School of Marine Biosciences, Kitasato University, Ofunato, Iwate 022-0101, Japan.
Gen Comp Endocrinol. 2011 Mar 1;171(1):75-81. doi: 10.1016/j.ygcen.2010.12.008. Epub 2010 Dec 23.
Barfin flounders change their surface color pattern to match their background. We have reported evidence of the association between hormones and body color changes in this fish. First, bolus intraperitoneal injection with melanin-concentrating hormone (MCH) immediately turned the skin color pale, while injection with melanocyte-stimulating hormone (MSH) did not change the skin color. Second, gene expression levels of MCH change in response to background color, while those of MSH do not. We also reported the expression of an MCH receptor gene (Mch-r2) in the skin of this fish. In this study, we aimed to further evaluate the roles of MCH in skin color change. First, long-term adaptation of adult barfin flounder to black or white background colors induced significantly different pigment migration patterns in both melanophores and xanthophores (P<0.05). However, continuous intraperitoneal injection with MCH did not influence chromatophore proliferation. Then, using in vitro experiments, we found that MCH aggregates both melanophores and xanthophores, and inhibits the pigment-dispersing activity of MSH in a similar manner. Finally, we identified transcripts of Mch-r2 in cells isolated from both melanophores and xanthophores. Taken together, the evidence suggests that MCH aggregates pigments via MCH-R2 in concert with the nervous system by overcoming the melanin-dispersing activities of MSH in barfin flounder.
麻斑蟾鱼会改变其表面颜色图案以与背景相匹配。我们已经报道了这种鱼的激素与体色变化之间存在关联的证据。首先,黑色素浓缩激素(MCH)的块状腹腔内注射会立即使皮肤颜色变浅,而促黑色素激素(MSH)的注射不会改变皮肤颜色。其次,MCH 的基因表达水平会响应背景颜色而变化,而 MSH 的则不会。我们还报道了这种鱼皮肤中 MCH 受体基因(Mch-r2)的表达。在这项研究中,我们旨在进一步评估 MCH 在皮肤颜色变化中的作用。首先,成年麻斑蟾鱼对黑色或白色背景的长期适应会导致黑色素细胞和黄色素细胞中的色素迁移模式发生明显不同(P<0.05)。然而,连续腹腔内注射 MCH 不会影响色素细胞的增殖。然后,通过体外实验,我们发现 MCH 会聚集黑色素细胞和黄色素细胞,并以类似的方式抑制 MSH 的色素扩散活性。最后,我们在从黑色素细胞和黄色素细胞分离的细胞中鉴定出了 Mch-r2 的转录本。综上所述,这些证据表明,MCH 通过 MCH-R2 与神经系统协同作用,聚集色素,克服 MSH 的黑色素分散活性,从而在麻斑蟾鱼中实现这一过程。