Max F. Perutz Laboratories, University of Vienna, Campus Vienna Biocenter, Dr. Bohr-Gasse 9/4, 1030, Vienna, Austria.
Department of Life and Coordination-Complex Molecular Science, Institute for Molecular Science, Okazaki, 444-8585, Japan.
BMC Biol. 2018 Apr 18;16(1):41. doi: 10.1186/s12915-018-0505-8.
The presence of photoreceptive molecules outside the eye is widespread among animals, yet their functions in the periphery are less well understood. Marine organisms, such as annelid worms, exhibit a 'shadow reflex', a defensive withdrawal behaviour triggered by a decrease in illumination. Herein, we examine the cellular and molecular underpinnings of this response, identifying a role for a photoreceptor molecule of the G-opsin class in the shadow response of the marine bristle worm Platynereis dumerilii.
We found Pdu-Go-opsin1 expression in single specialised cells located in adult Platynereis head and trunk appendages, known as cirri. Using gene knock-out technology and ablation approaches, we show that the presence of Go-opsin1 and the cirri is necessary for the shadow reflex. Consistently, quantification of the shadow reflex reveals a chromatic dependence upon light of approximately 500 nm in wavelength, matching the photoexcitation characteristics of the Platynereis Go-opsin1. However, the loss of Go-opsin1 does not abolish the shadow reflex completely, suggesting the existence of a compensatory mechanism, possibly acting through a ciliary-type opsin, Pdu-c-opsin2, with a Lambda of approximately 490 nm.
We show that a Go-opsin is necessary for the shadow reflex in a marine annelid, describing a functional example for a peripherally expressed photoreceptor, and suggesting that, in different species, distinct opsins contribute to varying degrees to the shadow reflex.
感光分子存在于眼睛以外的动物中非常普遍,但它们在周围环境中的功能却知之甚少。海洋生物,如环节蠕虫,表现出“阴影反射”,这是一种由光照减少触发的防御性退缩行为。在此,我们研究了这种反应的细胞和分子基础,确定了 G-视蛋白类感光分子在海洋多毛类环节蠕虫 Platynereis dumerilii 的阴影反应中的作用。
我们发现 Pdu-Go-opsin1 表达在位于成年 Platynereis 头部和躯干附属物(称为纤毛)的单个特化细胞中。通过基因敲除技术和消融方法,我们表明 Go-opsin1 的存在和纤毛对于阴影反射是必要的。一致地,对阴影反射的定量揭示了对大约 500nm 波长的光的色依赖性,与 Platynereis Go-opsin1 的光激发特性相匹配。然而,Go-opsin1 的缺失并没有完全消除阴影反射,这表明存在一种补偿机制,可能通过纤毛型视蛋白 Pdu-c-opsin2 起作用,其 Lambda 约为 490nm。
我们表明,在海洋环节动物中,Go-opsin 对于阴影反射是必要的,描述了一个外周表达的感光分子的功能范例,并表明在不同的物种中,不同的视蛋白对阴影反射的贡献程度不同。