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早期光剥夺导致的异时视蛋白表达会使丽鱼科鱼类的视觉敏感度发生显著变化:甲状腺激素信号传导的潜在作用。

Heterochronic opsin expression due to early light deprivation results in drastically shifted visual sensitivity in a cichlid fish: Possible role of thyroid hormone signaling.

作者信息

Karagic Nidal, Härer Andreas, Meyer Axel, Torres-Dowdall Julián

机构信息

Zoology and Evolutionary Biology, Department of Biology, University of Konstanz, Konstanz, Germany.

Radcliffe Institute for Advanced Study, Harvard University, Cambridge, Massachusetts.

出版信息

J Exp Zool B Mol Dev Evol. 2018 Jun;330(4):202-214. doi: 10.1002/jez.b.22806. Epub 2018 Jun 14.

Abstract

During early ontogeny, visual opsin gene expression in cichlids is influenced by prevailing light regimen. Red light, for example, leads to an early switch from the expression of short-wavelength sensitive to long-wavelength sensitive opsins. Here, we address the influence of light deprivation on opsin expression. Individuals reared in constant darkness during the first 14 days post-hatching (dph) showed a general developmental delay compared with fish reared under a 12:12 hr light-dark cycle (control group). Several characters including pigmentation patterns and eye development, appeared later in dark-reared individuals. Quantitative real-time PCR and fluorescent in situ hybridization at six time points during the 14 days period revealed that fish from the control group expressed opsin genes from 5 dph on and maintained a short-wavelength sensitive phenotype (sws1, rh2b, and rh2a). Onset of opsin expression in dark-reared Midas cichlids was delayed by 4 days and visual sensitivity rapidly progressed toward a long-wavelength sensitive phenotype (sws2b, rh2a, and lws). Shifts in visual sensitivities toward longer wavelengths are mediated by thyroid hormone (TH) in many vertebrates. Compared to control fish, dark-reared individuals showed elevated dio3 expression levels - a validated proxy for TH concentration - suggesting higher circulating TH levels. Despite decelerated overall development, ontogeny of opsin gene expression was accelerated, resulting in retinae with long-wavelength shifted predicted sensitivities compared to light-reared individuals. Indirect evidence suggests that this was due to altered TH metabolism.

摘要

在早期个体发育过程中,丽鱼科鱼类视觉视蛋白基因的表达受主要光照条件的影响。例如,红光会导致从短波长敏感视蛋白的表达早期转变为长波长敏感视蛋白的表达。在此,我们研究了光照剥夺对视蛋白表达的影响。与在12:12小时明暗循环条件下饲养的鱼类(对照组)相比,孵化后前14天(dph)在持续黑暗中饲养的个体表现出普遍的发育延迟。包括色素沉着模式和眼睛发育在内的几个特征在黑暗饲养的个体中出现得更晚。在这14天期间的六个时间点进行的定量实时PCR和荧光原位杂交显示,对照组的鱼类从5 dph开始表达视蛋白基因,并维持短波长敏感表型(sws1、rh2b和rh2a)。黑暗饲养的米达斯丽鱼视蛋白表达的起始延迟了4天,视觉敏感性迅速向长波长敏感表型(sws2b、rh2a和lws)发展。在许多脊椎动物中,视觉敏感性向更长波长的转变是由甲状腺激素(TH)介导的。与对照鱼相比,黑暗饲养的个体显示出dio3表达水平升高——这是TH浓度的有效指标——表明循环TH水平更高。尽管整体发育减速,但视蛋白基因表达的个体发育加速,导致视网膜的预测敏感性与光照饲养的个体相比向长波长偏移。间接证据表明,这是由于TH代谢改变所致。

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