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High frequency induction of multiple shoots and plant regeneration from seedling explants of pigeonpea (Cajanus cajan l.)

机译:木豆幼苗外植体的多芽高频诱导和植株再生

摘要

An efficient and direct shoot bud differentiation and multiple shoot induction from seedling explants of pigeonpea (Cajanus cajan L.) has been achieved. The frequency of shoot bud regeneration was influenced by the type of explant, genotype and concentrations of cytokinin. Explants, viz. epitocotyl, hypocotyl, leaf, cotyledon and cotyledonary nodal segments from 7-day-old seedlings were cultured on MS medium augmented with different concentrations of BAP/kinetin. Among the various concentrations tested, 2.0 mg/l BAP or kinetin was found to be the best for maximum shoot bud differentiation. Percentage as well as the number of shoots per explant showing differentiation of shoot buds was higher on MS media supplemented with BAP compared to kinetin. Elongation of multiple shoots was obtained on MS medium fortified with BAP in combination with NAA and GA3. The optimal BAP concentration for shoot elongation was 1.0 mg/l. The combination of 1.0 mg/l BAP with 0.1 mg/l NAA increased the number of multiple shoots as well as shoot elongation. Addition of GA3 along with BAP and NAA combination dramatically enhanced both multiple shoot proliferation and shoot elongation in all the explants. The elongated shoots were successfully rooted on MS medium containing different auxins. Among them IBA at 0.2 mg/l induced maximum frequency of rooting followed by NAA and IAA. Regenerated plants were successfully established in soil where 90–95% of them developed into morphologically normal and fertile plants. This method can thus be advantageously applied in the production of transgenic pigenopea plants.
机译:从木豆(Cajanus cajan L.)的外植体中获得了有效且直接的芽芽分化和多次芽诱导。芽再生的频率受外植体类型,基因型和细胞分裂素浓度的影响。外植体,即。将7天龄幼苗的表皮,下胚轴,叶,子叶和子叶节段在添加了不同浓度BAP /激肽的MS培养基上培养。在测试的各种浓度中,发现2.0 mg / l BAP或激动素是最大的芽芽分化最佳方法。与Kinetin相比,补充BAP的MS培养基显示出芽芽分化的百分比和每个外植体的芽数更高。在用BAP结合NAA和GA3强化的MS培养基上获得多个芽的伸长。枝条伸长的最佳BAP浓度为1.0 mg / l。 1.0 mg / l BAP与0.1 mg / l NAA的组合增加了多次芽的数量以及芽的伸长。 GA3连同BAP和NAA的组合显着增强了所有外植体的多次芽增殖和芽伸长。细长的芽成功地生根于含有不同生长素的MS培养基上。其中0.2 mg / l的IBA诱导最大生根频率,其次是NAA和IAA。在土壤中成功建立了再生植物,其中90–95%的植物发育为形态正常和可育的植物。因此,该方法可以有利地用于生产转基因木豆科植物。

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