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Resistance to insects in transgenic Solatium plants expressing a peroxidase gene from horseradish

机译:转辣根表达过氧化物酶基因的茄属植物对昆虫的抗性

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摘要

To engineer insect-resistant Solanum plants, a peroxidase C2 gene (prxC2) from horseradish was introduced into Solanum integrifolium Poir. cv. Hiranasu. We produced 77 transgenic Hiranasu plants. Peroxidase expression was confirmed at the transcriptional and translational levels by northern blot analysis and by measuring peroxidase activity, respectively. Feeding test results show that transformant no, 180 is more resistant to corn earworm (Heliothis armigerd) and common cutworm (Spodoptera liturd) than the wild-type plants. We also found a correlation between insect resistance and lignin content in the transgenic plants. In particular, the lignin content of transformant no. 180 was 30% higher than that of wild-type plants. These results further confirm that peroxidase is functionally expressed in transgenic plants and suggest that the increased lignin content is a basis for the insect resistance in transgenic Hiranasu plants.
机译:为了改造抗昆虫的茄科植物,将辣根中的过氧化物酶C2基因(prxC2)引入到整茄子Poir中。简历。平寿我们生产了77种转基因Hiranasu植物。通过Northern印迹分析和通过测量过氧化物酶活性分别在转录和翻译水平上证实过氧化物酶的表达。饲喂测试结果表明,与野生型植物相比,No. 180转化体对玉米穗虫(Heliothis armigerd)和普通角虫(Spodoptera liturd)的抵抗力更高。我们还发现了转基因植物中昆虫抗性与木质素含量之间的相关性。特别地,转化体编号1的木质素含量。 180比野生型植物高30%。这些结果进一步证实了过氧化物酶在转基因植物中功能性表达,并且表明增加的木质素含量是转基因平假名植物中昆虫抗性的基础。

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