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首页> 外文期刊>International Journal of Agronomy >In Vitro Shoot Regeneration of Oil Seed Crop Sesamum indicum L. from Seedling Cotyledon Explant to Lay Ground for Genetic Transformation in Ethiopia
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In Vitro Shoot Regeneration of Oil Seed Crop Sesamum indicum L. from Seedling Cotyledon Explant to Lay Ground for Genetic Transformation in Ethiopia

机译:油籽作物芝麻蛋白籼稻氏菌的体外拍摄再生从幼苗宫内节植物中植入埃塞俄比亚的遗传转化奠定基础

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This study was conducted to develop an efficient regeneration protocol used for sesame genetic transformation. Published regeneration methods using 6-benzylaminopurine (BAP), indol-3-butyric acid (IBA), and α-naphthaleneacetic acid (NAA) were used in this experiment. Cotyledon explants of 14 Ethiopian genotypes collected from Humera Agricultural Research Center (HuARC) were used. Optimized culture conditions were used to investigate the regeneration response of different genotypes. Significant interactions between hormone treatments, MS media, and genotypes for shoot and root regeneration were recorded. Results showed that culture of cotyledons were developed and used as a source of explants for shoot regeneration. The highest shoot number, leaf number, and shoot length were recorded on explants cultured on 1.00?mg·L?1 BAP?+?1.00?mg·L?1 NAA in Hirhir and Aberghele, 0.75?mg·L?1 BAP?+?1.00?mg·L?1 NAA in Baha Zeyit, and 1.0?mg·L?1 BAP?+?1.00?mg·L?1 NAA in Humera 1, respectively. The lowest shoot number, leaf number, and shoot length were observed on explants cultured on the control in Gondar 1, Borkana, and Baha Necho, Borkana and Beha Necho, and Baha Necho, respectively. Genotypes with well-developed shoots were transferred to root induction media. Under rooting media, the best mean, root number, and root length were observed in Aberghele and ACC44 at 0.1?mg·L?1 IBA and 0.2?mg·L?1 NAA, respectively. Standardizing genotypes trait data to mean 0 and unity variance has helped to group 14 genotypes into four distinct clusters. Hirhir, Abeghele, Baha Zeyit, and Humera 1 were the best genotypes. These findings lay ground to Ethiopian sesame to do further genetic transformation aiming at improving the crop.
机译:进行该研究以开发用于芝麻遗传转化的有效再生方案。在该实验中使用了使用6-苄基氨基嘌呤(BAP),吲哚-3-丁酸(IBA)和α-萘乙酸(NAA)的发布的再生方法。使用了从Humera农业研究中心(Huarc)收集的14个埃塞俄比亚基因型的子叶外植体。优化的培养条件用于研究不同基因型的再生响应。记录了激素治疗,MS培养基和芽和根部再生基因型之间的显着相互作用。结果表明,子叶培养物被开发并用作芽再生的外植体的来源。在1.00?mg·l?1 bap培养的外植体上记录了最高的拍摄体,叶子数和拍摄长度?+?1.00?mg·l?1 naa在hirhir和aberghele,0.75?mg·l?1 bap? +?1.00?mg·l?1 naa在baha zeyit中,1.0?mg·l?1 bap?+?1.00?mg·l?分别在Humera 1中1naa。在戈达甘湾1,Borkana和Baha Necho,Borkana和Beha Necho和Baha Necho的控制上培养的外植体观察到最低拍摄植物。具有发育良好芽的基因型被转移到根部感应培养基中。在生根介质下,在阿比特勒和0.1μmg·l≤11ba和0.2μm·l≤1naa的Aberghele和​​Acc44中观察到最佳平均值,根数和根长度。标准化基因型特征数据以平均值0和单位方差有助于将14种基因型组分为四个不同的簇。 Hirhir,Abeghele,Baha Zeyit和Humera 1是最好的基因型。这些调查结果为埃塞俄比亚芝麻奠定了旨在改善作物的进一步遗传转型。

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