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Isotocin increases female avoidance of males in a coercive mating system: Assessing the social salience hypothesis of oxytocin in a fish species

机译:等霉素在胁迫交配系统中增加了女性的避免女性:评估鱼类中催产素的社会显着假设

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摘要

The nonapeptide oxytocin (and its fish homolog isotocin (IT)) is an evolutionarily-conserved hormone associated with social behaviors across most vertebrate taxa. Oxytocin has traditionally been regarded as a prosocial hormone, but studies on social cognition in mammalian models suggest it may play a more nuanced role in modulating social discrimination based on social salience and stimulus valence. Here we test IT and its role in regulating female social decision-making and anxiety behaviors in a live-bearing fish with a male coercive mating system. Gambusia affinis males engage in a forced mating strategy, with frequent harassment and attempted copulatory thrusts directed towards unwilling females. Exogenous IT produced anxiolytic responses in female G. affinis that altered exploration (time in center of tank) but not time in dark vs. light regions of the tank. Exogenous IT also produced context-specific changes in social tendency: IT-treated G. affinis females spent less time associating with males while association time with conspecific females was not altered. Further, while overall activity levels were not changed by IT treatment, the amount of social behaviors IT-treated females directed towards males, but not females, was reduced. Our results support the social salience hypothesis of oxytocin action in a teleost and suggest that oxytocin's critical input into social cognitive processing is conserved across vertebrate taxa.
机译:非肽催产素(及其鱼类同源物同胞(IT))是与大多数脊椎动物的社会行为相关的进化缓冲激素。催产素传统上被认为是一种女性激素,但哺乳动物模型中的社会认知研究表明,在基于社会蓬勃和刺激效果的社会歧视中调制社会歧视可能发挥更细致的作用。在这里,我们测试它及其在用雄性矫顽交配系统调节活性鱼中的女性社会决策和焦虑行为的作用。甘伐菊属植物的男性从事强制交配策略,经常骚扰和企图指向不愿不情愿的女性的分组推力。外源性它在雌性G. Affinis中产生抗焦虑反应,其改变勘探(坦克中心的时间),但不是在坦克的暗区中的时间。外源性它还产生了社会倾向的背景特异性变化:IT治疗的G. Affinis女性花费较少的时间与男性相关时,同时没有改变与特异性女性的关联时间。此外,虽然IT治疗没有改变整体活动水平,但减少了针对男性的妇女的社会行为量,但不是女性的。我们的结果支持极端催产素作用的社会显着假设,并表明催产素对社会认知处理的关键投入受到脊椎动物分类群。

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