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Genetic transformation recovery and characterization of fertile soybean transgenic for a synthetic Bacillus thuringiensis cryIAc gene.

机译:苏云金芽孢杆菌cryIAc基因合成的可育大豆转基因的遗传转化回收和鉴定。

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摘要

Somatic embryos of jack, a Glycine max (L.) Merrill cultivar, were transformed using microprojectile bombardment with a synthetic Bacillus thuringiensis insecticidal crystal protein gene (Bt cryIAc) driven by the 35S promoter and linked to the HPH gene. Approximately 10 g of tissue was bombarded, and three transgenic lines were selected on hygromycin-containing media and converted into plants. The recovered lines contained the HPH gene, but the Bt gene was lost in one line. The plasmid was rearranged in the second line, and the third line had two copies, one of which was rear-ranged. The CryIAc protein accumulated up to 46 ng mg-1 extractable protein. In detached-leaf bioassays, plants with an intact copy of the Bt gene, and to a lesser extent those with the rearranged copy, were protected from damage from corn earworm (Helicoverpa zea), soybean looper (Pseudoplusia includens), tobacco budworm (Heliothis virescens), and velvetbean caterpillar (Anticarsia gemmatalis). Corn earworm produced less than 3% defoliation on transgenic plants, compared with 20% on the lepidopteran-resistant breeding line GatIR81-296, and more than 40% on susceptible cultivars. Unlike previous reports of soybean transformation using this technique, all plants were fertile. To our knowledge, this is the first report of a soybean transgenic for a highly expressed insecticidal gene.
机译:使用由35S启动子驱动并连接到HPH基因的合成苏云金芽孢杆菌杀虫晶体蛋白基因(Bt cryIAc),通过微粒轰击,转化了Glycine max(L.)Merrill品种千斤顶的体细胞胚。轰击大约10 g的组织,并在含有潮霉素的培养基上选择三个转基因品系,并将其转化为植物。回收的品系包含HPH基因,但Bt基因在一条品系中丢失。质粒在第二行中重排,第三行有两个拷贝,其中一个重排。 CryIAc蛋白积累了多达46 ng mg-1的可提取蛋白。在脱叶生物测定中,保护了具有完整Bt基因拷贝的植物,以及在较小程度上具有重排拷贝的植物,免受玉米ear虫(Helicoverpa zea),大豆套er(Pseudoplusia includens),烟草芽虫(Heliothis)的损害。 virescens)和天鹅绒毛毛虫(Anticarsia gemmatalis)。玉米ear虫在转基因植物上产生的叶下脱落少于3%,而在抗鳞翅目的育种系GatIR81-296上则为20%,而在易感品种上则超过40%。与以前使用该技术进行大豆转化的报道不同,所有植物均能繁殖。据我们所知,这是转基因大豆高表达杀虫基因的首次报道。

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