Teressa Negawo Alemayehu, Baranek Linda, Jacobsen Hans-Jörg, Hassan Fathi
a Institute for Plant Genetics (Section of Plant Biotechnology), Gottfried Wilhelm Leibniz University of Hannover , Hannover , Germany.
b International Livestock Research Institute , Addis Ababa , Ethiopia.
GM Crops Food. 2016 Oct;7(3-4):159-174. doi: 10.1080/21645698.2016.1240148.
Transgenic pea lines transformed with the cry1Ac gene were characterized at molecular (PCR, RT-PCR, qRT-PCR and immunostrip assay) and functional levels (leaf paint and insect feeding bioassays). The results showed the presence, expression, inheritance and functionality of the introduced transgene at different progeny levels. Variation in the expression of the cry1Ac gene was observed among the different transgenic lines. In the insect bioassay studies using the larvae of Heliothis virescens, both larval survival and plant damage were highly affected on the different transgenic plants. Up to 100 % larval mortality was observed on the transgenic plants compared to 17.42 % on control plants. Most of the challenged transgenic plants showed very negligible to substantially reduced feeding damage indicating the insect resistance of the developed transgenic lines. Further analysis under field condition will be required to select promising lines for future uses.
用cry1Ac基因转化的转基因豌豆品系在分子水平(PCR、RT-PCR、qRT-PCR和免疫试纸检测)和功能水平(叶部涂抹和昆虫取食生物测定)进行了表征。结果表明,导入的转基因在不同后代水平上的存在、表达、遗传和功能。在不同转基因品系中观察到cry1Ac基因表达的差异。在使用棉铃虫幼虫的昆虫生物测定研究中,不同转基因植物上的幼虫存活率和植物损伤均受到高度影响。与对照植物上17.42%的幼虫死亡率相比,转基因植物上观察到高达100%的幼虫死亡率。大多数受挑战的转基因植物显示出非常轻微到显著减少的取食损伤,表明所培育的转基因品系具有抗虫性。需要在田间条件下进行进一步分析,以选择有前景的品系供未来使用。