Max Planck Institute for Developmental Biology, Spemannstrasse 35, 72076 Tuebingen, Germany.
Integr Comp Biol. 2013 Jul;53(1):7-16. doi: 10.1093/icb/ict046. Epub 2013 May 10.
The larval stages of polychaete annelids are often responsive to light and can possess one to six eyes. The early trochophore larvae of the errant annelid Platynereis dumerilii have a single pair of ventral eyespots, whereas older nectochaete larvae have an additional two pairs of dorsal eyes that will develop into the adult eyes. Early Platynereis trochophores show robust positive phototaxis starting on the first day of development. Even though the mechanism of phototaxis in Platynereis early trochophore larvae is well understood, no photopigment (opsin) expression has yet been described in this stage. In late trochophore larvae, a rhabdomeric-type opsin, r-opsin1, expressed in both the eyespots and the adult eyes has already been reported. Here, we identify another Platynereis rhabdomeric opsin, r-opsin3, that is expressed in a single photoreceptor in the eyespots in early trochophores, suggesting that it mediates early larval phototaxis. We also show that r-opsin1 and r-opsin3 are expressed in adjacent photoreceptor cells in the eyespots in later stages, indicating that a second eyespot-photoreceptor differentiates in late trochophore larvae. Using serial transmission electron microscopy (TEM), we identified and reconstructed both photoreceptors and a pigment cell in the late larval eyespot. We also characterized opsin expression in the adult eyes and found that the two opsins co-express there in several photoreceptor cells. Using antibodies recognizing r-opsin1 and r-opsin3 proteins, we demonstrate that both opsins localize to the rhabdomere in all six eyes. In addition, we found that r-opsin1 mRNA is localized to, and translated in, the projections of the adult eyes. The specific changes we describe in opsin transcription and translation and in the cellular complement suggest that the six larval eyes undergo spectral and functional maturation during the early planktonic phase of the Platynereis life cycle.
环节动物多毛类的幼虫阶段通常对光有反应,并可能拥有一到六个眼睛。游走多毛类环节动物 Platynereis dumerilii 的早期担轮幼虫有一对腹侧眼点,而较老的 nectochaete 幼虫则有另外两对背侧眼点,这些眼点将发育成成虫的眼睛。早期 Platynereis 担轮幼虫在发育的第一天就表现出强烈的正趋光性。尽管 Platynereis 早期担轮幼虫的趋光机制已经得到很好的理解,但在这个阶段还没有描述过光色素(视蛋白)的表达。在晚期担轮幼虫中,已经报道了一种 r-opsin1 型 rhabdomeric 视蛋白,它在眼点和成虫的眼睛中都有表达。在这里,我们鉴定了另一种 Platynereis rhabdomeric 视蛋白 r-opsin3,它在早期担轮幼虫的眼点中的一个光感受器中表达,表明它介导了早期幼虫的趋光性。我们还表明,r-opsin1 和 r-opsin3 在后期眼点的相邻光感受器细胞中表达,表明在晚期担轮幼虫中,第二个眼点-光感受器分化了。使用连续透射电子显微镜(TEM),我们鉴定并重建了晚期幼虫眼点中的两个光感受器和一个色素细胞。我们还对成虫眼睛中的视蛋白表达进行了特征描述,发现这两种视蛋白在几个光感受器细胞中共表达。使用识别 r-opsin1 和 r-opsin3 蛋白的抗体,我们证明这两种视蛋白都定位于所有六个眼睛的 rhabdomere 中。此外,我们发现 r-opsin1 mRNA 定位于成虫眼睛的突起中,并在那里翻译。我们描述的视蛋白转录和翻译以及细胞成分的特定变化表明,在 Platynereis 生命周期的早期浮游阶段,六个幼虫眼睛经历了光谱和功能的成熟。