Scale Implications for Environmental Risk Assessment and Monitoring of the Cultivation of Genetically Modified Herbicide-Resistant Sugar Beet: A Review

F. Graef, G. Schütte, B. Winkel, H. Teichmann, M. Mertens
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引用次数: 6

Abstract

Genetically modified herbicide-resistant (GMHR) sugar beet ( Beta vulgaris L.) has been cultivated in the US for several years and an application has been submitted for cultivation in Europe. Concerns have been raised about how GMHR sugar beet cultivation might impair the agro-environment. European legislation for GM plants requires, prior to their commercial import and/or cultivation, a stepwise reduction of the containment and a gradual increase in the scale of release. Experimental results gained during this procedure enter an environmental risk assessment; after the GM plant approval, a systematic monitoring of potential adverse environmental effects is required. We collected information on sugar beet biology and cultivation and the HR technology. We categorised the literature findings, evaluated the evidence of agro-environmental effects and indicated adverse effects. The impacts are directly and indirectly linked to sugar beet biology and/or to the HR technology. Most likely are a) adverse herbicide effects on field organisms, aquatic communities and soil microbial communities, b) persistence of the GM plant triggered by a potential selective advantage and/or genetic drift after hybridisation of GMHR cultivated, feral and weed beet with neighbouring beets and wild relatives, c) the increase of HR in weeds and subsequent increase and/or change in the herbicide application regime after several years of glyphosate application, and d) decline in agrobiodiversity (weed communities, herbivores, pollinators and beneficial species). Our study reveals a lack of experimental data on potential agro-environmental effects. This suggests that the principle of a stepwise scale increase of release is inadequately applied to the GMHR sugar beet approval process. The adverse effects identified should prompt further research experiments to gain information for the ERA and/or specific monitoring activities at the respective identified spatial scale levels.
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转基因抗除草剂甜菜种植环境风险评估与监测的规模意义综述
转基因抗除草剂甜菜(Beta vulgaris L.)已在美国种植多年,并已向欧洲提交了种植申请。转基因甜菜种植可能会损害农业环境,这引起了人们的关注。欧洲关于转基因植物的立法要求,在其商业进口和/或种植之前,逐步减少遏制并逐步增加释放规模。在此过程中获得的实验结果进入环境风险评估;在转基因植物获得批准后,需要对潜在的不利环境影响进行系统监测。我们收集了甜菜生物学、栽培和HR技术方面的资料。我们对文献发现进行了分类,评估了农业环境影响的证据,并指出了不利影响。这些影响与甜菜生物学和/或人力资源技术直接或间接相关。最可能的原因是:a)除草剂对田间生物、水生群落和土壤微生物群落的不利影响;b)转基因转基因作物与邻近的甜菜和野生近缘种杂交后,由于潜在的选择优势和/或遗传漂变而引发的转基因植物的持久性;c)杂草中HR的增加以及随后草甘膦施用数年后除草剂施用制度的增加和/或变化。农业生物多样性(杂草群落、食草动物、传粉者和有益物种)下降。我们的研究表明,缺乏关于潜在农业环境影响的实验数据。这表明,逐步增加释放量的原则在GMHR甜菜审批过程中应用不充分。所确定的不利影响应促使进一步的研究实验,以便在各自确定的空间尺度水平上为环境评估和/或具体监测活动获得信息。
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