Vector-Borne Disease Section, Division of Communicable Disease Control, Center for Infectious Diseases, California Department of Public Health, 2151 Convention Center Way, Suite 218B, Ontario, CA 91764, USA.
J Med Entomol. 2012 Mar;49(2):343-9. doi: 10.1603/me11187.
Culex quinquefasciatus Say mosquitoes flourish in belowground stormwater systems in the southern United States. Recent evidence suggests that oviposition-site-seeking females may have difficulties locating, entering, and ovipositing inside permanent water chambers when surface entry through pickholes in manhole covers are sealed. It remains unknown, however, if newly emerged adults are able to detect cues necessary to exit these partly sealed systems via lateral conveyance pipes or if they perish belowground. Fourth instar Cx. quinquefasciatus were placed within proprietary belowground stormwater treatment systems to determine the percentage of newly emerged adults able to escape treatment chambers via a single lateral conveyance pipe. Overall, 56% of deployed mosquitoes were captured in adult exit traps with an 1:1 male:female ratio. The percentage of adults captured varied significantly among chambers, but was not associated with structural site characteristics such as the chamber depth or the length and course of conveyance pipe to the exit trap. Empirical observations suggested that longbodied cellar spiders, Pholcus phalangioides (Fuesslin), ubiquitous in these structures, may have reduced adult trap capture. Findings demonstrate that newly emerged Cx. quinquefasciatus can exit subterranean chambers under potentially difficult structural conditions but suggest that a portion may perish in the absence of surface exit points in manhole shafts.
地下雨水系统中的致倦库蚊大量滋生。最近的证据表明,当检查井井盖表面的进水口被堵塞时,寻找产卵场所的雌蚊可能难以找到、进入和在永久性水室内产卵。然而,目前尚不清楚刚羽化的成虫是否能够检测到通过侧向输送管离开这些部分密封系统的必要线索,或者它们是否在地下死亡。将第四龄期致倦库蚊置于专有的地下雨水处理系统中,以确定有多少新羽化的成虫能够通过单个侧向输送管逃离处理室。总体而言,有 56%的部署蚊子被成虫出口陷阱捕获,雌雄比例为 1:1。成虫的捕获率在各个腔室之间差异显著,但与腔室的结构特征(如腔室深度或输送管到出口陷阱的长度和路径)无关。实证观察表明,在这些结构中普遍存在的长腿地窖蜘蛛(Pholcus phalangioides)可能会降低成虫的捕获率。研究结果表明,新羽化的致倦库蚊可以在潜在困难的结构条件下离开地下腔室,但也表明,如果检查井井筒中没有表面出口,一部分可能会死亡。