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热带致倦库蚊野外种群对微生物防治剂球形芽孢杆菌的抗性产生及抗性治理

Emergence of resistance and resistance management in field populations of tropical Culex quinquefasciatus to the microbial control agent Bacillus sphaericus.

作者信息

Mulla Mir S, Thavara Usavadee, Tawatsin Apiwat, Chomposri Jakkrawarn, Su Tianyun

机构信息

Department of Entomology, University of California, Riverside, CA 92521, USA.

出版信息

J Am Mosq Control Assoc. 2003 Mar;19(1):39-46.

Abstract

In recent years, highly potent mosquitocidal strains of the microbial agent Bacillus sphaericus (Bsph) have been isolated and developed for the control of mosquito larvae around the world. Laboratory selection experiments with the most active strains and their use in large-scale operational mosquito control programs resulted in the emergence of resistance in larvae of the Culex pipiens complex. This generated great concern among vector control agencies around the world, who feared reduced efficacy of this highly active larvicidal agent. To address this issue, the current studies were started to find practical strategies for controlling resistant mosquitoes and more importantly to develop resistance management strategies that would prevent or delay development of resistance. We initiated field studies in 3 low-income communities in Nonthaburi Province, Thailand. In 1 of the communities, larvae of Culex quinquefasciatus that were highly resistant (>125,000-fold) to Bsph strain 2362 were successfully controlled with applications of Bacillus thuringiensis var. israelensis (Bti) alone or in combination with Bsph. To prevent or delay resistance to Bsph, 2 other sites were selected, 1 treated with Bsph 2362 alone and the other treated with a mixture of Bsph 2362 and Bti. Mosquitoes treated with Bsph 2362 alone showed some resistance by the 9th treatment and almost complete failure of control occurred by the 17th treatment. After 9 treatments with the mixture over a 9-month period at another site, no noticeable change in susceptibility to Bsph was detected. During this period, the site treated with Bsph alone required 19 treatments, whereas the site treated with mixtures took only 9 treatments because of slower resurgence of larvae at the site treated with the mixture than at the site treated with Bsph alone. This is the 1st field evidence for delay or prevention of resistance to microbial agents in larval Cx. quinquefasciatus by using mixtures of Bti and Bsph. Further studies on the use of mixtures for the management of field resistance are warranted.

摘要

近年来,微生物制剂球形芽孢杆菌(Bsph)的高效杀蚊菌株已被分离出来,并在全球范围内用于控制蚊虫幼虫。对最活跃菌株进行的实验室选育实验以及它们在大规模蚊虫控制操作项目中的应用,导致致倦库蚊复合体幼虫产生了抗性。这引起了全球病媒控制机构的极大关注,他们担心这种高效杀幼虫剂的效力会降低。为解决这一问题,启动了当前的研究,以寻找控制抗性蚊子的实用策略,更重要的是制定能够预防或延缓抗性发展的抗性管理策略。我们在泰国暖武里府的3个低收入社区开展了实地研究。在其中1个社区,对Bsph菌株2362具有高抗性(>125,000倍)的致倦库蚊幼虫,通过单独施用苏云金芽孢杆菌以色列变种(Bti)或与Bsph联合施用成功得到了控制。为预防或延缓对Bsph的抗性,选择了另外2个地点,1个仅用Bsph 2362处理,另1个用Bsph 2362和Bti的混合物处理。仅用Bsph 2362处理的蚊子在第9次处理时显示出一定抗性,到第17次处理时几乎完全失去控制效果。在另一个地点,用混合物处理9个月共9次后,未检测到对Bsph的易感性有明显变化。在此期间,仅用Bsph处理的地点需要19次处理,而用混合物处理的地点仅需9次处理,因为用混合物处理的地点幼虫复苏速度比仅用Bsph处理的地点慢。这是关于通过使用Bti和Bsph混合物延缓或预防致倦库蚊幼虫对微生物制剂产生抗性的首个实地证据。有必要对混合物在田间抗性管理中的应用进行进一步研究。

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