Mao Xu-lian, Liu Jin, Li Xu-ke, Chi Jia-jia, Liu Yong-jie
Ying Yong Sheng Tai Xue Bao. 2016 Jan;27(1):255-62.
In order to investigate the resistance development law and biochemical resistance mechanism of Laodelphax striatellus to buprofezin, spraying rice seedlings was used to continuously screen resistant strains of L. striatellus and dipping rice seedlings was applied to determine the toxicity and cross-resistance of L. striatellus to insecticides. After 32-generation screening with buprofezin, L. striatellus developed 168.49 folds resistance and its reality heritability (h2) was 0.11. If the killing rate was 80%-90%, L. striatellus was expected to develop 10-fold resistance to buprofezin only after 5 to 6 generations breeding. Because the actual reality heritability of field populations was usually lower than that of the resistant strains, the production of field populations increasing with 10-fold resistance would need much longer time. The results of cross-resistance showed that resistant strain had high level cross-resistance with thiamethoxam and imidacloprid, low level cross-resistance with acetamiprid, and no cross-resistance with pymetrozine and chlorpyrifos. The activity of detoxification enzymes of different strains and the syergism of synergist were measured. The results showed that cytochrome P450 monooxygenase played a major role in the resistance of L. striatellus to buprofezin, the esterase played a minor role and the GSH-S-transferase had no effect. Therefore, L. striatellus would have high risk to develop resistance to buprofezin when used in the field and might be delayed by using pymetrozine and chlorpyrifos.
为了探究灰飞虱对噻嗪酮的抗性发展规律及生化抗性机制,采用喷雾法对水稻秧苗进行连续筛选以获得灰飞虱抗性品系,并用浸苗法测定灰飞虱对杀虫剂的毒力及交互抗性。经噻嗪酮32代筛选后,灰飞虱产生了168.49倍的抗性,其现实遗传力(h2)为0.11。若致死率为80%-90%,预计灰飞虱仅经过5至6代繁殖就会对噻嗪酮产生10倍的抗性。由于田间种群的实际现实遗传力通常低于抗性品系,田间种群产生10倍抗性增长所需的时间会更长。交互抗性结果表明,抗性品系对噻虫嗪和吡虫啉具有高水平交互抗性,对啶虫脒具有低水平交互抗性,对吡蚜酮和毒死蜱无交互抗性。测定了不同品系解毒酶的活性及增效剂的增效作用。结果表明,细胞色素P450单加氧酶在灰飞虱对噻嗪酮的抗性中起主要作用,酯酶起次要作用,谷胱甘肽-S-转移酶无作用。因此,灰飞虱在田间使用时对噻嗪酮产生抗性的风险较高,使用吡蚜酮和毒死蜱可能会延缓抗性产生。