RNA干扰
生物
基因敲除
桃蚜
蚜虫
基因
抗药性
遗传学
击倒阻力
昆虫
毒理
生物技术
核糖核酸
杀虫剂
植物
氯菊酯
农学
氟氯氰菊酯
作者
John Fosu‐Nyarko,Sadia Iqbal,Frances Brigg,M. G. K. Jones
出处
期刊:PubMed
日期:2022-01-01
卷期号:2360: 187-208
被引量:1
标识
DOI:10.1007/978-1-0716-1633-8_15
摘要
Identifying genes responsive to insecticide treatment is the first step towards understanding the mechanism(s) of insecticide resistance and the development of effective insecticides against economic insect pests such as the Green peach aphid (GPA). Functional and Reverse Genetics approaches such as the RNA interference (RNAi) technology can be used to assess the possible involvement of genes whose expression is associated with an insecticide treatment. For GPA, this can be done by comparing the behavior and development of the insect following RNAi of a putative gene associated with insecticide treatment and exposure of the RNAi-treated insects to lethal doses of insecticides. In a case where knockdown of a gene or genes increases the susceptibility of RNAi-treated populations compared to controls, the target gene may have a direct role in the development of resistance to the insecticide or the gene may be involved in other metabolic processes that may be required for resilience against the insecticide.
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