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定量转录组学和脂质组学评估在海洋废弃物处理场围网养殖的大西洋鳕鱼(Gadus morhua)卵巢发育效应

Quantitative transcriptomics, and lipidomics in evaluating ovarian developmental effects in Atlantic cod (Gadus morhua) caged at a capped marine waste disposal site.

机构信息

Department of Biology, Norwegian University of Science and Technology (NTNU), N-7491, Trondheim, Norway.

Computational Biology Unit, Department of Informatics, University of Bergen, N-5008, Bergen, Norway.

出版信息

Environ Res. 2020 Oct;189:109906. doi: 10.1016/j.envres.2020.109906. Epub 2020 Jul 12.

Abstract

In the present study, a previously capped waste disposal site at Kollevåg (Norway) was selected to study the effects of contaminant leakage on biomarkers associated with Atlantic cod (Gadus morhua) reproductive endocrinology and development. Immature cod were caged for 6 weeks at 3 locations, selected to achieve a spatial gradient of contamination, and compared to a reference station. Quantitative transcriptomic, and lipidomic analysis was used to evaluate the effects of the potential complex contaminant mixture on ovarian developmental and endocrine physiology. The number of expressed transcripts, with 0.75 log2-fold differential expression or more, varied among stations and paralleled the severity of contamination. Particularly, significant bioaccumulation of ∑PCB-7, ∑DDTs and ∑PBDEs were observed at station 1, compared to the other station, including the reference station. Respectively 1416, 698 and 719 differentially expressed genes (DEGs), were observed at stations 1, 2 and 3, compared to the reference station, with transcripts belonging to steroid hormone synthesis pathway being significantly upregulation. Transcription factors such as esr2 and ahr2 were increased at all three stations, with highest fold-change at Station 1. MetaCore pathway maps identified affected pathways that are involved in ovarian physiology, where some unique pathways were significantly affected at each station. For the lipidomics, sphingolipid metabolism was particularly affected at station 1, and these effects paralleled the high contaminant burden at this station. Overall, our findings showed a novel and direct association between contaminant burden and ovarian toxicological and endocrine physiological responses in cod caged at the capped Kollevåg waste disposal site.

摘要

在本研究中,选择了挪威科勒瓦格(Kollevåg)的一个先前有盖的废物处置场,以研究污染物泄漏对与大西洋鳕鱼(Gadus morhua)生殖内分泌和发育相关的生物标志物的影响。将未成熟的鳕鱼在 3 个地点的笼子中饲养了 6 周,以实现污染的空间梯度,并与参考站进行比较。使用定量转录组学和脂质组学分析来评估潜在的复杂污染物混合物对卵巢发育和内分泌生理学的影响。表达转录本的数量,差异表达 0.75 log2 倍或更多,因地点而异,与污染的严重程度平行。特别是,在第 1 站观察到∑PCB-7、∑DDTs 和∑PBDEs 的生物蓄积量显著增加,与其他站相比,包括参考站。与参考站相比,在第 1、2 和 3 站分别观察到 1416、698 和 719 个差异表达基因(DEGs),属于类固醇激素合成途径的转录本显著上调。在所有三个站,esr2 和 ahr2 等转录因子都增加了,在第 1 站的倍数变化最大。MetaCore 途径图确定了受影响的途径,这些途径涉及卵巢生理学,其中一些独特的途径在每个站都受到显著影响。对于脂质组学,鞘脂代谢在第 1 站受到特别影响,这些影响与该站的高污染物负荷平行。总的来说,我们的研究结果表明,在被圈养在有盖的科勒瓦格废物处置场的鳕鱼中,污染物负荷与卵巢毒理学和内分泌生理反应之间存在新的直接关联。

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