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Resolving browning during the establishment of explant cultures in Vicia faba L. for genetic transformation

机译:在蚕豆库中建立外植体培养期间解决褐变。用于遗传转化

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摘要

Optimisation of in vitro regeneration systems of two explant types for low-tannine cultivars of faba bean based on culturing of shoot apices and cotyledonary nodes were provided by usage of various antioxidants - ascorbic acid, citric acid, glutathione and activated charcoal. In subsequent testing, the combined effects of antioxidants with transformation co-cultivation compounds acetosyringone and L-cysteine was studied. The application of antioxidants lead to decreased callogenesis, citric acids treatments (50 mg.l−1) dramatically decreased necrotic response of explants. However, citric acid, used together with ascorbic acid completely inhibited shoot growth in shoot apex cultures. Glutathion evoked hyperhydricity of explants. Activated charcoal induced rooting on media which are commonly used for shoot proliferation. Combination of acetosyringone with antioxidants influenced shoot proliferation, except of variant with ascorbic acid. Citric acid was the best and universal antioxidant in faba bean in vitro cultures and its use is recommended for faba bean genetic transformation experiments.
机译:通过使用各种抗坏血酸,柠檬酸,谷胱甘肽和活性炭,提供了基于芽π培养的Faba Bean的低蛋白栽培品种植物品种的体外再生系统的优化。在随后的测试中,研究了抗氧化剂与转化共培养化合物乙酰苯胺酮和L-半胱氨酸的组合效果。抗氧化剂的施用导致胼unce,柠檬酸处理(50mg.L-1)显着降低了外植体的坏死响应。然而,与抗坏血酸一起使用的柠檬酸完全抑制枝条培养物中的芽生长。谷胱甘肽引起了外植体的高水平。在常用于芽增殖的培养基上诱导活化木炭。除抗坏血酸的变体外,乙酰血红素酮与抗氧化剂的组合影响抗氧化剂。柠檬酸是Faba Bean体外培养的最佳和通用抗氧化剂,建议用于Faba Bean遗传转化实验。

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