School of Marine Biosciences, Kitasato University, Sagamihara, Kanagawa 252-0373, Japan.
School of Marine Biosciences, Kitasato University, Sagamihara, Kanagawa 252-0373, Japan.
Gen Comp Endocrinol. 2020 Jan 1;285:113266. doi: 10.1016/j.ygcen.2019.113266. Epub 2019 Sep 4.
In the present study, the effects of photic environments, such as background color (white and black) and chromatic lights (blue, green, and red), on body color and gene expressions of melanin-concentrating hormone (mch) in the brain and proopiomelanocortin (pomc) in the pituitary, as well as the roles of the eyes and brain as mediators of ambient light to these genes, were examined in goldfish (Carassius auratus). Body color of goldfish exposed to fluorescent light (FL) under white background (WBG) was paler than those under black background (BBG). Gene expression levels for mch and pomc were reciprocally different depending on background color; under WBG, mRNA levels of mch and pomc were high and low, respectively, while under BBG, these levels were reversed. mch and pomc mRNA expressions of the fish exposed to chromatic light from LED were primarily similar to those exposed to FL, while blue light stimulated the expressions of mch and pomc. Ophthalmectomized goldfish exposed to FL or blue light showed minimum expression levels of mch gene, suggesting that eyes are the major mediator of ambient light for mch gene expression. Contrastingly, mRNA expressions of pomc in ophthalmectomized goldfish exposed to FL were different from those of intact goldfish. These results suggest that eyes play a functional role in mediating ambient light to regulate pomc gene expression. Since ophthalmectomy caused an increase in pomc mRNA contents in the fish exposed to blue light, we suggest that the brain is an additional mediator to regulate pomc gene expression.
在本研究中,研究了光环境(如背景颜色(白色和黑色)和彩色光(蓝色、绿色和红色))对金鱼(Carassius auratus)体色以及脑中黑色素浓缩激素(mch)和脑垂体前叶促黑皮质素原(pomc)基因表达的影响,以及眼睛和大脑作为环境光对这些基因的中介的作用。暴露于白色背景荧光灯(WBG)下的金鱼体色比暴露于黑色背景下的金鱼体色更浅(BBG)。mch 和 pomc 基因的表达水平因背景颜色而异;在 WBG 下,mch 和 pomc 的 mRNA 水平分别较高和较低,而在 BBG 下,这些水平则相反。暴露于 LED 彩色光下的金鱼的 mch 和 pomc mRNA 表达主要类似于暴露于 FL 下的表达,而蓝光刺激 mch 和 pomc 的表达。暴露于 FL 或蓝光下的眼切除金鱼 mch 基因的表达水平最低,表明眼睛是 mch 基因表达的主要环境光中介。相比之下,眼切除金鱼暴露于 FL 下的 pomc mRNA 表达与完整金鱼不同。这些结果表明眼睛在介导环境光调节 pomc 基因表达方面发挥了功能作用。由于眼切除导致暴露于蓝光下的金鱼 pomc mRNA 含量增加,我们认为大脑是调节 pomc 基因表达的另一个中介。