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甜菜夜蛾对虫酰肼的抗性遗传、适合度代价及抗性机制(鳞翅目:夜蛾科)

Inheritance, fitness cost and mechanism of resistance to tebufenozide in Spodoptera exigua (Hübner) (Lepidoptera: Noctuidae).

作者信息

Jia Biantao, Liu Yongjie, Zhu Yu Cheng, Liu Xugan, Gao Congfen, Shen Jinliang

机构信息

College of Agriculture, Shanxi Agricultural University, Taigu, Shanxi 030601, China.

出版信息

Pest Manag Sci. 2009 Sep;65(9):996-1002. doi: 10.1002/ps.1785.

Abstract

BACKGROUND

Tebufenozide has been used as a key insecticide for controlling beet armyworm, Spodoptera exigua (Hübner). To evaluate the risk of resistance evolution and to develop a better resistance management strategy, a field-collected population was selected with tebufenozide in the laboratory. Thereafter, the inheritance and fitness cost of tebufenozide resistance in S. exigua were investigated.

RESULTS

After being selected with tebufenozide for 61 generations, S. exigua developed a 92-fold resistance to the chemical. The degrees of dominance for the reciprocal cross progeny were - 0.2698 and - 0.2785. The resistant strain had a relative fitness of 0.71, with substantially lower rates of larval survival, pupal weight, pupation and oviposition per female, and prolonged larval and pupal duration. PBO significantly increased the toxicity of tebufenozide (SR = 2) against resistant insects, and DEM and DEF also showed synergism with tebufenozide.

CONCLUSION

Tebufenozide resistance in S. exigua was inherited as autosomal, incompletely recessive and controlled by more than one gene. Development of the resistance may cost significant fitness for the resistant population. Mixed-function oxidases might play an important role in tebufenozide resistance in S. exigua. This study provided valuable information for further understanding tebufenozide resistance and for facilitating the development of resistance management strategies.

摘要

背景

虫酰肼一直被用作防治甜菜夜蛾(Spodoptera exigua (Hübner))的关键杀虫剂。为评估抗性进化风险并制定更好的抗性治理策略,在实验室中用虫酰肼对田间采集的种群进行了筛选。此后,对甜菜夜蛾中虫酰肼抗性的遗传特性和适合度代价进行了研究。

结果

用虫酰肼筛选61代后,甜菜夜蛾对该药剂产生了92倍的抗性。正反交后代的显性度分别为-0.2698和-0.2785。抗性品系的相对适合度为0.71,幼虫存活率、蛹重、化蛹率、单雌产卵量均显著降低,幼虫期和蛹期延长。PBO显著提高了虫酰肼对抗性昆虫的毒性(增效比=2),DEM和DEF与虫酰肼也表现出增效作用。

结论

甜菜夜蛾对虫酰肼的抗性为常染色体遗传,不完全隐性,且受多个基因控制。抗性的产生可能使抗性种群付出显著的适合度代价。多功能氧化酶可能在甜菜夜蛾对虫酰肼的抗性中起重要作用。本研究为进一步了解虫酰肼抗性及推动抗性治理策略的制定提供了有价值的信息。

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