Departamento de Recursos del Mar, Centro de Investigación y de Estudios Avanzados del Instituto Politécnico Nacional-Unidad Mérida, Km 6 Antigua Carretera a Progreso, CORDEMEX, CP 97310, Mérida, Yucatán, Mexico.
Universidad del Mar, Campus Puerto Ángel, Oaxaca, CP 70902, San Pedro Pochutla, Puerto Ángel, Mexico.
Environ Sci Pollut Res Int. 2021 Jul;28(26):34309-34327. doi: 10.1007/s11356-021-12909-7. Epub 2021 Mar 1.
Crude oil is one of the most widespread pollutants released into the marine environment, and native species have provided useful information about the effect of crude oil pollution in marine ecosystems. We consider that the lined sole Achirus lineatus can be a useful monitor of the effect of crude oil in the Gulf of Mexico (GoM) because this flounder species has a wide distribution along the GoM, and its response to oil components is relevant. The objective of this study was to compare the transcriptomic changes in liver and gill of adults lined sole fish (Achirus lineatus) exposed to a sublethal acute concentration of water-accommodated fraction (WAF) of light crude oil for 48 h. RNA-Seq was performed to assess the transcriptional changes in both organs. A total of 1073 differentially expressed genes (DEGs) were detected in gills; 662 (61.69%) were upregulated, and 411 (38.30%) were downregulated whereas in liver, 515 DEGs; 306 (59.42%) were upregulated, and 209 (40.58%) were downregulated. Xenobiotic metabolism and redox metabolism, along with DNA repair mechanisms, were activated. The induction of hypoxia-regulated genes and the generalized regulation of multiple signaling pathways support the hypothesis that WAF exposition causes a hypoxia-like condition.
原油是释放到海洋环境中的最广泛的污染物之一,本地物种为了解原油污染对海洋生态系统的影响提供了有用的信息。我们认为,细纹连鳍䲗(Achirus lineatus)可以作为墨西哥湾(GoM)原油影响的有用监测器,因为这种比目鱼种类在 GoM 分布广泛,并且其对油成分的反应是相关的。本研究的目的是比较暴露于低致死急性浓度水可溶部分(WAF)的轻原油 48 小时后,成年细纹连鳍䲗(Achirus lineatus)的肝脏和鳃转录组变化。进行 RNA-Seq 以评估两个器官的转录变化。在鳃中检测到 1073 个差异表达基因(DEG);662 个(61.69%)上调,411 个(38.30%)下调,而在肝脏中,515 个 DEG;306 个(59.42%)上调,209 个(40.58%)下调。外源物质代谢和氧化还原代谢以及 DNA 修复机制被激活。缺氧调节基因的诱导和多种信号通路的普遍调控支持了 WAF 暴露会导致类似缺氧的条件的假说。