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首页> 外文期刊>International Research Journal of Biological Sciences >In Vitro Rapid Multiplication of Wrightia Tomentosa (ROXB.) Roem. and Schultz an Endangered Medicinal Tree Species
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In Vitro Rapid Multiplication of Wrightia Tomentosa (ROXB.) Roem. and Schultz an Endangered Medicinal Tree Species

机译:Wrightia Tomentosa(ROXB。)Roem的体外快速繁殖。和舒尔茨濒危的药用树种

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The protocol for in vitro multiple shoot development and plantlet formation was developed using cotyledonary node and shoot tip explant in Wrightia tomentosa (Roxb.) Roem. and Schultz an endangered medicinally important forest tree. The explants were cultured on - strength MS medium supplemented with various concentrations of BAP. Multiple shoots were induced from the cotyledonary nodal segments and shoot tip explants in all the concentrations of BAP. More percentage of multiple shoot induction was observed in cotyledonary nodal explants compared to shoot tips. Maximum number of shoots proliferation (12-1.07) with high frequency of shooting response was found in shoot tip explants followed by nodal explants at 3.0 mg/L BAP. The micro-shoots were cultured on - strength MS medium with various concentrations of auxins IAA/IBA for in vitro rooting. Profuse rhizogenesis (16.2-2.01, 12.8-1.29 cm) was observed on - strength MS medium supplemented with 1.0 mg/L IAA/1.5 mg/L IBA. The in vitro rooted plantlets were transferred to polycups containing sterile soil: vermiculite (1:1) and hardened in the culture room. These acclimatized plants were transferred into field and the survival percentage was found to be 75. These in vitro regenerated plants were similar to donor plant.
机译:使用子叶节点和枝尖外植体在Wrightia tomentosa(Roxb。)Roem中开发了用于体外多枝发育和苗形成的方案。舒尔茨是濒临灭绝的重要药用林木。将外植体在补充有各种浓度的BAP的强度MS培养基上培养。在所有BAP浓度下,从子叶节节段和芽尖外植体中诱导出多芽。与子叶尖端相比,在子叶节外植体中观察到更多的多芽诱导百分比。在梢尖外植体中发现最高的芽增殖数量(12-1.07),且其射出响应频率高,随后在3.0 mg / L BAP的节点外植体中。将微芽在具有各种浓度的生长素IAA / IBA的强度MS培养基上培养以用于体外生根。在补充了1.0 mg / L IAA / 1.5 mg / L IBA的强度MS培养基上观察到大量的发根(16.2-2.01,12.8-1.29 cm)。将体外生根的小植株转移到含有无菌土壤:ul石(1:1)的水杯中,并在培养室中硬化。将这些驯化的植物转移到田间,发现存活率为75。这些体外再生的植物与供体植物相似。

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