Dong Zimei, Yuwen Yanqing, Sima Yingxu, Dong Yanping, Zhan Huina, Chen Guangwen, Liu Dezeng
College of Life Science, Henan Normal University, Xinxiang, Henan, China.
Integr Zool. 2017 Mar;12(2):157-164. doi: 10.1111/1749-4877.12234.
Planarians provide the ideal model for studying eye development, with their simple eye structure and exceptionally rapid regeneration. Here, we observed the eye morphogenesis, photophobic behavior, spectral sensitivity and expression pattern of Djopsin in the freshwater planarian Dugesia japonica. The results showed that: (i) Djopsin encoding the putative protein belonged to the rhabdomeric opsins group and displayed high conservation during animal evolution; (ii) planarians displayed diverse photophobic response to different visible wavelengths and were more sensitive to light blue (495 nm) and yellow (635 nm); (iii) the morphogenesis and functional recovery of eyes were related to the expression pattern of Djopsin during head regeneration; and (iv) Djopsin gene plays a major role in functional recovery during eye regeneration and visual system maintenance in adult planarians.
涡虫因其简单的眼睛结构和异常快速的再生能力,为研究眼睛发育提供了理想的模型。在此,我们观察了日本三角涡虫(Dugesia japonica)中Djopsin的眼睛形态发生、避光行为、光谱敏感性及表达模式。结果表明:(i)编码假定蛋白质的Djopsin属于视小杆蛋白组,在动物进化过程中表现出高度保守性;(ii)涡虫对不同可见波长表现出多样的避光反应,且对浅蓝色(495nm)和黄色(635nm)更为敏感;(iii)头部再生过程中,眼睛的形态发生和功能恢复与Djopsin的表达模式相关;(iv)Djopsin基因在成年涡虫眼睛再生及视觉系统维持的功能恢复中起主要作用。