Keyword search (4,163 papers available)

"Contaminant" Keyword-tagged Publications:

Title Authors PubMed ID
1 Development of an evaporation-driven sampling system for the in situ long-term monitoring of heavy metals in surface water Li X; Ma H; Shi S; Tian X; Nie L; Han X; Sun J; Chen Z; Li J; Chen K; 41886856
ENCS
2 Towards smart PFAS management: Integrating artificial intelligence in water and wastewater systems Yaghoobian S; An J; Jeong DW; Hwang JH; 41483514
ENCS
3 Intraspecific complexity in mercury contamination of two harvested fishes revealed by genetics: Food security and conservation implications Gibelli J; Michaelides S; Won H; Chamlian B; Bampfylde C; Maclean B; Giroux P; Gray QZ; Voyageur M; Jeon HB; Bouchard R; Fraser DJ; 41380599
BIOLOGY
4 First report of synthetic antioxidants in baby wipes: Insights into occurrence, sources, and infant exposure Wang X; Liu W; Wang J; Johannessen C; Zhang X; Xia K; Wu X; Liu Q; 41259909
CHEMBIOCHEM
5 Mapping the distribution of contaminants identified by non-targeted screening of passively sampled urban air Liu L; Gillet AP; Akiki C; Tian L; Ma Y; Zhang X; Bowman DT; Wania F; Delbès G; Apparicio P; Bayen S; 41033295
CHEMBIOCHEM
6 Unraveling glyphosate sequestration: The role of natural organic matter fractions in soil-water contamination and retention Adeola AO; Paramo L; Duarte MP; Fuoco G; Naccache R; 40939356
CHEMBIOCHEM
7 Elucidating the size distribution of p‑Phenylenediamine-Derived quinones in atmospheric particles Xia K; Qin M; Han M; Zhang X; Wu X; Liu M; Liu S; Wang X; Liu W; Xie Z; Yuan R; Liu Q; 39978217
CHEMBIOCHEM
8 Emerging hazardous chemicals and biological pollutants in Canadian aquatic systems and remediation approaches: A comprehensive status report Adeola AO; Paramo L; Fuoco G; Naccache R; 39278485
CHEMBIOCHEM
9 Efficient Decaffeination with Recyclable Magnetic Microporous Carbon from Renewable Sources: Kinetics and Isotherm Analysis Duarte MP; Adeola AO; Fuoco G; Jargaille TJ; Naccache R; 38909946
CHEMBIOCHEM
10 From wastewater to clean water: Recent advances on the removal of metronidazole, ciprofloxacin, and sulfamethoxazole antibiotics from water through adsorption and advanced oxidation processes (AOPs) Gahrouei AE; Vakili S; Zandifar A; Pourebrahimi S; 38685299
ENCS
11 Towards a better understanding of deep convolutional neural network processes for recognizing organic chemicals of environmental concern Sun X; Zhang X; Wang L; Li Y; Muir DCG; Zeng EY; 34388923
CHEMBIOCHEM
12 Worldwide contamination of food-crops with mycotoxins: Validity of the widely cited 'FAO estimate' of 25. Eskola M, Kos G, Elliott CT, Hajšlová J, Mayar S, Krska R 31478403
CHEMBIOCHEM

 

Title:Intraspecific complexity in mercury contamination of two harvested fishes revealed by genetics: Food security and conservation implications
Authors:Gibelli JMichaelides SWon HChamlian BBampfylde CMaclean BGiroux PGray QZVoyageur MJeon HBBouchard RFraser DJ
Link:https://pubmed.ncbi.nlm.nih.gov/41380599/
DOI:10.1016/j.scitotenv.2025.181133
Publication:The Science of the total environment
Keywords:ContaminantFood securityGenetic stock identificationMercuryMixed-stock harvestNorthern fisheries
PMID:41380599 Category: Date Added:2025-12-12
Dept Affiliation: BIOLOGY
1 Department of Biology, Concordia University, 7141 Sherbrooke St. West, Montreal, QC, H4B 1R6, Canada. Electronic address: julie.gibelli@umontreal.ca.
2 Department of Biology, Concordia University, 7141 Sherbrooke St. West, Montreal, QC, H4B 1R6, Canada.
3 Honam National Institute Biological Resources, 99 Gohadoan-gil, Mokpo, 58762, Republic of Korea.
4 Nipîy Tu Research and Knowledge Centre, Fort Chipewyan, AB, T0P 1B0, Canada.
5 Parks Canada, Office of the Chief Ecosystem Scientist, Protected Areas Establishment and Conservation, 30 rue Victoria, Gatineau, QC, K1A 0M6, Canada.
6 Parks Canada, Wood Buffalo National Park, 149 McDougal Road, Fort Smith, NT, X0E 0P0, Canada.
7 Dené Lands and Resource Management, Athabasca, ,Chipewyan First Nation. Box 366, Fort Chipewyan, T0P 1B0, Canada.
8 National Institute of Biological Resources, 42 Hwangyeong-ro, Seo-gu, Incheon, 22689, Republic of Korea.
9 Institut de biologie intégrative et des systèmes, Université Laval, Pavillon Charles-Eugène-Marchand, 1030, avenue de la Médecine, Québec, QC, G1V 0A6, Canada.

Description:

Contaminants in harvested species can pose serious concerns for health and food security. However, the risks of contaminant exposure can be challenging to track as many species migrate extensively between breeding and feeding environments and usually form genetically distinct populations. Such intraspecific complexity may translate into variation in exposure and bioaccumulation. We firstly investigated the genetic structure and the mixed-stock fishery origin of migratory Walleye (Sander vitreus) and Lake Whitefish (Coregonus clupeaformis) samples harvested from western Lake Athabasca and the Peace-Athabasca Delta (Alberta, Canada), using species-specific panels of single nucleotide polymorphisms (SNPs; n = 211-357 loci). We then explored which variables impacted mercury concentration in fish muscle tissue, including breeding (distinct populations) and feeding environments (fishery capture location). We identified two genetically distinct populations in each species whose harvest proportions differed between the lake and delta. In both species, the population spawning in the river upstream of, and migrating through the Alberta Oil Sands was exposed to higher mercury levels. In Walleye, this translated into 65 % more mercury than in the second population, with 43 % of individuals exceeding Health Canada recommended levels for human consumption. In Whitefish, river spawners, which were much younger and contributed more the harvest, had higher mercury concentrations than lake spawners when controlling for age. We also found different relationships between mercury and individual heterozygosity or body condition among populations. Collectively, our results reveal varying mercury loads at the population level in two fishes with widespread importance for fisheries, highlighting the utility of genetic-based monitoring to better understand contaminants.





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