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Plant regeneration through somatic embryogenesis from calli derived from leaf bases of Laurus nobilis L. (Lauraceae)

机译:来源于月桂属(月桂科)叶基的愈伤组织通过体细胞胚发生再生植物。

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Somatic embryogenesis was induced in embryo culture on half MS medium supplemented with NAA (8 mg/l) as the sole plant growth regulator after incubation of the media in the refrigerator at 4°C for two weeks to promote callus induction and somatic embryogenesis in Laurus nobilis. Both embryogenetic calli and somatic embryos were induced in the above selected medium. Embryo growth and development were stimulated by separation of embryos successfully from embryo clusters and transferred onto fresh half MS. Among the selected explants, only leaf bases were found to respond actively to plant regeneration, especially in inducing callus formation and in sustaining faster callus growth. Root formation of regenerated plantlets tended to decrease with time on regeneration media. Overall, 75% of the plantlets derived from the callus survived in the greenhouse; and they all grew to phenotypically normal plants. This procedure will enable the use of regeneration tissue culture technology for germplasm conservation of L. nobilis, a plant of high medicinal and commercial value.Plant Tissue Cult. & Biotech. 24(2): 213-221, 2014 (December)
机译:在添加了NAA(8 mg / l)作为唯一植物生长调节剂的一半MS培养基上的胚胎培养中,在胚胎培养基中诱导体细胞胚发生后,将其在4°C的冰箱中孵育两周,以促进月桂的愈伤组织诱导和体细胞胚发生贵族。在上述选择的培养基中诱导了胚性愈伤组织和体细胞胚。通过成功地从胚簇中分离出胚来刺激胚的生长和发育,并转移到新鲜的半MS上。在选定的外植体中,仅叶基被发现对植物再生有积极的反应,特别是在诱导愈伤组织形成和维持较快的愈伤组织生长方面。在再生培养基上,再生小植株的根形成倾向于随时间减少。总体而言,愈伤组织衍生的苗中有75%在温室中存活;它们都长成表型正常的植物。该程序将使再生组织培养技术能够用于具有较高药用和商业价值的植物Nobilis的种质保护。和生物技术。 24(2):213-221,2014(12月)

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