Chang Chia-Hao
Department of Science Education, National Taipei University of Education, No.134, Sec.2, Heping E. Rd., Da'an District, Taipei City 10671, Taiwan. E-mail:
Zool Stud. 2022 May 10;61:e16. doi: 10.6620/ZS.2022.61-16. eCollection 2022.
The important role of retrogenes in genome evolution and species differentiation is becoming increasingly accepted. One synapomorphy among cyprinodontoid fish is a retrotransposed version of a long-wavelength sensitive (LWS) opsin gene, LWS-R, within an intron of the gephyrin (GPHN) gene. These two genes display opposing orientations. It had been speculated that LWS-R hijacks the cis-regulatory elements of GPHN for transcription, but whether their expression is correlated had remained unclear. Here, predictions identified putative promoters upstream of the translation start site of LWS-R, indicating that its transcription is driven by its own promoter rather than by the GPHN promoter. However, consistent expression ratios of LWS-R:GPHN in the eyeball and brain of fishes indicate that the respective gene transcriptions are correlated. Co-expression is potentially modulated by histone exchange during GPHN transcription. Two isoforms were detected in this study, , intron-free and intron-retaining. Intron-free LWS-R was only expressed in the eyeball of fishes, whereas intron-retaining LWS-R occurred in both eyeball and brain. Expression of vision-associated LWS-R beyond the eyeball supports that it is co-expressed with more ubiquitous GPHN.
反转录基因在基因组进化和物种分化中的重要作用越来越被人们所接受。鲤齿目鱼类的一个共衍征是长波长敏感(LWS)视蛋白基因LWS-R的反转录转座版本,位于桥连蛋白(GPHN)基因的一个内含子内。这两个基因呈现相反的方向。有人推测LWS-R劫持GPHN的顺式调控元件进行转录,但其表达是否相关仍不清楚。在此,预测确定了LWS-R翻译起始位点上游的推定启动子,表明其转录由自身启动子驱动,而非由GPHN启动子驱动。然而,鱼类眼球和大脑中LWS-R:GPHN的一致表达比率表明,各自的基因转录是相关的。共表达可能在GPHN转录过程中受组蛋白交换调节。本研究检测到两种异构体,无内含子型和保留内含子型。无内含子的LWS-R仅在鱼类眼球中表达,而保留内含子的LWS-R在眼球和大脑中均有出现。视觉相关的LWS-R在眼球之外的表达支持其与更普遍存在的GPHN共表达。