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首页> 外文期刊>Plant Cell, Tissue and Organ Culture: An International Journal on in Vitro Culture of Higher Plants >Transgenic cowpeas (Vigna unguiculata L. Walp) expressing Bacillus thuringiensis Vip3Ba protein are protected against the Maruca pod borer (Maruca vitrata)
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Transgenic cowpeas (Vigna unguiculata L. Walp) expressing Bacillus thuringiensis Vip3Ba protein are protected against the Maruca pod borer (Maruca vitrata)

机译:转基因豇豆(Vigna Unguiculata L. walp)表达芽孢杆菌苏格兰毒素vip3ba蛋白受到Maruca Pod Borer(Maruca Vitrata)的影响

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摘要

Although cowpea is an important food security crop in Africa, its production is constrained by insect pests such as the legume pod borer (Maruca vitrata) (Lepidoptera). Potential control strategies have focussed on using insecticidal toxins such as the crystal Cry proteins and vegetative insecticidal proteins (Vips) encoded by the cry and vip genes, respectively, of the bacterium Bacillus thuringiensis (Bt). This study sought to identify vip genes encoding toxins active against Maruca Pod Borer (MPB), from Australian Bt isolates. A collection of 224 Bt isolates was screened with gene-specific primers to identify those containing target vip genes namely vip3Aa35, vip3Af1, vip3Ag, vip3Ca2 and vip3Ba1. The coding sequences of the vip3 genes were cloned and over-expressed in Escherichia coli to produce Vip3 protein. The proteins were incorporated into Maruca artificial diets for use in insect bioassays with MPB larvae to screen for toxicity. Of these, Vip3Ba1 protein was found to strongly inhibit larval growth and was selected as the candidate gene for cowpea transformation. A vip3Ba gene reconstructed for plant expression was used in transforming cowpea via Agrobacterium tumefaciens. Transgenic lines expressing Vip3Ba protein were used in insect feeding trials to assess protection against Maruca and were found to be completely protected from this pest. We propose that the vip-cowpea lines could be combined with existing cry-transgenic cowpea to introgress this additional resistance trait and thus avoid or greatly delay the development of resistance in Maruca.
机译:虽然豇豆是非洲的重要粮食安全作物,但其生产受到昆虫害虫(如豆类豆腐螟(Maruca Vitrata)(鳞片)的限制。潜在的控制策略侧重于使用杀虫毒素等杀菌毒性毒素和植物杀虫蛋白(vips)分别对乳腺芽孢杆菌(Bt)分别编码的乳汁和vip基因编码。本研究旨在鉴定澳大利亚BT分离株,鉴定编码毒素毒素(MPB)的毒素的VIP基因。用基因特异性引物筛选224​​bt分离物的集合,以鉴定含有靶VIP基因的那些vip3aa35,Vip35,Vip3ag,Vip3ca2和Vip3ba1。克隆并在大肠杆菌中克隆并过度表达VIP3基因的编码序列,以产生VIP3蛋白。将蛋白质掺入Maruca人工饮食中,用于昆虫生物测定与MPB幼虫以筛选毒性。其中,发现VIP3BA1蛋白质强烈抑制幼虫生长,并被选为豇豆转化的候选基因。重建用于植物表达的VIP3BA基因用于通过土壤杆菌转化豇豆。表达VIP3BA蛋白的转基因素用于昆虫饲养试验中,以评估对MARUCA的保护,并被发现完全免受这种害虫保护的。我们建议VIP-COWPEA系列可以与现有的Cry-Transgenic Codpea结合起动这种额外的抵抗性状,从而避免或大大推迟Maruca抵抗的发展。

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