Trtikova Miluse, Wikmark Odd Gunnar, Zemp Niklaus, Widmer Alex, Hilbeck Angelika
ETH Zurich, IBZ, Plant Ecological Genetics, Universitaetstrasse 16, 8092 Zurich, Switzerland.
Genok-Centre for Biosafety, 9294 Tromso, Norway.
PLoS One. 2015 Apr 8;10(4):e0123011. doi: 10.1371/journal.pone.0123011. eCollection 2015.
Bt protein content in transgenic insect resistant (Bt) maize may vary between tissues within plants and between plants growing under different environmental conditions. However, it is unknown whether and how Bt protein content correlates with transgene expression, and whether this relationship is influenced by stressful environmental conditions. Two Bt maize varieties containing the same transgene cassette (MON 810) were grown under optimal and stressful conditions. Before and during stress exposure, the upper leaves were analysed for transgene expression using quantitative RT-PCR and for Bt content using ELISA. Under optimal conditions there was no significant difference in the transgene expression between the two investigated Bt maize varieties whereas Bt protein content differed significantly. Transgene expression was correlated with Bt protein content in only one of the varieties. Under stressful environmental conditions we found similar transgene expressions as under optimal conditions but Bt content responded differently. These results suggest that Bt content is not only controlled by the transgene expression but is also dependent on the genetic background of the maize variety. Under stressful conditions the concentration of Bt protein is even more difficult to predict.
转基因抗虫(Bt)玉米中的Bt蛋白含量在植株内的不同组织之间以及在不同环境条件下生长的植株之间可能会有所不同。然而,尚不清楚Bt蛋白含量是否以及如何与转基因表达相关,以及这种关系是否受到胁迫环境条件的影响。两个含有相同转基因盒(MON 810)的Bt玉米品种在最佳条件和胁迫条件下种植。在胁迫暴露之前和期间,使用定量RT-PCR分析上部叶片的转基因表达,并使用ELISA分析Bt含量。在最佳条件下,两个被研究的Bt玉米品种之间的转基因表达没有显著差异,而Bt蛋白含量差异显著。仅在其中一个品种中,转基因表达与Bt蛋白含量相关。在胁迫环境条件下,我们发现转基因表达与最佳条件下相似,但Bt含量的反应不同。这些结果表明,Bt含量不仅受转基因表达的控制,还取决于玉米品种的遗传背景。在胁迫条件下,Bt蛋白的浓度更难以预测。