首页> 外文期刊>Behavioral Ecology and Sociobiology >Close-range acoustic signaling and mate choice in Hawaiian crickets (Gryllidae: Laupala).
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Close-range acoustic signaling and mate choice in Hawaiian crickets (Gryllidae: Laupala).

机译:夏威夷(Gryllidae:Laupala)的近距离声信号和配偶选择。

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Evolution of the mate recognition system (MRS) can play a central role in animal speciation. One dramatic consequence of changes in the MRS is the failure of individuals from divergent lineages to successfully court and mate, thereby reducing gene flow between these groups. Here, we test the role of an acoustic mating signal on mate choice in a Hawaiian cricket genus (Gryllidae: Laupala). Speciation in Laupala is proceeding at an extremely rapid rate, apparently driven by divergence in aspects of the mate recognition system, most conspicuously the pulse rate of male calling song. Previous studies demonstrate that females prefer the pulse rate of a conspecific male's song when perceived at long range, in laboratory phonotaxis trials. In this study, we examined mate choice in two species that differ dramatically in pulse rate: Laupala paranigra and Laupala kohalensis. We tested the female's preference in both species for pulse rates at close range, by providing females an opportunity to mate with hybrid males producing a range of intermediate pulse rates. Results of our study demonstrate that while strong behavioral barriers exist between these two species, variation in the pulse rate of male calling song did not predict female mate choice at close range. These results suggest a more complex architecture to mate recognition in Laupala than previously hypothesized..
机译:配偶识别系统(MRS)的进化可以在动物物种形成中发挥重要作用。 MRS发生变化的一个戏剧性后果是,个体从不同的宗族失败,无法成功求婚和交配,从而减少了这些群体之间的基因流动。在这里,我们测试了一种声音交配信号在夏威夷属(Gryllidae:Laupala)中在选择配偶上的作用。 Laupala的物种形成速度非常快,这显然是由伴侣识别系统各方面的差异所驱动,最明显的是雄性主打歌的脉搏速率。先前的研究表明,在实验室声光性试验中,当从远处感知时,女性更喜欢同种男性歌曲的脉搏频率。在这项研究中,我们研究了脉搏速率显着不同的两种物种的择偶:Laupala paranigra和Laupala kohalensis。我们通过为雌性提供与杂种雄性交配的机会,以产生一定范围的中间脉动率,测试了这两种物种中雌性对近距离脉动的偏好。我们的研究结果表明,尽管这两个物种之间存在强烈的行为障碍,但雄性主叫脉冲频率的变化并不能预测近距离内雌性的选择。这些结果表明,在Laupala中匹配识别的架构要比以前的假设更为复杂。

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