Walter Ronald B, Walter Dylan J, Boswell William T, Caballero Kaela L, Boswell Mikki, Lu Yuan, Chang Jordan, Savage Markita G
Molecular Bioscience Research Group &Xiphophorus Genetic Stock Center, Department of Chemistry and Biochemistry, Texas State University, San Marcos, TX 78666, United States.
Comp Biochem Physiol C Toxicol Pharmacol. 2015 Dec;178:93-103. doi: 10.1016/j.cbpc.2015.08.006. Epub 2015 Sep 1.
We report RNA-Seq results from skin of X. maculatus Jp 163 B after exposure to various doses of "cool white" fluorescent light (FL). We show that FL exposure incites a genetic transcriptional response in skin nearly as great as observed for UVB exposure; however, the gene sets modulated due to exposure to the two light sources are quite different. Known light responsive genes involved in maintaining circadian cycling (e.g., clock, cry2a, cry1b, per1b, per2, per3, and arntl1a) exhibited expected shifts in transcriptional expression upon FL exposure. Exposure to FL also resulted in down-regulated transcription of many genes involved with cell cycle progression (e.g., cdc20, cdc45, cdca7b, plk1, cdk1, ccnb-3, and cdca7a) and chromosome segregation (e.g., cenpe, cenpf, cenpi, cenpk, cenpo, cenpp, and cenpu; cep70; knstrm, kntc, mcm2, mcm5; smc2). In addition, several DNA replication and recombination repair genes (e.g., pola1, pole, rec52, rad54l, rpa1, and parpbp) exhibit reduced expression in FL exposed X. maculatus skin. Some genes down modulated by FL are known to be associated with DNA repair and human diseases (e.g., atm2, brip1, fanc1, fancl, and xrcc4). The overall suppression of genes involved with mitotic progression in the skin of adult fish is consistent with entry into the light phase of the circadian cycle. Current efforts are aimed at determining specific wavelengths that may lead to differential expression among the many genes affected by fluorescent light exposure.
我们报告了豹鳉Jp 163 B在暴露于不同剂量的“冷白”荧光(FL)后皮肤的RNA测序结果。我们发现,FL暴露引发的皮肤遗传转录反应几乎与UVB暴露时观察到的一样强烈;然而,由于暴露于这两种光源而调节的基因集却大不相同。已知参与维持昼夜节律循环的光反应基因(如clock、cry2a、cry1b、per1b、per2、per3和arntl1a)在FL暴露后转录表达出现了预期的变化。暴露于FL还导致许多参与细胞周期进程的基因(如cdc20、cdc45、cdca7b、plk1、cdk1、ccnb - 3和cdca7a)以及染色体分离相关基因(如cenpe、cenpf、cenpi、cenpk、cenpo、cenpp和cenpu;cep70;knstrm、kntc、mcm2、mcm5;smc2)的转录下调。此外,几个DNA复制和重组修复基因(如pola1、pole、rec52、rad54l、rpa1和parpbp)在暴露于FL的豹鳉皮肤中表达降低。一些被FL下调的基因已知与DNA修复和人类疾病有关(如atm2、brip1、fanc智趣,fancl和xrcc4)。成年鱼皮肤中参与有丝分裂进程的基因的整体抑制与进入昼夜节律循环的光照阶段是一致的。目前的工作旨在确定可能导致受荧光暴露影响的众多基因中差异表达的特定波长。