In-field frequencies and characteristics of oilseed rape with double herbicide resistance.

Environmental biosafety research Pub Date : 2009-04-01 Epub Date: 2009-10-16 DOI:10.1051/ebr/2009006
Antje Dietz-Pfeilstetter, Peter Zwerger
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引用次数: 10

Abstract

When growing different transgenic herbicide-resistant oilseed rape cultivars side by side, seeds with multiple herbicide resistance can arise, possibly causing problems for the management of volunteer plants. Large-scale field experiments were performed in the years 1999/2000 and 2000/2001 in order to investigate the frequencies and the consequences of the transfer of herbicide resistance genes from transgenic oilseed rape to cultivars grown on neighboring agricultural fields. Transgenic oilseed rape with resistance to glufosinate-ammonium (LibertyLink, LL) and with glyphosate resistance (RoundupReady, RR), respectively, was sown in adjacent 0.5 ha plots, surrounded by about 8 ha non-transgenic oilseed rape. The plots and the field were either in direct contact (0.5 m gap width) or they were separated by 10 m of fallow land. Seed samples taken during harvest in the transgenic plots at different distances were investigated for progeny with resistance to the respective other herbicide. It was found that outcrossing frequencies were reduced to different extents by a 10 m isolation distance. In addition to pollen-mediated transgene flow as a result of outcrossing, we found considerable seed-mediated gene flow by adventitious dispersal of transgenic seeds through the harvesting machine. Volunteer plants with double herbicide resistance emerging in the transgenic plots after harvest were selected by suitable applications of the complementary herbicides Basta and Roundup Ultra. In both years, double-resistant volunteers were largely restricted to the inner edges of the plots. Expression analysis under controlled laboratory conditions of double-resistant plants generated by manual crosses revealed stability of transgene expression even at elevated temperatures. Greenhouse tests with double-resistant oilseed rape plants gave no indication that the sensitivity to a range of different herbicides is changed as compared to non-transgenic oilseed rape.

具有双重除草剂抗性的油菜的田间种植频率和特性。
当不同的转基因抗除草剂油菜品种并排种植时,可能会产生具有多重除草剂抗性的种子,这可能会给志愿植株的管理带来问题。为了研究转基因油菜抗除草剂基因转移到邻近农田种植的品种上的频率和后果,1999/2000 年和 2000/2001 年进行了大规模的田间试验。抗草铵膦的转基因油菜(LibertyLink,LL)和抗草甘膦的转基因油菜(RoundupReady,RR)分别被播种在相邻的 0.5 公顷地块上,周围是大约 8 公顷的非转基因油菜。地块和田地要么直接接触(间隙宽度为 0.5 米),要么相隔 10 米的休耕地。在不同距离的转基因地块收获时采集的种子样本被用来调查对相应除草剂具有抗性的后代。结果发现,10 米的隔离距离在不同程度上降低了杂交频率。除了外交导致的花粉介导的转基因流动外,我们还发现通过收割机偶然散播的转基因种子也产生了相当大的种子介导的基因流动。通过适当施用互补性除草剂 Basta 和 Roundup Ultra,筛选出收获后转基因地块中出现的具有双重除草剂抗性的植株。在这两年中,双抗志愿植株主要局限于地块的内部边缘。在受控实验室条件下对人工杂交产生的双抗植株进行的表达分析表明,即使在高温条件下,转基因的表达也很稳定。用双抗油菜植株进行的温室测试表明,与非转基因油菜相比,双抗油菜对一系列不同除草剂的敏感性没有发生变化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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