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本文引用的文献

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Variability in sensory ecology: expanding the bridge between physiology and evolutionary biology.感官生态学的变异性:拓展生理学与进化生物学之间的桥梁
Q Rev Biol. 2009 Mar;84(1):51-74. doi: 10.1086/596463.
2
Development of diverse lateral line patterns on the teleost caudal fin.硬骨鱼尾鳍上多样侧线模式的发育。
Dev Dyn. 2008 Oct;237(10):2889-902. doi: 10.1002/dvdy.21710.
3
Natural selection on a major armor gene in threespine stickleback.三刺鱼主要盔甲基因上的自然选择
Science. 2008 Oct 10;322(5899):255-7. doi: 10.1126/science.1159978. Epub 2008 Aug 28.
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Reverse evolution of armor plates in the threespine stickleback.三刺鱼盔甲板的逆向进化
Curr Biol. 2008 May 20;18(10):769-774. doi: 10.1016/j.cub.2008.04.027.
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Organization of the superficial neuromast system in goldfish, Carassius auratus.金鱼(Carassius auratus)体表神经丘系统的组织
J Morphol. 2008 Jun;269(6):751-61. doi: 10.1002/jmor.10621.
6
Sensory tuning of lateral line receptors in antarctic fish to the movements of planktonic prey.南极鱼类侧线感受器对浮游猎物运动的感觉调节。
Science. 1987 Jan 9;235(4785):195-6. doi: 10.1126/science.235.4785.195.
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Emergence of novel color vision in mice engineered to express a human cone photopigment.通过基因工程改造以表达人类视锥色素的小鼠中新型色觉的出现。
Science. 2007 Mar 23;315(5819):1723-5. doi: 10.1126/science.1138838.
8
Choosy males from the underground: male mating preferences in surface- and cave-dwelling Atlantic mollies (Poecilia mexicana).来自地下的挑剔雄性:地表和洞穴栖息的大西洋帆鳉(墨西哥食蚊鱼)的雄性交配偏好
Naturwissenschaften. 2006 Mar;93(3):103-9. doi: 10.1007/s00114-005-0072-z. Epub 2006 Feb 14.
9
The functioning and significance of the lateral-line organs.侧线器官的功能与意义。
Biol Rev Camb Philos Soc. 1963 Feb;38:51-105. doi: 10.1111/j.1469-185x.1963.tb00654.x.
10
Neomycin-induced hair cell death and rapid regeneration in the lateral line of zebrafish (Danio rerio).新霉素诱导斑马鱼(Danio rerio)侧线毛细胞死亡及快速再生
J Assoc Res Otolaryngol. 2003 Jun;4(2):219-34. doi: 10.1007/s10162-002-3022-x.

生态差异显著的三刺鱼种群的侧线多样性。

Lateral line diversity among ecologically divergent threespine stickleback populations.

机构信息

Division of Human Biology, Fred Hutchinson Cancer Research Center, 1100 Fairview Ave N, Seattle WA 98109-1024, USA.

出版信息

J Exp Biol. 2010 Jan 1;213(1):108-17. doi: 10.1242/jeb.031625.

DOI:10.1242/jeb.031625
PMID:20008367
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2792588/
Abstract

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.

摘要

侧线是一种机械感受器感觉系统,使鱼类能够感知其局部环境中的物体和运动。侧线形态的变化可能使不同栖息地的鱼类能够不同地感知和响应显著线索。三刺鱼(Gasterosteus aculeatus)占据了广泛的水生栖息地;因此,我们假设在 G. aculeatus 物种复合体中的种群可能在侧线感觉系统的形态上表现出变异。我们从海洋、溪流和湖泊(包括底栖和浮游生物)栖息地采样了 16 个三刺鱼种群,并检查了身体不同区域的神经节的分布、类型和数量。我们发现三刺鱼具有简化的侧线管道系统,完全缺乏管道神经节。尽管身体表面神经节线的排列在所有种群中基本相同,但这些线内的神经节数量在个体、种群和栖息地之间存在差异。在适应不同栖息地的三刺鱼之间的成对比较中,我们发现神经节数量存在显著差异。溪流居民比在同一流域下游生活的海洋三刺鱼具有更多的神经节。在两个独立的湖泊中,底栖三刺鱼比同域的浮游三刺鱼具有更多的躯干神经节,为侧线系统的平行进化提供了证据。我们的数据首次证明,侧线感觉系统在个体之间和同一物种的种群之间可以显著变化,并表明该感觉系统在替代栖息地中可能经历不同的选择制度。