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Improved growth and weed control of glyphosate-tolerant poplars

机译:耐草甘膦杨树的生长和杂草控制得到改善

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We studied the impact of glyphosate tolerance on weed control and tree growth in field-grown transgenic poplars. Using Agrobacterium-mediated transformation, we produced 94 transgenic transformation events in four hybrid genotypes (three Populus trichocarpa x P. deltoides and one of P. trichocarpa x P. nigra). These lines were screened for high levels of tolerance in two plantations in Oregon. Based on screening results, we propagated four lines from two hybrid genotypes to study their value for weed control and productivity in a 2-year management trial in eastern Oregon, comparing conventional weed control at the time of the study to methods that included over-the-top applications of glyphosate during the growing season. Herbicide tolerance was stable in all of the trees over the 2-year period. Weed control, based on weed abundance, was substantially improved in the over-the-top application. Growth of the trees, as measured by stem volume index, was correspondingly improved; transgenic trees grew approximately 20 % faster than the transgenic and non-transgenic control trees. An exploratory life-cycle analysis of the embodied greenhouse-gas benefits for a coppice bioenergy plantation suggested that over a 6-year rotation with three coppice cycles, the growth improvement could provide an similar to 8 % savings in greenhouse gas emissions per unit of wood produced. Despite the potential benefits, adoption of this technology will depend on compatibility with management regimes, regulatory and market acceptance, and probably also the development of a robust transgene containment system.
机译:我们研究了草甘膦耐受性对田间种植的转基因杨树中杂草控制和树木生长的影响。使用农杆菌介导的转化,我们在四种杂种基因型中产生了94个转基因转化事件(三种毛果杨x x三角果和一种毛果x黑色)。在俄勒冈州的两个人工林中筛选了这些品系的高水平耐性。根据筛选结果,我们在俄勒冈州东部进行了为期2年的管理试验中,从两种杂种基因型中繁殖了4个品系,以研究其对杂草控制和生产力的价值,并将研究时的常规杂草控制与包括杂草控制在内的方法进行了比较。在生长期中草甘膦的最高施用量。在2年的时间内,所有树木的除草剂耐受性均保持稳定。基于杂草丰度的杂草控制在顶棚施用中得到了显着改善。以茎体积指数衡量,树木的生长得到相应改善;转基因树的生长速度比转基因和非转基因对照树快20%。通过对生命周期的探索性分析,对科比比生物能源种植园所体现的温室气体效益进行了分析,结果表明,在三个科比周期的轮作中,经过六年的轮换,生长的改善可以使每单位木材的温室气体排放量节省约8%。生产的。尽管有潜在的好处,但这项技术的采用将取决于与管理制度,监管和市场接受度的兼容性,以及强大的转基因遏制系统的开发。

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