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Optimization of Agrobacterium-mediated transformation in spring bread wheat using mature and immature embryos

机译:利用成熟和未成熟胚胎的农杆菌介导的农杆菌转化的优化

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Wheat is the most widely grown staple food crop in the world and accounts fordietary needs of more than 35% of the human population. Current status of transgenic wheat development is slow all over the world due to the lack of a suitable transformation system. In the present study, an efficient and reproducible Agrobacterium-mediated transformation system in bread wheat (Triticum aestivum L.) is established. The mature and immature embryos of six recently released high yielding spring bread wheat genotypes were used to standardize various parameters using Agrobacterium tumefaciens strain EHA105 harbouring binary vector pCAMBIA3301 having gus and bar as marker genes. The optimum duration for embryo pre-culture, inoculation time and co-cultivation were 2days, 30min and 48h, respectively. The bacterial inoculum concentration of OD of1at 600 nm showed 67.25% transient GUS expression in the histochemical GUS assay. The filter paper based co-cultivation limits the Agrobacterium overgrowth and had 82.3% explants survival rate whereas medium based strategy had 22.7% explants survival only. The medium having picloram 4mg/l along with antibiotics (cefotaxime 500mg/l and timentin 300mg/l) was found best suitable for initial week callus induction. The standardized procedure gave overall 14.9% transformation efficiency in immature embryos and 9.8% in mature embryos and confirmed by gene-specific and promoter-specific PCR and southern analysis. These results indicate that the developed Agrobacterium-mediated transformation system is suitable for diverse wheat genotypes. The major obstacle for the implication of the CRISPR-based genome editing techniques is the non-availability of a suitable transformation system. Thus, the present system can be exploited to deliver the T-DNA into the wheat genome for CRISPR-based target modifications and transgene insertions.
机译:小麦是世界上最广泛种植的主要食物作物,占人口35%以上的占有率的占顾问。由于缺乏合适的转化系统,转基因小麦开发的当前状态较慢。在本研究中,建立了面包小麦(Triticum Aestivum L)的有效和再现的农杆菌介导的转化系统。六个最近释放的高产春季面包小麦基因型的成熟和未成熟的胚胎用于使用土壤杆菌菌株EHA105携带具有GUS和BAR作为标记基因的二元载体PCAMBIA3301的菌株EHA105的各种参数。胚胎前培养,接种时间和共培养的最佳持续时间分别为2天,30分钟和48h。 OD OD1AT 600nm的细菌接种浓度显示在组织化学GUS测定中的67.25%瞬时GUS表达。滤纸基栽培的共培养限制了农杆菌过度生长,并且具有82.3%的外植体存活率,而基于中等的策略只有22.7%的外植体存活。发现毕氯4mg / L以及抗生素(头孢噻肟500mg / L和时间蛋白300mg / L)的培养基最适合初始一周的愈伤组织诱导。标准化程序在未成熟的胚胎中均为14.9%的转化效率,成熟胚胎中的9.8%,并通过基因特异性和特异性PCR和南方分析证实。这些结果表明,发育的农杆菌介导的转化体系适用于不同的小麦基因型。用于暗示基于CRISPR的基因组编辑技术的主要障碍是合适的转化系统的非可用性。因此,可以利用本系统以将T-DNA递送到小麦基因组中,用于基于CRISPR的靶修饰和转基因插入。

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