Jerome Beetz M, Pfeiffer Keram, Homberg Uwe
Institut für Zellbiologie und Neurowissenschaft, Goethe-Universität, Frankfurt/M, Germany.
Faculty of Biology, Animal Physiology, Philipps-Universität Marburg, 35032, Marburg, Germany.
J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2016 Nov;202(11):759-781. doi: 10.1007/s00359-016-1116-x. Epub 2016 Aug 3.
Desert locusts (Schistocerca gregaria) sense the plane of dorsally presented polarized light through specialized dorsal eye regions that are likely adapted to exploit the polarization pattern of the blue sky for spatial orientation. Receptive fields of these dorsal rim photoreceptors and polarization-sensitive interneurons are directed toward the upper sky but may extend to elevations below 30°. Behavioral data, however, suggests that S. gregaria is even able to detect polarized light from ventral directions but physiological evidence for this is still lacking. In this study we characterized neurons in the locust brain showing polarization sensitivity at low elevations down to the horizon. In most neurons polarization sensitivity was absent or weak when stimulating from the zenith. All neurons, including projection and commissural neurons of the optic lobe and local interneurons of the central brain, are novel cell types, distinct from polarization-sensitive neurons studied so far. Painting dorsal rim areas in both eyes black to block visual input had no effect on the polarization sensitivity of these neurons, suggesting that they receive polarized light input from the main eye. A possible role of these neurons in flight stabilization or the perception of polarized light reflected from bodies of water or vegetation is discussed.
沙漠蝗虫(Schistocerca gregaria)通过专门的背侧眼区域感知背侧呈现的偏振光平面,这些区域可能经过适应,利用蓝天的偏振模式进行空间定向。这些背侧边缘光感受器和偏振敏感中间神经元的感受野指向天空上方,但可能延伸到低于30°的仰角。然而,行为数据表明,沙漠蝗虫甚至能够检测来自腹侧方向的偏振光,但对此的生理证据仍然缺乏。在这项研究中,我们对蝗虫大脑中在低仰角直至地平线处表现出偏振敏感性的神经元进行了特征描述。在大多数神经元中,当从头顶刺激时,偏振敏感性不存在或很弱。所有神经元,包括视叶的投射神经元和连合神经元以及中枢脑的局部中间神经元,都是新型细胞类型,与迄今为止研究的偏振敏感神经元不同。将双眼的背侧边缘区域涂成黑色以阻断视觉输入,对这些神经元的偏振敏感性没有影响,这表明它们从主眼接收偏振光输入。讨论了这些神经元在飞行稳定或对从水体或植被反射的偏振光的感知中的可能作用。