Zhang Yan-Ping, Wang Zhong-Duo, Guo Yu-Song, Liu Li, Yu Juan, Zhang Shun, Liu Shao-Jun, Liu Chu-Wu
College of Life Science, Hunan Normal University, Changsha 410081, China.
Fisheries College, Guangdong Ocean University, Zhanjiang 524088, China.
Int J Mol Sci. 2015 Nov 12;16(11):26991-7004. doi: 10.3390/ijms161126005.
In this study, morphology observation and illumina sequencing were performed on two different coloration skins of crimson snapper (Lutjanus erythropterus), the black zone and the red zone. Three types of chromatophores, melanophores, iridophores and xanthophores, were organized in the skins. The main differences between the two colorations were in the amount and distribution of the three chromatophores. After comparing the two transcriptomes, 9200 unigenes with significantly different expressions (ratio change ≥ 2 and q-value ≤ 0.05) were found, of which 5972 were up-regulated in black skin and 3228 were up-regulated in red skin. Through the function annotation, Gene Ontology (GO) and Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway analysis of the differentially transcribed genes, we excavated a number of uncharacterized candidate pigment genes as well as found the conserved genes affecting pigmentation in crimson snapper. The patterns of expression of 14 pigment genes were confirmed by the Quantitative real-time PCR analysis between the two color skins. Overall, this study shows a global survey of the morphological characters and transcriptome analysis of the different coloration skins in crimson snapper, and provides valuable cellular and genetic information to uncover the mechanism of the formation of pigment patterns in snappers.
在本研究中,对紫红笛鲷(Lutjanus erythropterus)两种不同颜色的皮肤区域——黑色区域和红色区域进行了形态学观察和Illumina测序。皮肤中存在三种类型的色素细胞,即黑素细胞、虹彩细胞和黄色素细胞。两种颜色之间的主要差异在于这三种色素细胞的数量和分布。比较两个转录组后,发现了9200个表达差异显著的单基因(比值变化≥2且q值≤0.05),其中5972个在黑色皮肤中上调,3228个在红色皮肤中上调。通过对差异转录基因进行功能注释、基因本体论(GO)和京都基因与基因组百科全书(KEGG)通路分析,我们挖掘出了一些未表征的候选色素基因,并发现了影响紫红笛鲷色素沉着的保守基因。通过对两种颜色皮肤之间的14个色素基因进行实时定量PCR分析,证实了它们的表达模式。总体而言,本研究对紫红笛鲷不同颜色皮肤的形态特征和转录组进行了全面调查,并为揭示笛鲷色素模式形成机制提供了有价值的细胞和遗传信息。