Martin Mélissa, Théry Marc, Rodgers Gwendolen, Goven Delphine, Sourice Stéphane, Mège Pascal, Secondi Jean
UMR 7179 CNRS-MNHN, Mécanismes Adaptatifs et Evolution, Brunoy, France GECCO, Université d'Angers, France.
UMR 7179 CNRS-MNHN, Mécanismes Adaptatifs et Evolution, Brunoy, France.
Biol Lett. 2016 Feb;12(2):20150954. doi: 10.1098/rsbl.2015.0954.
We experimentally investigated the influence of developmental plasticity of ultraviolet (UV) visual sensitivity on predation efficiency of the larval smooth newt, Lissotriton vulgaris. We quantified expression of SWS1 opsin gene (UV-sensitive protein of photoreceptor cells) in the retinas of individuals who had developed in the presence (UV+) or absence (UV-) of UV light (developmental treatments), and tested their predation efficiency under UV+ and UV- light (testing treatments). We found that both SWS1 opsin expression and predation efficiency were significantly reduced in the UV- developmental group. Larvae in the UV- testing environment displayed consistently lower predation efficiency regardless of their developmental treatment. These results prove for the first time, we believe, functional UV vision and developmental plasticity of UV sensitivity in an amphibian at the larval stage. They also demonstrate that UV wavelengths enhance predation efficiency and suggest that the magnitude of the behavioural response depends on retinal properties induced by the developmental lighting environment.
我们通过实验研究了紫外线(UV)视觉敏感性的发育可塑性对光滑蝾螈幼体(Lissotriton vulgaris)捕食效率的影响。我们对在有紫外线(UV+)或无紫外线(UV-)光照条件下发育的个体(发育处理)视网膜中SWS1视蛋白基因(光感受器细胞的紫外线敏感蛋白)的表达进行了量化,并测试了它们在UV+和UV-光照条件下的捕食效率(测试处理)。我们发现,在UV-发育组中,SWS1视蛋白表达和捕食效率均显著降低。无论其发育处理如何,处于UV-测试环境中的幼体捕食效率始终较低。我们相信,这些结果首次证明了两栖动物幼体阶段具有功能性紫外线视觉以及紫外线敏感性的发育可塑性。它们还表明,紫外线波长可提高捕食效率,并表明行为反应的程度取决于发育光照环境诱导的视网膜特性。