Song Feibiao, Yang Zihang, Shi Liping, Zheng Da, Liang Huan, Wang Lei, Sun Junlong, Luo Jian
State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan Aquaculture Breeding Engineering Research Center, Hainan Academician Team Innovation Center, Sanya Nanfan Research Institute of Hainan University, College of Marine Sciences, Hainan University, Haikou 570228, China.
State Key Laboratory of Marine Resource Utilization in South China Sea, Hainan Aquaculture Breeding Engineering Research Center, Hainan Academician Team Innovation Center, Sanya Nanfan Research Institute of Hainan University, College of Marine Sciences, Hainan University, Haikou 570228, China.
Comp Biochem Physiol Part D Genomics Proteomics. 2023 Dec;48:101141. doi: 10.1016/j.cbd.2023.101141. Epub 2023 Sep 8.
Red skin color in Plectropomus leopardus is important to its ornamental and economic value. However, the color of P. leopardus can change during the rearing process, darkening and turning black due to the influence of environmental background color. The underlying molecular mechanisms that regulate this phenomenon remain unclear. MicroRNAs (miRNAs) are endogenous, small non-coding RNAs that play important roles in numerous biological processes, such as skin differentiation and color formation in many animals. Therefore, we performed miRNA sequencing of P. leopardus skin before (initial) and after rearing with three different background colors (white, black, and blue) using Illumina sequencing to identify candidate miRNAs that may contribute to skin color differentiation. In total, 154,271,376 clean reads were obtained, with over 92 % of them successfully mapped to the P. leopardus reference genome. The miRNA length distributions of all samples displayed peaks around a typical length of 22 nt. Within these sequences, 243 known and 287 novel miRNAs were identified. A total of 65 significantly differentially expressed miRNAs (DEMs) were identified (P < 0.05), including 40 known DEMs and 25 novel DEMs. These DEMs included novel_561, miR-141-3p, and miR-129-5p, whose target genes were primarily associated with pigmentation related processes, including tyrosine metabolism, melanogenesis, and the Wnt signaling pathway. These findings shed light on the potential roles of miRNAs in the darkening of skin color in P. leopardus, thus enhancing our understanding of the molecular mechanisms involved in skin pigmentation differentiation in this species.
豹纹鳃棘鲈的红色皮肤对其观赏价值和经济价值至关重要。然而,豹纹鳃棘鲈的颜色在养殖过程中会发生变化,由于环境背景颜色的影响,会变暗并变黑。调节这一现象的潜在分子机制仍不清楚。微小RNA(miRNA)是内源性的小非编码RNA,在许多生物学过程中发挥重要作用,如许多动物的皮肤分化和颜色形成。因此,我们使用Illumina测序技术对豹纹鳃棘鲈在三种不同背景颜色(白色、黑色和蓝色)养殖前后的皮肤进行了miRNA测序,以鉴定可能有助于皮肤颜色分化的候选miRNA。总共获得了154,271,376条干净 reads,其中超过92%成功映射到豹纹鳃棘鲈参考基因组。所有样本的miRNA长度分布在典型长度22 nt左右显示出峰值。在这些序列中,鉴定出了243个已知miRNA和287个新miRNA。总共鉴定出65个显著差异表达的miRNA(DEM)(P < 0.05),包括40个已知DEM和25个新DEM。这些DEM包括novel_561、miR-141-3p和miR-129-5p,其靶基因主要与色素沉着相关过程有关,包括酪氨酸代谢、黑色素生成和Wnt信号通路。这些发现揭示了miRNA在豹纹鳃棘鲈皮肤颜色变黑中的潜在作用,从而增进了我们对该物种皮肤色素沉着分化所涉及分子机制的理解。