Metabolomic alterations and oxidative stress are associated with environmental pollution in Procambarus clarkii

被引:36
作者
Fernandez-Cisnal, Ricardo [1 ]
Garcia-Sevillano, Miguel A. [2 ]
Garcia-Barrera, Tamara [2 ]
Gomez-Ariza, Jose L. [2 ]
Abril, Nieves [1 ]
机构
[1] Univ Cordoba, Campus Excelencia Int Agroalimentario CeiA3, Dept Bioquim & Biol Mol, Campus Rabanales,Edificio Severo Ochoa, E-14071 Cordoba, Spain
[2] Univ Huelva, Ctr Invest Recursos Nat Salud & Medioambiente REN, Campus Excelencia Int Agroalimentario CeiA3, Dept Quim,Fac Ciencias Expt, Avda Fuerzas Armadas S-N, E-21071 Huelva, Spain
关键词
Red swamp crayfish; Metals; Digestive gland; Gills; Metabolome; Protein carbonylation; Biomarkers; Environmental monitoring; MOUSE MUS-SPRETUS; HEAVY-METAL POLLUTION; FREE AMINO-ACIDS; NATIONAL-PARK; ANTIOXIDANT PROPERTIES; MITOCHONDRIAL DYSFUNCTION; BIOLOGICAL RESPONSE; LIPID-PEROXIDATION; CRAYFISH; CARNOSINE;
D O I
10.1016/j.aquatox.2018.10.005
中图分类号
Q17 [水生生物学];
学科分类号
071004 ;
摘要
Soils contaminated by toxic metallic elements from agricultural activities raise grave concern about their potential risk to human health through direct intake, bioaccumulation through the food chain, and their impacts on ecological systems. We have measured here the lipid and protein oxidation status and used metabolomic methodologies to identify and characterize the changes caused by metal pollution exposure in the digestive glands and gills of Procambarus clarkii, the red swamp crayfish. Specimens captured at two sites with intensive agriculture practices using diverse types of agrochemicals, located in the borders of Donana Natural Park, were compared to ones caught in the core of the Park, a proven non-polluted place. As a highly metabolically active organ, the digestive gland accumulated more metallic elements than the gills and was consequently more affected at the metabolic level. Results also indicate that chronic pollution exposure generates oxidative stress and mitochondrial dysfunction that imposes a metabolic shift to enhanced aerobic glycolysis and lipid metabolism alteration. The integration of metabolomics with previous proteomic data gives a comprehensive vision of the metabolic disorders caused by chronic metal exposure to P. clarkii and identifies potential biomarkers useful for routine risk assessment of the aquatic ecosystems health.
引用
收藏
页码:76 / 88
页数:13
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