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Enhanced late blight resistance of transgenic potato expressing glucose oxidase under the control of pathogen-inducible promoter

机译:在病原体诱导启动子的控制下,表达葡萄糖氧化酶的转基因马铃薯的晚疫病抗性增强

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摘要

To engineer crop disease resistance by utilizing natural defense mechanism that was expressed in the incompatible host-pathogen interactions is expected to result in a durable and broad-spectrum resistance. In order to prove this viewpoint, we amplified the coding region of the glucose oxidase (GO) gene from Aspergillus niger via PCR and fused it to the pathogen-inducible promoter, Prp1-1. The chimeric gene was cloned into a plant expression vector and conjugated into Agrobacterium.
机译:通过利用在不相容的宿主-病原体相互作用中表达的自然防御机制来工程化农作物抗病性,有望产生持久和广谱的抗性。为了证明这一观点,我们通过PCR扩增了来自黑曲霉的葡萄糖氧化酶(GO)基因的编码区,并将其与病原体诱导型启动子Prp1-1融合。嵌合基因被克隆到植物表达载体中并与农杆菌结合。

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