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Constitutive and induced insect resistance in RNAi-mediated ultra-low gossypol cottonseed cotton

机译:RNAi介导的超低棉酚棉籽棉的本构和诱导的抗虫性

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摘要

BackgroundBesides fibers, cotton plants also produce a large amount of seeds with a high oil and protein content. The use of these seeds is restricted by their high contents of the terpenoid gossypol, which is harmful to humans and livestock. Using a genetic engineering approach, “Ultra-low gossypol cottonseed” (ULGCS) plants were produced by knocking down an enzyme that catalyzes the formation of a precursor of gossypol. This was accomplished via RNAi-mediated silencing of the target gene using a seed-specific α-globulin promotor. Since gossypol is also a crucial defense mechanism against leaf-feeding herbivores, ULGCS plants might possess lower herbivore resistance than non-engineered plants. Therefore, we tested the constitutive and inducible direct insect resistance of two ULGCS cotton lines against the African cotton leafworm, Spodoptera littoralis.
机译:背景技术除纤维外,棉株还产生大量具有高油和蛋白质含量的种子。这些种子的使用因其类萜棉酚的含量高而受到限制,这对人和牲畜都是有害的。使用基因工程方法,通过敲除催化棉酚前体形成的酶来生产“超低棉酚棉籽”(ULGCS)植物。这是通过使用种子特异性α-球蛋白启动子通过RNAi介导的靶基因沉默来实现的。由于棉酚也是抵抗以叶为食的草食动物的重要防御机制,因此ULGCS植物的草食动物抗性可能比非工程植物低。因此,我们测试了两种ULGCS棉系对非洲棉叶虫Spodoptera littoralis的本构和诱导性直接昆虫抗性。

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