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表皮烃在蜜蜂气管螨(Acarapis woodi (Rennie))中的宿主选择中的介导作用。

Mediation of host selection by cuticular hydrocarbons in the honeybee tracheal MiteAcarapis woodi (Rennie).

机构信息

Ohio Agricultural Research & Development Center, The Ohio State University Department of Entomology, 44691, Wooster, Ohio.

出版信息

J Chem Ecol. 1991 Feb;17(2):463-73. doi: 10.1007/BF00994345.

Abstract

Using a simple two-choice bioassay and video analysis of individual locomotory tracks, it was determined that a preference for young-bee hosts over old-bee hosts in female honeybee tracheal mites,Acarapis woodi (Rennie), is chemically mediated. When presented with a choice of cuticular extracts from 5-day-old and <1-day-old adult bees, mites showed a significant preference for the young-bee extract in three of four bee colony sources. This discrimination was due apparently to a greater positive response elicited by the young-bee extract rather than a deterrent effect of old-bee extract, as the extract of old bees evoked a significantly higher response than a hexane control. A bioassay of silica-gel fractions of young-bee extract indicated that cuticular hydrocarbons alone were responsible for tracheal mite response. Further fractionation of a hydrocarbon fraction by argentation chromatography demonstrated that both saturated and unsaturated hydrocarbons were involved in the mite response, but when presented in opposition, mites showed a stronger response to the saturated than to the unsaturated components. Mites placed in zones treated with cuticular extract of young bees exhibited higher angular velocities than those placed on hexane, causing them to remain in the extract-treated zones for extended periods. These results point to a possible control strategy whereby migration of tracheal mites to young-bee hosts could be disrupted by artificially altering the chemical profile of the honeybee cuticle.

摘要

利用简单的二选一生物测定法和个体运动轨迹的视频分析,确定了雌性蜜蜂气管螨(Acarapis woodi(Rennie))对年轻蜜蜂宿主的偏好是通过化学媒介介导的。当面对来自 5 天大和<1 天大的成年蜜蜂的表皮提取物的选择时,螨虫在四个蜜蜂群体来源中的三个中明显表现出对年轻蜜蜂提取物的偏好。这种辨别显然是由于年轻蜜蜂提取物引起的更大的积极反应,而不是老蜜蜂提取物的抑制作用,因为老蜜蜂的提取物比己烷对照物引起的反应明显更高。年轻蜜蜂提取物的硅胶凝胶馏分的生物测定表明,只有表皮烃单独负责气管螨的反应。进一步通过银离子层析对烃馏分进行分级分离表明,饱和烃和不饱和烃都参与了螨虫的反应,但当它们呈相反状态时,螨虫对饱和烃的反应比对不饱和烃的反应更强。与放在己烷上的螨虫相比,放在涂有年轻蜜蜂表皮提取物的区域中的螨虫的角速度更高,导致它们在提取物处理区域中停留更长时间。这些结果表明,可能存在一种控制策略,即通过人为改变蜜蜂表皮的化学特征来破坏气管螨向年轻蜜蜂宿主的迁移。

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