Ehlman Sean M, Sandkam Benjamin A, Breden Felix, Sih Andrew
Department of Environmental Science and Policy, University of California-Davis, One Shields Ave., Davis, CA, 95616, USA.
Animal Behavior Graduate Group and Center for Population Biology, University of California-Davis, Davis, USA.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2015 Dec;201(12):1125-35. doi: 10.1007/s00359-015-1041-4. Epub 2015 Oct 1.
Increasing turbidity in streams and rivers near human activity is cause for environmental concern, as the ability of aquatic organisms to use visual information declines. To investigate how some organisms might be able to developmentally compensate for increasing turbidity, we reared guppies (Poecilia reticulata) in either clear or turbid water. We assessed the effects of developmental treatments on adult behavior and aspects of the visual system by testing fish from both developmental treatments in turbid and clear water. We found a strong interactive effect of rearing and assay conditions: fish reared in clear water tended to decrease activity in turbid water, whereas fish reared in turbid water tended to increase activity in turbid water. Guppies from all treatments decreased activity when exposed to a predator. To measure plasticity in the visual system, we quantified treatment differences in opsin gene expression of individuals. We detected a shift from mid-wave-sensitive opsins to long wave-sensitive opsins for guppies reared in turbid water. Since long-wavelength sensitivity is important in motion detection, this shift likely allows guppies to salvage motion-detecting abilities when visual information is obscured in turbid water. Our results demonstrate the importance of developmental plasticity in responses of organisms to rapidly changing environments.
靠近人类活动区域的溪流和河流中浊度增加引发了环境担忧,因为水生生物利用视觉信息的能力会下降。为了研究一些生物如何在发育过程中补偿不断增加的浊度,我们将孔雀鱼(孔雀花鳉)饲养在清水或浊水中。我们通过在浊水和清水中测试来自两种发育处理的鱼类,评估了发育处理对成年行为和视觉系统各方面的影响。我们发现饲养条件和测试条件之间存在强烈的交互作用:在清水中饲养的鱼在浊水中活动往往会减少,而在浊水中饲养的鱼在浊水中活动往往会增加。所有处理组的孔雀鱼在遇到捕食者时活动都会减少。为了测量视觉系统的可塑性,我们对个体视蛋白基因表达的处理差异进行了量化。我们检测到在浊水中饲养的孔雀鱼的视蛋白从对中波敏感转变为对长波敏感。由于长波长敏感性在运动检测中很重要,这种转变可能使孔雀鱼在浊水中视觉信息被遮挡时能够挽救运动检测能力。我们的结果证明了发育可塑性在生物对快速变化环境的反应中的重要性。