首页> 外文期刊>American Journal of Bioscience and Bioengineering >Enhance Maize (Zea mays L.) Tolerance to Abiotic Stress Through the Genetic Transformation with Anthranilate Synthase (ASA2 Gene) Using Particle Bombardment
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Enhance Maize (Zea mays L.) Tolerance to Abiotic Stress Through the Genetic Transformation with Anthranilate Synthase (ASA2 Gene) Using Particle Bombardment

机译:通过使用粒子轰击的邻氨基苯甲酸合酶(ASA2基因)的遗传转化,提高玉米(非玉米)对非生物胁迫的耐受性

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The agricultural plans in Egypt aim to increase maize production and yield to reduce the importation and to meet the country's need from maize. Currently the crop production is affected by the climatic changes which rise the abiotic and biotic stresses problems. In an attempt to raise the tryptophan level in maize, particle bombardment technique was used with two hybrids maize, namely Sc168 and Sc10. The results of this study showed that both hybrids were transformed efficiently and showed increased levels of tryptophan in the two hybrids. The double shot 1100 psi was higher effective than single shot. It can be concluded that levels of tryptophan increased clearly in the two hybrids which is considered an indicator for ASA2 successful expressing as compared to control. The present study established effective tissue culture protocol for maize hybrids suitable for gene transformation which may used in maize improvement programs in the future.
机译:埃及的农业计划旨在增加玉米产量和单产,以减少进口量并满足该国对玉米的需求。当前,作物生产受到气候变化的影响,气候变化增加了非生物和生物胁迫问题。为了提高玉米中的色氨酸水平,将粒子轰击技术用于两种杂交玉米,即Sc168和Sc10。这项研究的结果表明,两个杂种均得到有效转化,并且在两个杂种中色氨酸水平均升高。 1100 psi的双重冲击比单一冲击有效。可以得出结论,与对照相比,在两个杂种中色氨酸的水平明显增加,这被认为是ASA2成功表达的指标。本研究建立了适用于基因转化的玉米杂种的有效组织培养方案,该方案可在未来的玉米改良计划中使用。

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