Department of Biology, Juniata College, Huntingdon, PA, USA.
Ecotoxicology. 2022 Aug;31(6):1044-1055. doi: 10.1007/s10646-022-02564-0. Epub 2022 Jul 14.
Unconventional natural gas development (fracking) has been a rapidly expanding technique used for the extraction of natural gas from the Marcellus Shale formation in Pennsylvania. There remains a knowledge gap regarding the ecological impacts of fracking, especially regarding the long-term health of native Brook trout (Salvelinus fontinalis) populations. During the summer of 2015, Brook trout were sampled from twelve streams located in forested, northwestern Pennsylvania in order to evaluate the impacts of fracking on Brook trout. Four stream sites were undisturbed (no fracking activity), three had a developed well pad without fracking activity, and five had active fracking with natural gas production. Liver tissue was isolated from two to five fish per stream and underwent RNA-Seq analysis to identify differentially expressed genes between ecosystems with differing fracking status. Data were analyzed individually and with samples pooled within-stream to account for hierarchical data structure and variation in sample coverage within streams. Differentially expressed and differentially alternatively spliced genes had functions related to lipid and steroid metabolism, mRNA processing, RNA polymerase and protein regulation. Unique to our study, genes related to xenobiotic and stress responses were found as well as potential markers for endocrine disruption and saline adaptation that were identified in watersheds with active fracking activity. These results support the utility of RNA-Seq to assess trout health and suggest detrimental impacts of fracking on sensitive trout populations.
非常规天然气开发(水力压裂)是一种从宾夕法尼亚州马塞勒斯页岩地层中提取天然气的快速扩张技术。关于水力压裂的生态影响,尤其是对本地溪红点鲑(Salvelinus fontinalis)种群的长期健康影响,仍存在知识空白。2015 年夏季,从宾夕法尼亚州西北部森林覆盖的 12 条溪流中采集了溪红点鲑样本,以评估水力压裂对溪红点鲑的影响。四个溪流地点未受干扰(无水力压裂活动),三个有未进行水力压裂的开发井场,五个有正在进行的水力压裂和天然气生产。从每条溪流中采集了 2 到 5 条鱼的肝脏组织,并进行了 RNA-Seq 分析,以鉴定具有不同水力压裂状态的生态系统之间差异表达的基因。数据单独进行了分析,并在溪流内对样本进行了汇总,以解释数据的层次结构和样本在溪流中的覆盖度变化。差异表达和差异选择性剪接的基因具有与脂质和类固醇代谢、mRNA 处理、RNA 聚合酶和蛋白质调节相关的功能。我们的研究中发现了与外源物质和应激反应相关的基因,以及潜在的内分泌干扰和耐盐性标记物,这些基因在有活跃水力压裂活动的流域中被鉴定出来。这些结果支持使用 RNA-Seq 评估鳟鱼健康,并表明水力压裂对敏感鳟鱼种群有不利影响。