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Suppression of NS3 and MP is important for the stable inheritance of RNAi-mediated Rice Stripe Virus (RSV) resistance obtained by targeting the fully complementary RSV-CP gene

机译:通过靶向完全互补的RSV-CP基因,抑制NS3和MP对于稳定遗传RNAi介导的水稻条纹病毒(RSV)抗性很重要。

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摘要

Rice stripe virus (RSV) is a viral disease that seriously impacts rice production in East Asia, most notably in Korea, China, and Japan. Highly RSV-resistant transgenic japonica rice plants were generated using a dsRNAi construct designed to silence the entire sequence region of the RSV-CP gene. Transgenic rice plants were inoculated with a population of viruliferous insects, small brown planthoppers (SBPH), and their resistance was evaluated using ELISA and an infection rate assay. A correlation between the expression of the RSV-CP homologous small RNAs and the RSV resistance of the transgenic rice lines was discovered. These plants were also analyzed by comparing the expression pattern of invading viral genes, small RNA production and the stable transmission of the RSV resistance trait to the T3 generation. Furthermore, the agronomic trait was stably transmitted to the T4 generation of transgenic plants.
机译:水稻条纹病毒(RSV)是一种病毒性疾病,严重影响了东亚地区的水稻生产,特别是在韩国,中国和日本。使用被设计为使RSV-CP基因的整个序列区域沉默的dsRNAi构建体产生了高度抗RSV的转基因粳稻植物。向转基因水稻植株中接种有毒昆虫,小褐飞虱(SBPH),并使用ELISA和感染率分析评估其抗性。发现了RSV-CP同源小RNA的表达与转基因水稻品系的RSV抗性之间的相关性。还通过比较入侵的病毒基因的表达模式,少量的RNA产生以及RSV抗性性状向T3代的稳定传播来分析这些植物。此外,农艺性状稳定地传递至转基因植物的T4代。

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