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风洞研究黑森瘿蚊(双翅目:瘿蚊科)性信息素介导的行为。

Wind tunnel studies of sex pheromone-mediated behavior of the Hessian fly (Diptera: Cecidomyiidae).

机构信息

Department of Entomology, Kansas State University, 66506, Manhattan, Kansas, USA.

出版信息

J Chem Ecol. 1991 Dec;17(12):2421-35. doi: 10.1007/BF00994591.

Abstract

In a wind-tunnel, male Hessian flies flying toward a source of the female-produced sex pheromone exhibited flight maneuvers very similar to those described for male moths. Upwind flight, consisting of zigzagging and straight flight upwind, was initiated within seconds after flies were placed in the odor plume. This upwind flight was sometimes interrupted by casting, which consisted of wide excursions in the horizontal plane ranging 10-35 cm across the central zone of the tunnel. Comparison of the flight maneuvers of males exposed to ten female equivalents of a hexane extract of female ovipositors and males exposed to 20 ng of (2S)-(E)10-tridecen-2-yl acetate (SE10-13:OAc), which has been identified as a component of the Hessian fly sex pheromone, indicated that the sex pheromone probably contains additional components. However, SE10-13: OAc elicited upwind flight and source location by a significant number of males, even at dosages as low as 2 ng on filter paper. At the highest dosage of SE10-13:OAc tested (200 ng on filter paper), there was a significant decrease in net flight velocity and a slight, but not significant, reduction in the number of males contacting the odor source. The addition of increasing amounts of the R enantiomer to the S enantiomer resulted in increased inhibition of upwind flight and source contact by males.

摘要

在风洞中,雄性黑森蝇飞向雌性产生的性信息素源时,表现出的飞行动作与雄蛾所描述的非常相似。在将苍蝇放入气味羽流后的几秒钟内,就会开始顺风飞行,包括锯齿状和直线顺风飞行。这种顺风飞行有时会被投掷打断,投掷是指在水平面上进行的大范围横越,范围在 10-35 厘米之间,跨越隧道的中心区域。将暴露于 10 个雌性产卵器正己烷提取物当量的雄性与暴露于 20 纳克(2S)-(E)-10-十三碳烯-2-基乙酸酯(SE10-13:OAc)的雄性进行的飞行动作比较表明,性信息素可能含有其他成分。然而,SE10-13:OAc 甚至在滤纸剂量低至 2 纳克时,也能引起相当数量的雄性顺风飞行和定位源。在测试的 SE10-13:OAc 最高剂量(滤纸 200 纳克)时,净飞行速度显著降低,接触气味源的雄性数量略有但无统计学意义的减少。向 S 对映体中添加越来越多的 R 对映体,会导致雄性顺风飞行和定位源的接触受到更大的抑制。

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