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Micropropagation of mature Terminalia catappa (Indian Almond), a medicinally important forest tree

机译:成熟的榄仁木(印度杏仁)的微繁,一种重要的药用林树

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We report an efficient in vitro propagation method for Terminalia catappa using nodal segments of a 15-year-old mature tree. The nodal segments were cultured on MS medium supplemented with 6-benzyladenine (BA; 0.5–3.0 mg l−1) or Kinetin (Kn; 0.5–3.0 mg l−1) for bud breaking and multiple shoot induction. About 85% of the explant responded (2.8 ± 0.41 shoots per node with 2.7 ± 0.14 cm length) within 15 days of inoculation in Murashige and Skoog medium fortified with 2.0 mg l−1 of BA. Further shoot multiplication was achieved by repeated transfer of mother explants and subculturing of in vitro-produced shoots on medium supplemented with various concentrations of BA (0.25–1.5 mg l−1) or Kn (0.25–1.5 mg l−1) or on their combinations. Optimal number of shoots and shoot length were recorded on MS medium supplemented with 0.25 mg l−1 of BA and 0.25 mg l−1 of Kn. The multiplied shoots were used for ex vitro rooting after treatment for 4 min with indole-3-butyric acid (IBA; 50–500 mg l−1) or α-naphthalene acetic acid (NAA; 50–500 mg l−1). About 80% of the shoots treated with 200 mg l−1 of IBA produced ex vitro roots with an average of 2.8 roots per shoot. Nearly 75% of these plantlets could be acclimatized within 5 weeks and successfully established in the field. This is the first report on micropropagation of T. catappa, which can be applied for further genetic transformation assays and pharmaceutical purposes.
机译:我们报告了一种有效的体外繁殖方法,用于使用15岁的成熟树的节节节的榄仁。将节节段在补充有6-苄腺嘌呤(BA; 0.5–3.0 mg l-1 )或激动素(Kn; 0.5–3.0 mg l-1 )的MS培养基上培养,以使芽破裂和多发。芽诱导。在接种了2.0 mg l-1 BA的Murashige和Skoog培养基中接种后15天内,约有85%的外植体响应(每节长2.8±0.41枝,长2.7±0.14 cm)。通过重复转移母体外植体并在补充了不同浓度的BA(0.25–1.5 mg l-1 )或Kn(0.25–1.5 mg l-1)的培养基上亚培养体外生产的芽,可以进一步增加芽的繁殖。 )或它们的组合。在补充0.25 mg l-1 BA和0.25 mg l-1 Kn的MS培养基上记录最佳芽数和芽长。用吲哚-3-丁酸(IBA; 50–500 mg l-1 )或α-萘乙酸(NAA; 50–500 mg l)处理4分钟后,将繁殖后的芽用于离体生根。 -1 )。用200 mg l-1 IBA处理的芽中,约有80%产生离体根,平均每根2.8根。这些苗中近75%可以在5周内适应环境并在田间成功建立。这是关于猫爪草微繁殖的第一份报告,可将其用于进一步的遗传转化测定和药学目的。

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