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球孢白僵菌与干燥剂粉尘联合作用防治鸡皮刺螨(Dermanyssus gallinae)。

Synergistic interaction between the fungus Beauveria bassiana and desiccant dusts applied against poultry red mites (Dermanyssus gallinae).

机构信息

Department for Agroecology, Aarhus University, Forsøgsvej 1, 4200, Slagelse, Denmark,

出版信息

Exp Appl Acarol. 2014 Apr;62(4):511-24. doi: 10.1007/s10493-013-9757-8. Epub 2013 Nov 20.

Abstract

The poultry red mite, Dermanyssus gallinae, is a major pest in egg production, feeding on laying hens. Widely used non-chemical control methods include desiccant dusts, although their persistence under field conditions is often short. Entomopathogenic fungi may also hold potential for mite control, but these fungi often take several days to kill mites. Laboratory experiments were carried out to study the efficacy of 3 types of desiccant dusts, the fungus Beauveria bassiana and combinations of the two control agents against D. gallinae. There was significant synergistic interaction between each of the desiccant dusts and the fungus, with observed levels of mite mortality significantly higher than those expected for an additive effect (up to 38 % higher). Synergistic interaction between desiccant dust and fungus was found also when different application methods were used for the fungus and at different levels of relative humidity. Although increased levels of mortality were reached due to the synergistic interaction, the speed of lethal action was not influenced by combining the two components. The persistence of the control agents applied separately or in combination did not change over a period of 4 weeks. Overall, combinations of desiccant dusts and fungus conidia seem to hold considerable promise for future non-chemical control of poultry red mites.

摘要

鸡皮刺螨(Dermanyssus gallinae)是蛋鸡生产中的一种主要害虫,以产蛋鸡为食。广泛使用的非化学控制方法包括干燥剂粉尘,尽管它们在田间条件下的持久性往往很短。昆虫病原真菌也可能具有控制螨虫的潜力,但这些真菌通常需要几天时间才能杀死螨虫。实验室实验研究了 3 种干燥剂粉尘、真菌球孢白僵菌(Beauveria bassiana)以及两者结合控制剂对鸡皮刺螨的功效。每种干燥剂粉尘与真菌之间都存在显著的协同相互作用,观察到的螨虫死亡率明显高于预期的加性效应(高达 38%)。当以不同的应用方法应用真菌,并在不同的相对湿度水平下,也发现了干燥剂粉尘和真菌之间的协同相互作用。虽然由于协同相互作用达到了更高的死亡率水平,但两种成分的组合并没有影响致死作用的速度。单独或组合使用控制剂的持久性在 4 周的时间内没有变化。总的来说,干燥剂粉尘和真菌分生孢子的组合似乎为未来非化学控制鸡皮刺螨提供了很大的希望。

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