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Skin Transcriptomes of common bottlenose dolphins (& IT;Tursiops truncatus & IT;) from the northern Gulf of Mexico and southeastern US Atlantic coasts

机译:来自墨西哥北部的墨西哥北部和美国大西洋沿岸的北湾(Tursioops Truncatus⁢ Tursioops Truncatus⁢ Tursioops Truncatus&It的皮肤转录om

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Common bottlenose dolphins serve as sentinels for the health of their coastal environments as they are susceptible to health impacts from anthropogenic inputs through both direct exposure and food web magnification. Remote biopsy samples have been widely used to reveal contaminant burdens in free-ranging bottlenose dolphins, but do not address the health consequences of this exposure. To gain insight into whether remote biopsies can also identify health impacts associated with contaminant burdens, we employed RNA sequencing (RNA-seq) to interrogate the transcriptomes of remote skin biopsies from 116 bottlenose dolphins from the northern Gulf of Mexico and southeastern U.S. Atlantic coasts. Gene expression was analyzed using principal component analysis, differential expression testing, and gene co-expression networks, and the results correlated to season, location, and contaminant burden. Season had a significant impact, with over 60% of genes differentially expressed between spring/summer and winter months. Geographic location exhibited lesser effects on the transcriptome, with 23.5% of genes differentially expressed between the northern Gulf of Mexico and the southeastern U.S. Atlantic locations. Despite a large overlap between the seasonal and geographical gene sets, the pathways altered in the observed gene expression profiles were somewhat distinct. Co-regulated gene modules and differential expression analysis both identified epidermal development and cellular architecture pathways to be expressed at lower levels in animals from the northern Gulf of Mexico. Although contaminant burdens measured were not significantly different between regions, some correlation with contaminant loads in individuals was observed among co-expressed gene modules, but these did not include classical detoxification pathways. Instead, this study identified other, possibly downstream pathways, including those involved in cellular architecture, immune response, and oxidative stress, th
机译:常见的瓶颈海豚作为沿海环境健康的哨兵,因为它们通过直接暴露和食物网倍率易受人体输入的健康影响。远程活组织检查样本已被广泛用于揭示自由范围的瓶颈海豚中的污染物负担,但不会解决这一暴露的健康后果。要深入了解偏远活检还可以识别与污染物负担相关的健康影响,我们使用RNA测序(RNA-SEQ)询问来自墨西哥北部和美国大西洋沿岸的116个瓶颈海豚的偏远皮肤活检的转录组。使用主成分分析,差异表达测试和基因共表达网络分析基因表达,结果与季节,位置和污染负担相关。季节产生了重大影响,超过60%的基因在春季/夏季和冬季之间差异表达。地理位置表现出对转录组的较小效果,23.5%的基因在墨西哥北湾和东南美国大西洋地区之间差异化。尽管季节性和地理基因集之间具有大的重叠,但观察到的基因表达谱之间改变的途径有些不同。共调节基因模块和差异表达分析均确定表皮发育和细胞结构途径,以在来自墨西哥北部的动物的较低水平下表达。尽管在区域之间测量的污染物负担没有显着差异,但在共表达的基因模块中观察到与个体中的污染物载荷的一些相关性,但这些不包括经典解毒途径。相反,本研究确定了其他可能下游的途径,包括参与细胞结构,免疫应答和氧化应激的人

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