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Persistence of seeds, seedlings and plants, performance of transgenic wheat in weed communities in the field and effects on fallow weed diversity

机译:种子,幼苗和植物的持久性,转基因小麦在田间杂草群落中的表现以及对休耕杂草多样性的影响

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摘要

ntroduction of transgenic crops to agriculture has raised concerns about their effects on agro-ecosystems. We compared nine conventional lines of spring wheat with six genetically modified (GM) lines that contained transgenes of resistance against powdery mildew (Pm3b gene) or against fungi in general (Chi and Glu genes). We assessed the persistence and performance of these lines without competition and in experimental weed communities in the field, their seed germination in the laboratory, their survival in fallow plots and effects on post-harvest vegetation in the field.\udIn competition with weeds, the GM lines showed reduced seed number, plant height and biomass allocation to seeds than their corresponding non-GM lines. No such performance differences were observed without competition. The seedlings of GM lines did not persist longer than those of the corresponding non-GM lines in fallow plots. In the field, GM and non-GM wheat lines had similar performance and persistence and both were able to reproduce in dense weed communities and to survive during winter on fallow plots. Stored in soil in the laboratory, the seeds of GM and non-GM lines either germinated quickly or lost their viability after 3 months. GM and non-GM lines had no differential effects on the structure and diversity of fallow plant communities within the 6-month period of monitoring. Poor seed longevity yet successful plant persistence in weed communities or on fallow plots indicate that not removing a population of growing plants presents a greater risk than allowing the build-up of a soil seed bank regarding the potential escape of transgenic wheat to the environment. Strong varietal differences in persistence point out the importance of case-by-case assessment of new GM varieties and indicate that transgenic traits should preferably be introduced into varieties with low persistence.
机译:将转基因作物引入农业引起了人们对其对农业生态系统的影响的关注。我们比较了九个常规的春小麦品系和六个转基因(GM)品系,这些品系包含对白粉病(Pm3b基因)或一般对真菌(Chi和Glu基因)抗性的转基因。我们评估了这些品系在没有竞争的情况下的持久性和性能,以及在田间实验性杂草群落中的繁殖力,它们在实验室中的种子发芽,在休耕地中的存活率以及田间对收获后植被的影响。转基因品系显示出比其相应的非转基因品系减少的种子数量,株高和生物量分配给种子。没有竞争就没有观察到这种性能差异。在休耕地中,转基因品系的幼苗持久性不长于相应的非转基因品系。在田间,转基因和非转基因小麦品系具有相似的表现和持久性,都能够在茂密的杂草群落中繁殖,并能够在冬季在休耕地上生存。储存在实验室土壤中的转基因和非转基因品系的种子在3个月后迅速发芽或失去活力。在监测的六个月内,转基因和非转基因品系对休耕植物群落的结构和多样性没有差异性影响。较差的种子寿命和在杂草群落中或休耕地上成功的植物持久性表明,与允许建立土壤种子库相比,不转移正在生长的植物种群带来的风险要大得多,因为转基因小麦可能逃逸到环境中。持久性方面的强烈差异指出了对新的转基因品种进行逐案评估的重要性,并表明转基因性状应优选引入至持久性较低的品种中。

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