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Comparison of Drought Stress Response and Gene Expression between a GM Maize Variety and a Near-Isogenic Non-GM Variety

机译:转基因玉米品种和近等基因非转基因品种的干旱胁迫响应和基因表达的比较

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摘要

Maize MON810, grown and commercialised worldwide, is the only cultivated GM event in the EU. Maize MON810, variety DKC6575, and the corresponding near-isogenic line Tietar were studied in different growth conditions, to compare their behaviour in response to drought. Main photosynthetic parameters were significantly affected by drought stress in both GM and non-GM varieties to a similar extent. Though DKC6575 (GM) had a greater sensitivity in the early phase of stress response as compared with Tietar (non-GM), after six days of stress they behaved similarly, and both varieties recovered from stress damage. Profiling gene expression in water deficit regimes and in a generalised drought stress condition showed an up-regulation of many stress-responsive genes, but a greater number of differentially expressed genes was observed in Tietar, with genes belonging to transcription factor families and genes encoding heat shock proteins, late embryogenesis abundant proteins and detoxification enzymes. Since induction of these genes have been indicated from the literature as typical of stress responses, their activation in Tietar rather than in DKC6575 may be reminiscent of a more efficient response to drought. DKC6575 was also analysed for the expression of the transgene CryIAb (encoding the delta-endotoxin insecticidal protein) in water deficit conditions. In all the experiments, the CryIAb transcript was not influenced by drought stress, but was expressed at a constant level. This suggests that though possessing a different pattern of sensitivity to stress, the GM variety maintains the same expression level for the transgene.
机译:玉米MON810,在全球范围内种植和商业化,是欧盟唯一的转基因栽培事件。在不同的生长条件下研究了玉米MON810,品种DKC6575和相应的近等基因系Tietar,以比较其对干旱的响应。转基因和非转基因品种中的主要光合作用参数都受到干旱胁迫的相似程度的影响。尽管DKC6575(GM)与Tietar(non-GM)相比,在胁迫响应的早期具有更高的敏感性,但是在胁迫六天后,它们的行为相似,并且两个品种都从胁迫损害中恢复了过来。在缺水状态和普遍干旱胁迫条件下,基因表达谱分析表明许多胁迫响应基因上调,但在铁塔尔州观察到大量差异表达基因,其中基因属于转录因子家族和编码热的基因休克蛋白,晚期胚胎发生,丰富的蛋白质和排毒酶。由于从文献中已经表明这些基因的诱导是典型的胁迫反应,因此它们在铁塔尔而不是在DKC6575中的激活可能让人联想到对干旱更有效的反应。还分析了DKC6575在缺水条件下转基因CryIAb(编码δ-内毒素杀虫蛋白)的表达。在所有实验中,CryIAb转录本不受干旱胁迫的影响,但以恒定水平表达。这表明,尽管GM品种对压力的敏感性不同,但其转基因表达水平却保持不变。

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