Gumm Jennifer M, Loew Ellis R, Mendelson Tamra C
Department of Biological Sciences, University of Maryland, Baltimore County, 1000 Hilltop Circle, Baltimore, MD 21250, USA.
Vision Res. 2012 Feb 15;55:19-23. doi: 10.1016/j.visres.2011.12.005. Epub 2012 Jan 8.
We examined variation in the visual system both within and among seven species of darters, colorful freshwater fishes of the genus Etheostoma. Using microspectrophotometry, we found that darters possess rod photoreceptor cells, single cone photoreceptor cells containing middle wavelength sensitive (MWS) visual pigments, and twin photoreceptor cells containing (LWS) visual pigments. No variation in peak sensitivity was detected among species or individuals in the rod class. In the MWS class, significant variation was detected among species and a strong statistical trend suggests differences among individuals. By contrast, all differences in the LWS class could be attributed to variation among individuals. Patterns of variation detected among species, among individuals, and among cone classes suggest that complex patterns of selection may be shaping the visual system of these fishes. Further, differences among individuals may have important consequences for visually based behaviors.
我们研究了七鳃镖鲈属(Etheostoma)七种色彩斑斓的淡水鱼——镖鲈的视觉系统在种内和种间的差异。通过显微分光光度法,我们发现镖鲈拥有视杆光感受器细胞、含有中波敏感(MWS)视觉色素的单锥光感受器细胞,以及含有长波敏感(LWS)视觉色素的双锥光感受器细胞。在视杆类中,未检测到物种间或个体间峰值敏感度的差异。在MWS类中,检测到物种间存在显著差异,并且一个强烈的统计趋势表明个体间也存在差异。相比之下,LWS类中的所有差异都可归因于个体间的差异。在物种间、个体间以及锥体细胞类之间检测到的变异模式表明,复杂的选择模式可能正在塑造这些鱼类的视觉系统。此外,个体间的差异可能会对基于视觉的行为产生重要影响。