Roberts D
Biology Department,Sultan Qaboos University,Oman.
Bull Entomol Res. 2017 Aug;107(4):499-505. doi: 10.1017/S0007485316001140. Epub 2017 Jan 9.
Mosquito larvae have been shown to respond to water-borne kairomones from nearby predators by reducing their activity, and thus visibility. If they can identify the predator, they can then alter their response depending upon the associated predation risk. No studies have shown that mosquito larva may also detect water-borne vibrations from the predator. Final instar larvae of three mosquitoes: Culiseta longiareolata, Culex perexiguus and C. quinquefasciatus, were exposed to recorded vibrations from feeding dragonfly nymphs, to dragonfly kairomones and the combined effect of both. Predator vibrations caused C. longiareolata to significantly reduce bottom feeding and instead increased the more passive surface filter feeding. The larvae also significantly increased escape swimming activity. These behavioural changes were not significantly different from the effect of dragonfly kairomones, and there was no synergistic or additional effect of the two. C. perexiguus gave a smaller (but still significant) response to both dragonfly vibrations and to kairomones, probably due to a different feeding behaviour: when lying on the bottom, it was an inactive filter feeder. C. quinquefasciatus did not respond to either vibrations or kairomones and during these experiments was entirely an inactive surface filter feeder. Both C. longiareolata and C. perexiguus were thus able to detect and identify vibrations from feeding dragonfly nymphs as an anti-predator strategy. The lack of response in C. quinquefasciatus is probably a result of living in water that is highly polluted with organic material, where few predators can survive.
研究表明,蚊子幼虫会对来自附近捕食者的水溶性信息素做出反应,减少活动,从而降低可见度。如果它们能识别捕食者,就可以根据相关的捕食风险改变反应。尚无研究表明蚊子幼虫也能检测到捕食者产生的水体振动。对三种蚊子的末龄幼虫:长角库蚊、微小库蚊和致倦库蚊,分别施加取食期豆娘若虫的记录振动、豆娘信息素以及两者的联合作用。捕食者的振动使长角库蚊显著减少在水底取食,转而增加更为被动的水面滤食。幼虫的逃避游泳活动也显著增加。这些行为变化与豆娘信息素的影响没有显著差异,且两者没有协同或额外作用。微小库蚊对豆娘振动和信息素的反应较小(但仍显著),可能是由于其取食行为不同:当趴在水底时,它是不活跃的滤食者。致倦库蚊对振动和信息素均无反应,在这些实验中它完全是不活跃的水面滤食者。因此,长角库蚊和微小库蚊都能够检测并识别取食期豆娘若虫的振动,将其作为一种反捕食策略。致倦库蚊没有反应可能是因为生活在有机物质高度污染的水体中,那里很少有捕食者能够存活。