围绕在非洲部署表达bt的豇豆的监管考虑:专家小组的审议报告。

GM crops Pub Date : 2011-06-01 DOI:10.4161/gmcr.2.3.18689
Joseph Huesing, Jörg Romeis, Norman Ellstrand, Alan Raybould, Richard Hellmich, Jeff Wolt, Jeff Ehlers, Clémentine Dabiré, Christian Fatokun, Karen Hokanson, Mohammad F Ishiyaku, Venu Margam, Nompumelelo Obokoh, Jacob Mignouna, Francis Nangayo, Jeremy Ouedraogo, Rémy Pasquet, Barry Pittendrigh, Barbara Schaal, Jeff Stein, Manuele Tamò, Larry Murdock
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引用次数: 32

摘要

豇豆(Vigna unguiculata spp unguiculata)适应于西非干旱的农业生态区,在那里它是膳食蛋白质的主要来源,并被广泛用作饲料作物。提高豇豆的产量可以提高西非的粮食供应和安全。昆虫捕食——主要来自豆科豆荚虫(Maruca vitrata)、花蓟马(Megalurothrips sjostedti)和一种吸豆荚虫的复合体(如Clavigralla spp)——是西非豇豆生产的主要产量限制因素。当用杀虫剂控制vitrata时,产量显著增加。然而,可用性、成本和安全性方面的考虑限制了农药作为提高豇豆产量的可行选择。利用转基因技术开发bt豇豆防治豆荚螟是一种很有前途的豇豆改良途径。表达苏云金芽孢杆菌鳞翅目活性Cry1Ab蛋白的豇豆正在被开发为西非的第一代bt豇豆作物。对bt豇豆进行适当的管理,以确保其在西非条件下的可持续性,对其成功发展至关重要。这一过程的第一步是进行环境风险评估,以确定Cry1Ab蛋白对西非关键环境保护目标产生不利影响的可能性和程度。在这里,我们描述了2009年召开的一个专家小组的结果,该小组旨在制定bt豇豆的问题制定阶段,并解决有关基因流动、非目标节肢动物和昆虫抗性管理的具体问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Regulatory considerations surrounding the deployment of Bt-expressing cowpea in Africa: report of the deliberations of an expert panel.

Cowpea (Vigna unguiculata spp unguiculata) is adapted to the drier agro-ecological zones of West Africa where it is a major source of dietary protein and widely used as a fodder crop. Improving the productivity of cowpea can enhance food availability and security in West Africa. Insect predation--predominately from the legume pod borer (Maruca vitrata), flower thrips (Megalurothrips sjostedti) and a complex of pod-sucking bugs (e.g., Clavigralla spp)--is a major yield-limiting factor in West African cowpea production. Dramatic increases in yield are shown when M. vitrata is controlled with insecticides. However, availability, costs, and safety considerations limit pesticides as a viable option for boosting cowpea production. Development of Bt-cowpea through genetic modification (GM) to control the legume pod borer is a promising approach to cowpea improvement. Cowpea expressing the lepidopteran-active Cry1Ab protein from Bacillus thuringiensis is being developed as a first generation Bt-cowpea crop for West Africa. Appropriate stewardship of Bt-cowpea to assure its sustainability under West African conditions is critical to its successful development. A first step in this process is an environmental risk assessment to determine the likelihood and magnitude of adverse effects of the Cry1Ab protein on key environmental protection goals in West Africa. Here we describe the results of an expert panel convened in 2009 to develop the problem formulation phase for Bt-cowpea and to address specific issues around gene flow, non-target arthropods, and insect resistance management.

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