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Lateral line diversity among ecologically divergent threespine stickleback populations

机译:生态多样性的三脊棘背背种群的侧生线多样性

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摘要

The lateral line is a mechanoreceptive sensory system that allows fish to sense objects and motion in their local environment. Variation in lateral line morphology may allow fish in different habitats to differentially sense and respond to salient cues. Threespine sticklebacks (Gasterosteus aculeatus) occupy a diverse range of aquatic habitats; we therefore hypothesized that populations within the G. aculeatus species complex might show variation in the morphology of the lateral line sensory system. We sampled 16 threespine stickleback populations from marine, stream and lake (including benthic and limnetic) habitats and examined the distribution, type and number of neuromasts on different regions of the body. We found that the threespine stickleback has a reduced lateral line canal system, completely lacking canal neuromasts. Although the arrangement of lines of superficial neuromasts on the body was largely the same in all populations, the number of neuromasts within these lines varied across individuals, populations and habitats. In pairwise comparisons between threespine sticklebacks adapted to divergent habitats, we found significant differences in neuromast number. Stream residents had more neuromasts than marine sticklebacks living downstream in the same watershed. In two independent lakes, benthic sticklebacks had more trunk neuromasts than sympatric limnetic sticklebacks, providing evidence for parallel evolution of the lateral line system. Our data provide the first demonstration that the lateral line sensory system can vary significantly between individuals and among populations within a single species, and suggest that this sensory system may experience different selection regimes in alternative habitats.
机译:侧线是一种机械感受性的感觉系统,可以使鱼在其周围环境中感知物体和运动。侧线形态的变化可能使不同栖息地的鱼类有不同的感觉并响应明显的提示。三脊棘背G(Gasterosteus aculeatus)占据了各种各样的水生生境。因此,我们假设在尖齿G. aculeatus物种复合体内的种群可能在侧线感觉系统的形态上显示出变化。我们从海洋,河流和湖泊(包括底栖和limnetic)生境中采样了16个三脊背棘背种群,并检查了人体不同部位神经瘤的分布,类型和数量。我们发现三脊椎棘刺背侧管系统减少,完全缺乏管神经质。尽管在所有人群中,身体上的浅层神经瘤的线排列基本相同,但这些线中神经节的数量因人,人群和栖息地而异。在适应于不同栖息地的三脊背棘背成对比较中,我们发现神经桅杆数量存在显着差异。与居住在同一流域下游的海洋棘背类动物相比,河流居民的神经质更多。在两个独立的湖泊中,底栖棘背动物的躯干神经质要比同伴的边缘棘背动物多,这为侧线系统的平行演化提供了证据。我们的数据首次证明了侧线感官系统在单个物种内的个体之间以及种群之间可能会发生显着变化,并表明该感官系统在替代生境中可能会经历不同的选择机制。

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