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The Agrobacterium-mediated transformation of common wheat (Triticum aestivum L.) and triticale (x Triticosecale Wittmack): role of the binary vector system and selection cassettes

机译:农杆菌介导的普通小麦(Triticum aestivum L.)和黑小麦(x Triticosecale Wittmack)的转化:二元载体系统和选择盒的作用

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摘要

The influence of two binary vector systems, pGreen and pCAMBIA, on the Agrobacterium-mediated transformation ability of wheat and triticale was studied. Both vectors carried selection cassettes with bar or nptII driven by different promoters. Two cultivars of wheat, Kontesa and Torka, and one cultivar of triticale, Wanad, were tested. The transformation rates for the wheat cultivars ranged from 0.00 to 3.58% and from 0.00 to 6.79% for triticale. The best values for wheat were 3.58% for Kontesa and 3.14% for Torka, and these were obtained after transformation with the pGreen vector carrying the nptII selection gene under the control of 35S promoter. In the case of the bar selection system, the best transformation rates were, respectively, 1.46 and 1.79%. Such rates were obtained when the 35S::bar cassette was carried by the pCAMBIA vector; they were significantly lower with the pGreen vector. The triticale cultivar Wanad had its highest transformation rate after transformation with nptII driven by 35S in pCAMBIA. The bar selection system for the same triticale cultivar was better when the gene was driven by nos and the selection cassette was carried by pGreen. The integration of the transgenes was confirmed with at least three pairs of specific starters amplifying the fragments of nptII, bar, or gus. The expression of selection genes, measured by reverse transcriptase polymerase chain reaction (RT-PCR) in relation to the actin gene, was low, ranging from 0.00 to 0.63 for nptII and from 0.00 to 0.33 for bar. The highest relative transcript accumulation was observed for nptII driven by 35S and expressed in Kontesa that had been transformed with pGreen.
机译:研究了pGreen和pCAMBIA这两种二元载体系统对农杆菌介导的小麦和黑小麦转化能力的影响。两种载体都带有由不同启动子驱动的带有bar或nptII的选择盒。测试了两个小麦品种Kontesa和Torka,以及一个黑小麦品种Wanad。小麦品种的转化率在0.00-3.58%之间,小黑麦的转化率在0.00-6.79%之间。小麦的最佳值是Kontesa的3.58%和Torka的3.14%,这些值是在35S启动子控制下,用携带nptII选择基因的pGreen载体转化后获得的。在钢筋选择系统的情况下,最佳转化率分别为1.46%和1.79%。当pCAMBIA载体携带35S :: bar盒时,获得了这样的比率。与pGreen载体相比,它们明显更低。在由pCAMBIA中的35S驱动的nptII转化后,黑小麦品种Wanad具有最高的转化率。当基因由nos驱动并且选择盒由pGreen携带时,用于相同黑小麦品种的条选择系统更好。用至少三对特异性启动子扩增nptII,bar或gus的片段来确认转基因的整合。通过与肌动蛋白基因相关的逆转录酶聚合酶链反应(RT-PCR)测得的选择基因的表达很低,nptII为0.00-0.63,bar为0.00-0.33。在35S驱动的nptII中观察到最高的相对转录本积累,并在用pGreen转化的Kontesa中表达。

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