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首页> 外文期刊>Comparative biochemistry and physiology. Toxicology & pharmacology: CBP >The transcriptional response of skin to fluorescent light exposure in viviparous (Xiphophorus) and oviparous (Danio, Oryzias) fishes
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The transcriptional response of skin to fluorescent light exposure in viviparous (Xiphophorus) and oviparous (Danio, Oryzias) fishes

机译:皮肤对荧光光暴露在viviparous(Xiphophorus)和卵巢(Danio,Oryzias)鱼类中的转录响应

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摘要

Differences in light sources are common in animal facilities and potentially can impact experimental results. Here, the potential impact of lighting differences on skin transcriptomes has been tested in three aquatic animal models commonly utilized in biomedical research, (Xiphophorus maculatus (platyfish), Oryzias latipes (medaka) and Danio rerio (zebrafish). Analysis of replicate comparative RNA-Seq data showed the transcriptional response to commonly utilized 4100 K or "cool white" fluorescent light (FL) is much greater in platyfish and medaka than in zebrafish. FL induces genes associated with inflammatory and immune responses in both medaka and zebrafish; however, the platyfish exhibit suppression of genes involved with immune/inflammation, as well as genes associated with cell cycle progression. Furthermore, comparative analyses of gene expression data from platyfish UVB exposures, with medaka and zebrafish after exposure to 4100 K FL, show comparable effects on the same stress pathways. We suggest the response to light is conserved, but that long-term adaptation to species specific environmental niches has resulted in a shifting of the wavelengths required to incite similar "genetic" responses in skin. We forward the hypothesis that the "genetic perception" of light may have evolved differently than ocular perception and suggest that light type (i.e., wavelengths emitted) is an important parameter to consider in experimental design.
机译:光源的差异在动物设施中是常见的,并且可能会影响实验结果。在这里,在生物医学研究中的三种水生动物模型中测试了照明差异对皮肤转录om的潜在影响,(Xiphophorus maculatus(Platyfish),oryzias LaTipes(Medaka)和Danio Rerio(斑马鱼)。复制比较RNA分析SEQ数据显示对常用的4100k或“凉爽白色”荧光灯(FL)的转录响应比在斑马鱼中比斑马鱼和麦卡卡更大。FL诱导与Medaka和斑马鱼中的炎症和免疫反应相关的基因;然而, platyfish表现出抑制与免疫/炎症相关的基因,以及与细胞周期进展相关的基因。此外,在暴露于4100kf后,枸杞和斑马鱼的基因表达数据对比较分析,表现出可比的效果相同的压力途径。我们建议对光的反应是节省保守的,但长期适应物种特定的envi ronmental的核肉导致在皮肤中煽动类似的“遗传”反应所需的波长。我们前进的假设,即光的“遗传感知”可能与眼镜感知不同,并表明光型(即排出的波长)是实验设计中考虑的重要参数。

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