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首页> 外文期刊>Journal of Economic Entomology >Efficacy of a cry1Ab Gene for Control of Maruca vitrata (Lepidoptera: Crambidae) in Cowpea (Fabales: Fabaceae)
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Efficacy of a cry1Ab Gene for Control of Maruca vitrata (Lepidoptera: Crambidae) in Cowpea (Fabales: Fabaceae)

机译:COWPEA中Maruca Vitrata(Lepidoptera:Crambidae)对豇豆(Fabales:Fabaceae)进行控制的疗效

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Cowpea [Vigna unguiculata (L) Walp.] is an important staple legume in the diet of many households in sub-Saharan Africa. Its production, however, is negatively impacted by many insect pests including bean pod borer, Maruca vitrata F., which can cause 20–80% yield loss. Several genetically engineered cowpea events that contain a cry1Ab gene from Bacillus thuringiensis (Bt) for resistance against M. vitrata were evaluated in Nigeria, Burkina Faso, and Ghana (West Africa), where cowpea is commonly grown. As part of the regulatory safety package, these efficacy data were developed and evaluated by in-country scientists. The Bt-cowpea lines were planted in confined field trials under Insect-proof netting and artificially infested with up to 500 M. vitrata larvae per plant during bud formation and flowering periods. Bt-cowpea lines provided nearly complete pod and seed protection and in most cases resulted in significantly increased seed yield over non-Bt control lines. An integrated pest management strategy that includes use of Bt-cowpea augmented with minimal insecticide treatment for protection against other insects is recommended to control pod borer to enhance cowpea production. The insect resistance management plan is based on the high-dose refuge strategy where non-Btcowpea and natural refuges are expected to provide M. vitrata susceptible to Cry1Ab protein. In addition, there will be a limited release of this product until a two-toxin cowpea pyramid is released. Other than South African genetically engineered crops, Bt-cowpea is the first genetically engineered food crop developed by the public sector and approved for release in sub-Saharan Africa.
机译:Cowpea [Vigna Unguiculata(L)Walp。]是撒哈拉以南非洲众多家庭饮食中的重要主食豆类。然而,它的生产受到许多昆虫害虫,包括豆荚螟,Maruca Vitrata F的产生负面影响,这可能导致20-80%的产量损失。在尼日利亚,布基纳法索和加纳(西非)评估了含有来自Bacillus thuringiensis(Bt)的植物杆菌(BT)抗M. Vitrata的Cry1ab基因的几种转基因豇豆事件。作为监管安全包的一部分,这些疗效数据由乡村科学家制定和评估。 BT-COWPEA系列在昆虫的网上种植,在昆虫的净网络下进行了限制的现场试验,并且在芽形成和开花期间,每株植物的vitraata幼虫最多有效地感染。 BT-豇豆系列提供了几乎完全的豆荚和种子保护,并且在大多数情况下导致非BT控制线的种子产量显着增加。包括使用BT-Codpea的综合害虫管理策略增加了以极少的杀虫剂处理来保护其他昆虫保护,以控制Pod Borer以增强豇豆生产。抗虫管理计划基于高剂量避难策略,其中预期非BTCOWPEA和自然难民提供易受Cry1ab蛋白的vitrata。此外,在释放双辛豇豆金字塔之前,该产品将有有限的释放。除南非遗传工程作物外,BT-COWPEA是公共部门开发的第一个转基因食品作物,并批准撒哈拉以南非洲释放。

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