Ammitzbøll Henriette, Mikkelsen Teis Nørgaard, Jørgensen Rikke Bagger
Biosystems Department, Risø National Laboratory, P.O. Box 49, 4000 Roskilde, Denmark.
Environ Biosafety Res. 2005 Jan-Mar;4(1):3-12. doi: 10.1051/ebr:2005010.
Oilseed rape (Brassica napus) is sexually compatible with its wild and weedy relative B. rapa, and introgression of genes from B. napus has been found to occur over a few generations. We simulated the early stages of transgene escape by producing F1 hybrids and the first backcross generation between two lines of transgenic B. napus and two populations of weedy B. rapa. Transgene expression and the fitness of the hybrids were examined under different environmental conditions. Expression of the transgenes was analyzed at the mRNA level by quantitative PCR and found to be stable in the hybrids, regardless of the genetic background and the environment, and equal to the level of transcription in the parental B. napus lines. Vigor of the hybrids was measured as the photosynthetic capability; pollen viability and seed set per silique. Photosynthetic capability of first generation hybrids was found to be at the same level, or higher, than that of the parental species, whereas the reproductive fitness was significantly lower. The first backcross generation had a significantly lower photosynthetic capability and reproductive fitness compared to the parental species. This is the first study that examines transgene expression at the mRNA level in transgenic hybrids of B. napus of different genetic background exposed to different environmental conditions. The data presented clarify important details of the overall risk assessment of growing transgenic oilseed rape.
油菜(甘蓝型油菜)与其野生和杂草亲缘种白菜型油菜存在有性兼容性,并且已发现甘蓝型油菜的基因会在几代内渗入白菜型油菜。我们通过培育转基因甘蓝型油菜的两个品系与杂草型白菜型油菜的两个种群之间的F1杂种和第一代回交后代,模拟了转基因逃逸的早期阶段。在不同环境条件下检测了杂种的转基因表达和适合度。通过定量PCR在mRNA水平分析转基因的表达,发现其在杂种中稳定,与遗传背景和环境无关,且与亲本甘蓝型油菜品系中的转录水平相当。杂种的活力通过光合能力、花粉活力和每角果结实率来衡量。发现第一代杂种的光合能力与亲本物种相当或更高,而繁殖适合度则显著较低。与亲本物种相比,第一代回交后代的光合能力和繁殖适合度显著较低。这是第一项在不同环境条件下,对不同遗传背景的转基因甘蓝型油菜杂种的mRNA水平转基因表达进行检测的研究。所呈现的数据阐明了种植转基因油菜总体风险评估的重要细节。