Chung-Davidson Yu-Wen, Bryan Mara B, Teeter John, Bedore Christine N, Li Weiming
Department of Fisheries and Wildlife, Michigan State University, East Lansing, MI 48824, USA.
Horm Behav. 2008 Jun;54(1):34-40. doi: 10.1016/j.yhbeh.2008.01.004. Epub 2008 Feb 4.
We characterized the behavioral and neuroendocrine responses of adult sea lampreys (Petromyzon marinus) to weak electric fields. Adult sea lampreys, captured during upstream spawning migration, exhibited limited active behaviors during exposure to weak electric fields and spent the most time attached to the wall of the testing arena near the cathode (-). For adult male sea lampreys, exposure to weak electric fields resulted in increased lamprey (l) GnRH-I mRNA expression but decreased lGnRH-I immunoreactivities in the forebrain, and decreased Jun (a neuronal activation marker) mRNA levels in the brain stem. Similar effects were not observed in the brains of female sea lampreys after weak electric field stimulation. The influence of electroreception on forebrain lGnRH suggests that electroreception may modulate the reproductive systems in adult male sea lampreys. The changes in Jun expression may be associated with swimming inhibition during weak electric field stimulation. The results for adult sea lampreys are the opposite of those obtained using parasitic-stage sea lampreys, which displayed increased activity during and after cathodal stimulation. Our results demonstrate that adult sea lampreys are sensitive to weak electric fields, which may play a role in reproduction. They also suggest that electrical stimuli mediate different behaviors in feeding-stage and spawning-stage sea lampreys.
我们对成年海七鳃鳗(海七鳃鳗)对弱电场的行为和神经内分泌反应进行了表征。在溯河产卵洄游期间捕获的成年海七鳃鳗,在暴露于弱电场时表现出有限的主动行为,并且大部分时间附着在测试区域靠近阴极(-)的壁上。对于成年雄性海七鳃鳗,暴露于弱电场会导致七鳃鳗(l)GnRH-I mRNA表达增加,但前脑中lGnRH-I免疫反应性降低,并且脑干中Jun(一种神经元激活标记物)mRNA水平降低。在弱电场刺激后,雌性海七鳃鳗的大脑中未观察到类似的影响。电感受对前脑lGnRH的影响表明,电感受可能调节成年雄性海七鳃鳗的生殖系统。Jun表达的变化可能与弱电场刺激期间的游泳抑制有关。成年海七鳃鳗的结果与使用寄生阶段海七鳃鳗获得的结果相反,寄生阶段海七鳃鳗在阴极刺激期间和之后表现出活动增加。我们的结果表明,成年海七鳃鳗对弱电场敏感,这可能在繁殖中起作用。它们还表明,电刺激在摄食阶段和产卵阶段的海七鳃鳗中介导不同的行为。