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Sea lamprey orient toward a source of a synthesized pheromone using odor-conditioned rheotaxis

机译:利用气味调节的流变作用,将海七rey鱼朝向合成信息素的来源

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摘要

Characterization of vertebrate chemo-orientation strategies over long distances is difficult because it is often not feasible to conduct highly controlled hypothesis-based experiments in natural environments. To overcome the challenge, we couple in-stream behavioral observations of female sea lampreys (Petromyzon marinus) orienting to plumes of a synthesized mating pheromone, 7α,12α,24-trihydroxy-5α-cholan-3-one-24-sulfate (3kPZS), and engineering algorithms to systematically test chemo-orientation hypotheses. In-stream field observations and simulated movements of female sea lampreys according to control algorithms support that odor-conditioned rheotaxis is a component of the mechanism used to track plumes of 3kPZS over hundreds of meters in flowing water. Simulated movements of female sea lampreys do not support that rheotaxis or klinotaxis alone is sufficient to enable the movement patterns displayed by females in locating 3kPZS sources in the experimental stream. Odor-conditioned rheotaxis may not only be effective at small spatial scales as previous described in crustaceans, but may also be effectively used by fishes over hundreds of meters. These results may prove useful for developing management strategies for the control of invasive species that exploit the odor-conditioned tracking behavior and for developing biologically inspired navigation strategies for robotic fish.
机译:远距离描述脊椎动物化学取向策略很困难,因为在自然环境中进行高度受控的基于假设的实验通常是不可行的。为了克服这一挑战,我们结合了雌性海七lamp鳗(Petromyzon marinus)在流中的行为观察结果,这些行为定向于合成交配信息素,7α,12α,24-三羟基-5α-胆碱-3-一-24硫酸盐(3kPZS)的羽流。 )和工程算法来系统地测试化学取向假设。根据控制算法在河中进行的实地观测和雌性海鳗的模拟运动表明,以气味调节的流变性是在流动水中数百米处追踪3kPZS羽流的机制的组成部分。雌性海鳗的运动模拟不能支持流变性或趋滑性足以使雌性在实验流中定位3kPZS源时显示出的运动模式。如前所述,在甲壳动物中,气味控制的流变不仅可能在较小的空间尺度上有效,而且可能会被数百米以上的鱼类有效利用。这些结果可能对开发用于控制利用气味条件下的跟踪行为的入侵物种的控制策略以及为机器人鱼开发生物启发的导航策略很有用。

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