrus paniculatus-A vulnerable medicinal plant of India, Journal of Sustainable Forestry, 14, 1, pp. 107-120, (2002)
  • [6] Bairu M.W., Stirk W.A., Dolezal K., van Standen J., Optimizing the micropropagation protocol for the endangered aloe polyphylla: Can metatopolin and its derivatives serve as replacement for benzyladenine and zeatin?, Plant Cell, Tissue and Organ Culture, 90, pp. 15-23, (2007)
  • [7] Bonga J.M., von Aderkas P., In Vitro Cultures of Trees, (1992)
  • [8] Canter P.H., Thomas H., Edzard E., Bringing medicinal plants into cultivation: Opportunities and challenges for biotechnology, Trends in Biotechnology, 23, 4, pp. 180-185, (2005)
  • [9] Choi I.M., Hyung N.I., Kim S.B., Effect of medium compositions on shoot multiplication and rooting in shoot tip culture of 'Kyoho' and 'Campbell Early' grapes, Korean Journal of Plant Tissue Culture, 19, pp. 59-66, (1992)
  • [10] Correll M.J., Weathers P.J., Effect of light, CO<sub>2</sub> and humidity on carnation growth, hyperhydration and cuticular wax development in a mist reactor, In Vitro Cell and Developmental Biology-plant, 37, pp. 405-413, (2001)