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Refined glufosinate selection and its extent of exposure for improving the Agrobacterium-mediated transformation in Indian soybean (Glycine max) genotype JS-335

机译:精致的甘草酸盐选择及其暴露程度,用于改善印度大豆(Glycine Max)基因型JS-335中的农杆菌介导的转化

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摘要

Soybean like many other crops, in this genomic era, has well-established genomic database which provides a wide range of opportunities for improvement through genetic manipulation. But the growing demand for soybean transgenics with increased production and improved quality has been handicapped due to inefficient transformation strategies and hence an efficient, stable and reliable transformation system is of prime requisite. In the present study, Agrobacterium-mediated transformation was standardized by refining the glufosinate selection system in terms of dosage (0-6 mg l(-1)) and degree of exposure. The cotyledonary node explants (with and without wounding) initially cultured on a non-selective shoot induction medium for 10 days before transferring them to the selective SIM with an optimized concentration of 5.0 mg l(-1) ammonium glufosinate, showed least selection escape frequency. Wounded cotyledonary node explants infected with Agrobacterium tumefaciens harboring pBIN-bar construct, showed an improved regeneration efficiency of 55.10% and transformation efficiency of 12.6% using Southern blotting in T-1 plants. Southern analysis of T-1 plants confirmed the integration of bar gene into the genomic DNA and the bar positive T-1 plants segregated in 3 : 1 ratio. This is the first report, to our knowledge, of a high transformation efficiency using Agrobacterium-mediated cot node-glufosinate system in an Indian soybean genotype.
机译:大豆像许多其他作物一样,在这个基因组时代,具有完善的基因组数据库,提供了通过遗传操作改进的广泛的机会。但由于效率低下的转化策略,因此,由于效率低下,高效,稳定且可靠的转型系统而越来越多,对大豆转基因的需求增长和提高的质量。在本研究中,通过在剂量(0-6mg L(-1))和接触程度方面通过精制甘氨酸选择系统来标准化农杆菌介导的转化。子叶节点外植体(有伤害)最初在非选择性芽诱导培养基上培养10天,然后用优化的浓度为5.0mg L(-1)肺泡磺酸铵,显示出最小选择逃逸频率。受伤患有Pbin-Bar构建体的土壤杆菌的受伤的子叶节点外植体,在T-1植物中使用Southern印迹,改善了55.10%的再生效率为55.10%,转化效率为12.6%。 T-1植物的南方分析证实了棒基因的整合到基因组DNA中,棒状阳性T-1植物在3:1的比例中分离。这是通过在印度大豆基因型中的农杆菌介导的婴儿床胶合糖磺酸盐系统的第一报告,对我们的知识进行高转化效率。

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