Agro-Environment Research Division, Kyushu Okinawa Agricultural Research Center, NARO, Koshi, Japan.
Southern Regional Plant Protection Center, Tien Giang, Vietnam.
Pest Manag Sci. 2019 Aug;75(8):2271-2277. doi: 10.1002/ps.5364. Epub 2019 Mar 14.
Strong resistance to imidacloprid in Nilaparvata lugens (Stål) has developed in Southeast and East Asia. Although the mode of inheritance for resistance is very useful information for pest control, this information is unknown in N. lugens. Here, we established two resistant strains that were selected from field populations in Vietnam and the Philippines, and conducted crossing experiments to determine the inheritance pattern.
The resistance ratio of 50% lethal dose (LD ) values for the two resistance-selected strains, i.e., resistant strains originating from Vietnam (VT-Res) and the Philippines (PH-Res), to their control strains were ∼ 8- and 157-fold, respectively. Reciprocal cross experiments between VT-Res and the susceptible strain (S-strain), and between PH-Res and the S-strain showed that the degree of dominance was 0.81 and 0.82, and 0.95 and 0.96, respectively. Analysis of the F populations and backcrosses to the parental strains indicated that resistance is a major-gene trait following Mendelian inheritance. The strength of the resistance was suppressed by pre-treatment with piperonyl butoxide, an inhibitor of cytochrome P450-monooxygenases.
Our results suggest that imidacloprid resistance in N. lugens is autosomal and an almost completely dominant major-gene trait that is likely manifested by high expression levels of a detoxification enzyme. © 2019 Society of Chemical Industry.
褐飞虱(Nilaparvata lugens (Stål))在东南亚和东亚地区对吡虫啉产生了很强的抗性。尽管抗性的遗传模式对于害虫防治非常有用,但在褐飞虱中,这种信息尚不清楚。在这里,我们从越南和菲律宾的田间种群中选择了两个抗性品系,并进行了杂交实验来确定遗传模式。
两个抗性选择品系,即来自越南(VT-Res)和菲律宾(PH-Res)的抗性品系,与对照品系相比,其 50%致死剂量(LD )值的抗性比分别约为 8 倍和 157 倍。VT-Res 与敏感品系(S 品系)和 PH-Res 与 S 品系之间的正反交实验表明,显性度分别为 0.81 和 0.82,以及 0.95 和 0.96。对 F 群体和回交到亲本品系的分析表明,抗性是一种遵循孟德尔遗传的主基因性状。用吡虫啉的抑制剂增效醚预处理可以抑制抗性的强度。
我们的结果表明,褐飞虱对吡虫啉的抗性是常染色体的,几乎是完全显性的主基因性状,可能是由解毒酶的高表达所表现出来的。© 2019 化学工业协会。