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用餐还是逃跑?通过改变嗅觉通路编码的信号结构,紊流抑制了蓝蟹在有吸引力-厌恶气味羽流中的导航。

Dine or dash? Turbulence inhibits blue crab navigation in attractive-aversive odor plumes by altering signal structure encoded by the olfactory pathway.

机构信息

School of Biology, Georgia Institute of Technology, Atlanta, GA 30332-0230, USA.

出版信息

J Exp Biol. 2012 Dec 1;215(Pt 23):4175-82. doi: 10.1242/jeb.077255.

Abstract

Blue crabs can distinguish and navigate to attractive (food) odors even when aversive odors (injured crab metabolites) are released nearby. Blue crabs in these conditions detect the aversive odor and avoid it, but find the attractive source with nearly the same success rate as when the attractive source is presented alone. Spatially and temporally distinct odor filaments appear to signal to foragers that the two odor sources are not co-located, and hence navigating to the attractive odor entails an acceptable risk of predation. However, environmentally produced turbulence suppresses tracking by homogenizing the two odors; blue crabs fail to track to the attractive source when the aversive source is present, even though turbulence does not substantially inhibit tracking to the attractive source alone. Removal of sensory input from aesthetascs on the antennules, but not chemosensors on the legs, rescues navigation to attractive-aversive dual plumes in turbulent conditions. These results suggest that mixing in the natural environment may amplify the effects of predators by suppressing tracking to food odors when aversive cues are present, and that the olfactory pathway mediates the response.

摘要

蓝蟹甚至可以在有厌恶气味(受伤蟹代谢物)释放的情况下区分和导航到有吸引力的(食物)气味。在这些情况下,蓝蟹会检测到厌恶气味并避开它,但找到有吸引力的气味源的成功率几乎与单独呈现有吸引力的气味源时相同。空间和时间上不同的气味线似乎向觅食者发出信号,表明两个气味源不在同一位置,因此导航到有吸引力的气味源需要承担可接受的捕食风险。然而,环境产生的湍流通过使两种气味均匀化来抑制跟踪;当有厌恶的气味源存在时,蓝蟹无法跟踪到有吸引力的气味源,即使湍流不会显著抑制对有吸引力的气味源的单独跟踪。切除触角上的感觉毛(aesthetascs)而不是腿上的化学感受器,可以在湍流条件下挽救对有吸引力-厌恶双重羽流的导航。这些结果表明,在自然环境中混合可能会通过在有厌恶线索存在时抑制对食物气味的跟踪来放大捕食者的影响,而嗅觉通路介导了这种反应。

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