Xiphophorus Genetic Stock Center, Department of Chemistry and Biochemistry, 419 Centennial Hall, Texas State University, 601 University Drive, San Marcos, TX 78666, USA.
Xiphophorus Genetic Stock Center, Department of Chemistry and Biochemistry, 419 Centennial Hall, Texas State University, 601 University Drive, San Marcos, TX 78666, USA.
Comp Biochem Physiol C Toxicol Pharmacol. 2018 Jun;208:87-95. doi: 10.1016/j.cbpc.2017.09.009. Epub 2017 Sep 29.
Artificial light produces an emission spectrum that is considerably different than the solar spectrum. Artificial light has been shown to affect various behavior and physiological processes in vertebrates. However, there exists a paucity of data regarding the molecular genetic effects of artificial light exposure. Previous studies showed that one of the commonly used fluorescent light source (FL; 4100K or "cool white") can affect signaling pathways related to maintenance of circadian rhythm, cell cycle progression, chromosome segregation, and DNA repair/recombination in the skin of male Xiphophorus maculatus. These observations raise questions concerning the kinetics of the FL induced gene expression response, and which biological functions become modulated at various times after light exposure. To address these questions, we exposed zebrafish to 4100K FL and utilized RNA-Seq to assess gene expression changes in skin at various times (1 to 12h) after FL exposure. We found 4100K FL incites a robust early (1-2h) transcriptional response, followed by a more protracted late response (i.e., 4-12h). The early transcriptional response involves genes associated with cell migration/infiltration and cell proliferation as part of an overall increase in immune function and inflammation. The protracted late transcriptional response occurs within gene sets predicted to maintain and perpetuate the inflammatory response, as well as suppression of lipid, xenobiotic, and melatonin metabolism.
人工光产生的发射光谱与太阳光有很大的不同。已经证明,人工光会影响脊椎动物的各种行为和生理过程。然而,关于人工光照暴露的分子遗传效应的数据还很少。先前的研究表明,一种常用的荧光光源(FL;4100K 或“冷白光”)可以影响与维持生物钟、细胞周期进程、染色体分离和皮肤中 DNA 修复/重组相关的信号通路在雄性 Xiphophorus maculatus 中。这些观察结果引发了关于 FL 诱导基因表达反应的动力学以及在光照暴露后不同时间调节哪些生物学功能的问题。为了解决这些问题,我们将斑马鱼暴露于 4100K FL 下,并利用 RNA-Seq 来评估在暴露于 FL 后不同时间(1 至 12 小时)皮肤中的基因表达变化。我们发现 4100K FL 引发了强烈的早期(1-2 小时)转录反应,随后是更长时间的晚期反应(即 4-12 小时)。早期转录反应涉及与细胞迁移/浸润和细胞增殖相关的基因,作为整体免疫功能和炎症增强的一部分。长期的晚期转录反应发生在预测维持和延续炎症反应以及抑制脂质、外来生物和褪黑素代谢的基因集中。