Department of Biological Sciences, University of Maryland Baltimore County, Baltimore, MD 21250;
Department of Biology, University of Hawai'i at Mānoa, Honolulu, HI 96822.
Proc Natl Acad Sci U S A. 2020 Apr 21;117(16):8948-8957. doi: 10.1073/pnas.1917303117. Epub 2020 Apr 2.
Stomatopod crustaceans possess some of the most complex animal visual systems, including at least 16 spectrally distinct types of photoreceptive units (e.g., assemblages of photoreceptor cells). Here we fully characterize the set of opsin genes expressed in retinal tissues and determine expression patterns of each in the stomatopod Using a combination of transcriptome and RACE sequencing, we identified 33 opsin transcripts expressed in each eye, which are predicted to form 20 long-wavelength-sensitive, 10 middle-wavelength-sensitive, and three UV-sensitive visual pigments. Observed expression patterns of these 33 transcripts were highly unusual in five respects: 1) All long-wavelength and short/middle-wavelength photoreceptive units expressed multiple opsins, while UV photoreceptor cells expressed single opsins; 2) most of the long-wavelength photoreceptive units expressed at least one middle-wavelength-sensitive opsin transcript; 3) the photoreceptors involved in spatial, motion, and polarization vision expressed more transcripts than those involved in color vision; 4) there is a unique opsin transcript that is expressed in all eight of the photoreceptive units devoted to color vision; and 5) expression patterns in the peripheral hemispheres of the eyes suggest visual specializations not previously recognized in stomatopods. Elucidating the expression patterns of all opsin transcripts expressed in the retina reveals the potential for previously undocumented functional diversity in the already complex stomatopod eye and is a first step toward understanding the functional significance of the unusual abundance of opsins found in many arthropod species' visual systems.
十足目甲壳动物拥有一些最复杂的动物视觉系统,包括至少 16 种具有不同光谱特性的感光单位(例如,感光细胞的集合体)。在这里,我们全面描述了在视网膜组织中表达的一组视蛋白基因,并确定了每种基因在十足目动物中的表达模式。
通过转录组和 RACE 测序的组合,我们在每只眼睛中鉴定出 33 种视蛋白转录本,它们预计会形成 20 种长波敏感、10 种中波敏感和 3 种紫外线敏感的视觉色素。这些 33 种转录本的观察到的表达模式在五个方面非常不寻常:1)所有长波和短/中波感光单位表达多种视蛋白,而紫外线感光细胞表达单一视蛋白;2)大多数长波感光单位至少表达一种中波敏感视蛋白转录本;3)参与空间、运动和偏振视觉的感光器表达的转录本多于参与颜色视觉的感光器;4)有一种独特的视蛋白转录本在所有 8 种专门用于颜色视觉的感光器中表达;5)眼睛外周半球的表达模式表明存在以前在十足目动物中未被识别的视觉特化。阐明视网膜中表达的所有视蛋白转录本的表达模式揭示了以前在已经复杂的十足目眼睛中未被记录的功能多样性的潜力,并且是理解许多节肢动物物种视觉系统中发现的异常丰富的视蛋白的功能意义的第一步。