Department of Biology, University of Maryland, College Park, MD 20742, USA.
Mol Ecol. 2010 May;19(10):2064-74. doi: 10.1111/j.1365-294X.2010.04621.x. Epub 2010 Mar 30.
Sensory systems play crucial roles in survival and reproduction. Therefore, sensory plasticity has important evolutionary implications. In this study, we examined retinal plasticity in five species of cichlid fish from Lake Malawi. We compared the cone opsin expression profiles of wild-caught fish to lab-reared F(1) that had been raised in a UV minus, reduced intensity light environment. All of the opsin genes that were expressed in wild-caught fish were also expressed in lab-reared individuals. However, we found statistically significant differences in relative opsin expression among all five species. The most consistent difference was in the SWS2B (violet) opsin, which was always expressed at higher levels in lab-reared individuals. Estimates of visual pigment quantum catch suggest that this change in expression would increase retinal sensitivity in the light environment of the lab. We also found that the magnitude of plasticity varied across species. These findings have important implications for understanding the genetic regulation of opsin expression and raise many interesting questions about how the cichlid visual system develops. They also suggest that sensory plasticity may have facilitated the ecological diversification of cichlids in Lake Malawi.
感觉系统在生存和繁殖中起着至关重要的作用。因此,感觉可塑性具有重要的进化意义。在这项研究中,我们研究了来自马拉维湖的五种慈鲷鱼的视网膜可塑性。我们将野外捕获的鱼类与在 UV 缺失、强度降低的光照环境中饲养的 F1 代实验室饲养的鱼类进行比较,观察它们的视锥蛋白表达谱。在野外捕获的鱼类中表达的所有视蛋白基因也在实验室饲养的个体中表达。然而,我们发现所有五个物种的相对视蛋白表达存在统计学上的显著差异。最一致的差异是在 SWS2B(紫罗兰)视蛋白中,实验室饲养的个体中表达水平总是更高。视觉色素量子捕获的估计表明,这种表达的变化会增加实验室光照环境中的视网膜敏感性。我们还发现,可塑性的程度在物种间存在差异。这些发现对理解视蛋白表达的遗传调控具有重要意义,并提出了许多关于慈鲷视觉系统如何发育的有趣问题。它们还表明,感觉可塑性可能促进了马拉维湖慈鲷的生态多样化。