Stiller Ibolya, Dulai Sándor, Kondrák Mihály, Tarnai Réka, Szabó László, Toldi Ottó, Bánfalvi Zsófia
Agricultural Biotechnology Center, 2101, Gödöllo, P.O. Box 411, Hungary.
Planta. 2008 Jan;227(2):299-308. doi: 10.1007/s00425-007-0617-9. Epub 2007 Sep 8.
Two transgenic potato lines, T1 and T2, expressing the trehalose-6-phosphate synthase (TPS1) gene of yeast were isolated. In our experimental approach, we applied two novelties, namely the fusion of the drought-inducible promoter StDS2 to TPS1 and a marker-free transformation method. In contrast to the expected drought-induced expression, only a very low constitutive TPS1 expression was detected in the transgenic lines, probably due to chromosomal position effects. The observed expression pattern, however, was sufficient to alter the drought response of plants. Detached leaves of T1 and T2 showed an 8 h delay in wilting compared to the non-transformed control. Potted plants of T1 and T2 kept water 6 days longer than control plants and maintained high stomatal conductance and a satisfactory rate of net photosynthesis. During drought treatment, CO2 assimilation rate measured at saturating CO2 level was maintained at maximum level for 6-9 days in transgenic plants while it decreased rapidly after 3 days in the wild type plants. Under optimal growth conditions, lower CO2 fixation was detected in the transgenic than in the control plants. Stomatal densities of T1 and T2 leaves were reduced by 30-40%. This may have contributed to the lower CO2 fixation rate and altered drought response.
分离出了两个表达酵母海藻糖-6-磷酸合酶(TPS1)基因的转基因马铃薯品系T1和T2。在我们的实验方法中,我们采用了两个新方法,即将干旱诱导型启动子StDS2与TPS1融合以及无标记转化方法。与预期的干旱诱导表达相反,在转基因品系中仅检测到非常低的组成型TPS1表达,这可能是由于染色体位置效应。然而,观察到的表达模式足以改变植物的干旱响应。与未转化的对照相比,T1和T2的离体叶片萎蔫延迟了8小时。T1和T2的盆栽植物比对照植物多保持水分6天,并维持高气孔导度和令人满意的净光合速率。在干旱处理期间,转基因植物在饱和CO2水平下测得的CO2同化率在6-9天内维持在最高水平,而野生型植物在3天后迅速下降。在最佳生长条件下,转基因植物中的CO2固定率低于对照植物。T1和T2叶片的气孔密度降低了30-40%。这可能导致了较低的CO2固定率和改变的干旱响应。