Transcriptional response of yellow perch to changes in ambient metal concentrations-A reciprocal field transplantation experiment.
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[1] P. Couture,et al. Using Perca as Biomonitors in Ecotoxicological Studies , 2015 .
[2] D. Crawford,et al. Phenotypic plasticity in gene expression contributes to divergence of locally adapted populations of Fundulus heteroclitus , 2015, Molecular ecology.
[3] L. Bernatchez,et al. Transcriptional and biochemical markers in transplanted Perca flavescens to characterize cadmium- and copper-induced oxidative stress in the field. , 2015, Aquatic toxicology.
[4] R. Tauler,et al. Transcriptomic, biochemical and individual markers in transplanted Daphnia magna to characterize impacts in the field. , 2015, The Science of the total environment.
[5] M. Auffret,et al. A selection of reference genes and early-warning mRNA biomarkers for environmental monitoring using Mytilus spp. as sentinel species. , 2014, Marine pollution bulletin.
[6] F. Yu,et al. Correlation of gene expression and contaminant concentrations in wild largescale suckers: a field-based study. , 2014, The Science of the total environment.
[7] J. Pourahmad,et al. Toxicity of Copper on Isolated Liver Mitochondria: Impairment at Complexes I, II, and IV Leads to Increased ROS Production , 2014, Cell Biochemistry and Biophysics.
[8] G. Ankley,et al. Transcriptomic effects-based monitoring for endocrine active chemicals: assessing relative contribution of treated wastewater to downstream pollution. , 2014, Environmental science & technology.
[9] L. Bernatchez,et al. How does exposure to nickel and cadmium affect the transcriptome of yellow perch (Perca flavescens)--results from a 1000 candidate-gene microarray. , 2013, Aquatic toxicology.
[10] R. Aerle,et al. Global Transcriptome Profiling Reveals Molecular Mechanisms of Metal Tolerance in a Chronically Exposed Wild Population of Brown Trout , 2013, Environmental science & technology.
[11] L. Bernatchez,et al. Evolutionary change driven by metal exposure as revealed by coding SNP genome scan in wild yellow perch (Perca flavescens) , 2013, Ecotoxicology.
[12] E. Nielsen,et al. Tissue specific haemoglobin gene expression suggests adaptation to local marine conditions in North Sea flounder (Platichthys flesus L.) , 2013, Genes & Genomics.
[13] E. Gazzano,et al. The pentose phosphate pathway: an antioxidant defense and a crossroad in tumor cell fate. , 2012, Free radical biology & medicine.
[14] M. Servos,et al. Temporal changes in stress and tissue-specific metabolic responses to municipal wastewater effluent exposure in rainbow trout. , 2012, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[15] A. Whitehead. Comparative genomics in ecological physiology: toward a more nuanced understanding of acclimation and adaptation , 2012, Journal of Experimental Biology.
[16] N. Denslow,et al. Taking microarrays to the field: differential hepatic gene expression of caged fathead minnows from Nebraska watersheds. , 2012, Environmental science & technology.
[17] P. Olsvik,et al. Differences in Salinity Tolerance and Gene Expression Between Two Populations of Atlantic Cod (Gadus morhua) in Response to Salinity Stress , 2011, Biochemical Genetics.
[18] L. Tort. Stress and immune modulation in fish. , 2011, Developmental and comparative immunology.
[19] A. Arukwe,et al. Molecular and biochemical biomarkers in environmental monitoring: a comparison of biotransformation and antioxidant defense systems in multiple tissues. , 2011, Aquatic toxicology.
[20] A. Whitehead,et al. Functional genomics of physiological plasticity and local adaptation in killifish. , 2011, The Journal of heredity.
[21] L. Bernatchez,et al. Effects of chronic metal exposure on wild fish populations revealed by high-throughput cDNA sequencing , 2011, Ecotoxicology.
[22] A. Whitehead,et al. Genomic mechanisms of evolved physiological plasticity in killifish distributed along an environmental salinity gradient , 2011, Proceedings of the National Academy of Sciences.
[23] C. Cassa,et al. Automated validation of genetic variants from large databases: ensuring that variant references refer to the same genomic locations , 2011, Bioinform..
[24] Nancy D Denslow,et al. Behavioral and genomic impacts of a wastewater effluent on the fathead minnow. , 2011, Aquatic toxicology.
[25] D. Houlihan,et al. Starvation alters the liver transcriptome of the innate immune response in Atlantic salmon (Salmo salar) , 2010, BMC Genomics.
[26] Subash C. Gupta,et al. Heat shock proteins in toxicology: how close and how far? , 2010, Life sciences.
[27] L. Bernatchez,et al. Transcriptional responses to environmental metal exposure in wild yellow perch (Perca flavescens) collected in lakes with differing environmental metal concentrations (Cd, Cu, Ni) , 2009, Ecotoxicology.
[28] Linda Greensmith,et al. Induction of heat shock proteins for protection against oxidative stress. , 2009, Advanced drug delivery reviews.
[29] Hong-Seog Park,et al. Effects of heavy metals on antioxidants and stress-responsive gene expression in Javanese medaka (Oryzias javanicus). , 2009, Comparative biochemistry and physiology. Toxicology & pharmacology : CBP.
[30] P. Couture,et al. Physiological correlates of growth and condition in the yellow perch (Perca flavescens). , 2008, Comparative biochemistry and physiology. Part A, Molecular & integrative physiology.
[31] G. Murdoch,et al. Effect of starvation on transcriptomes of brain and liver in adult female zebrafish (Danio rerio). , 2008, Physiological genomics.
[32] Volker Loeschcke,et al. Intraspecific variation in expression of candidate genes for osmoregulation, heme biosynthesis and stress resistance suggests local adaptation in European flounder (Platichthys flesus) , 2008, Heredity.
[33] J. Hutchings,et al. Potential for anthropogenic disturbances to influence evolutionary change in the life history of a threatened salmonid , 2008, Evolutionary applications.
[34] Peter G. C. Campbell,et al. Subcellular Distribution of Cadmium and Nickel in Chronically Exposed Wild Fish: Inferences Regarding Metal Detoxification Strategies and Implications for Setting Water Quality Guidelines for Dissolved Metals , 2008 .
[35] L. Bernatchez,et al. Evolutionary ecotoxicology of wild yellow perch (Perca flavescens) populations chronically exposed to a polymetallic gradient. , 2008, Aquatic toxicology.
[36] P. Couture,et al. Live Fast and Die Young: Metal Effects on Condition and Physiology of Wild Yellow Perch from along Two Metal Contamination Gradients , 2008 .
[37] P. Couture,et al. Seasonal and Regional Variations of Metal Contamination and Condition Indicators in Yellow Perch (Perca flavescens) along Two Polymetallic Gradients. I. Factors Influencing Tissue Metal Concentrations , 2008 .
[38] B. Piña,et al. Analysis of gene expression as a new tool in ecotoxicology and environmental monitoring , 2007 .
[39] J. Yao,et al. Effect of starvation on global gene expression and proteolysis in rainbow trout (Oncorhynchus mykiss) , 2007, BMC Genomics.
[40] S. Wiseman,et al. Gene expression pattern in the liver during recovery from an acute stressor in rainbow trout. , 2007, Comparative biochemistry and physiology. Part D, Genomics & proteomics.
[41] David N. Reznick,et al. Adaptive versus non‐adaptive phenotypic plasticity and the potential for contemporary adaptation in new environments , 2007 .
[42] D. Barceló,et al. Environmental monitoring by gene expression biomarkers in Barbus graellsii: laboratory and field studies. , 2007, Chemosphere.
[43] P. Schulte. Responses to environmental stressors in an estuarine fish: Interacting stressors and the impacts of local adaptation , 2007 .
[44] J. Smol,et al. Paleolimnological reconstructions of Rouyn-Noranda lakes within the zone of influence of the Horne Smelter, Québec, Canada , 2007 .
[45] L. Moens,et al. Patterns of gene expression in carp liver after exposure to a mixture of waterborne and dietary cadmium using a custom-made microarray. , 2006, Aquatic toxicology.
[46] Xi-Ping Huang,et al. Mitochondrial involvement in genetically determined transition metal toxicity I. Iron toxicity. , 2006, Chemico-biological interactions.
[47] Ana Conesa,et al. Development of the GENIPOL European flounder (Platichthys flesus) microarray and determination of temporal transcriptional responses to cadmium at low dose. , 2006, Environmental science & technology.
[48] Christa M. Woodley,et al. Stress-associated impacts of short-term holding on fishes , 2006, Reviews in Fish Biology and Fisheries.
[49] G. Bonham-Carter,et al. Comparison of metal distributions in snow, peat, lakes and humus around a Cu smelter in western Québec, Canada , 2006, Geochemistry: Exploration, Environment, Analysis.
[50] J. Chipman,et al. Oxidative stress response of European flounder (Platichthys flesus) to cadmium determined by a custom cDNA microarray. , 2006, Marine environmental research.
[51] P. Couture,et al. Sub-cellular partitioning of cadmium, copper, nickel and zinc in indigenous yellow perch (Perca flavescens) sampled along a polymetallic gradient. , 2006, Aquatic toxicology.
[52] W. Clements,et al. Gene expression in caged fish as a first‐tier indicator of contaminant exposure in streams , 2005, Environmental toxicology and chemistry.
[53] S. Courtenay,et al. Co-exposure to metals modulates CYP1A mRNA inducibility in Atlantic tomcod Microgadus tomcod from two populations. , 2005, Aquatic toxicology.
[54] P. Campbell,et al. Dynamics of Cd, Cu and Zn accumulation in organs and sub-cellular fractions in field transplanted juvenile yellow perch (Perca flavescens). , 2005, Environmental pollution.
[55] P. Campbell,et al. A field study examining metal elimination kinetics in juvenile yellow perch (Perca flavescens). , 2005, Aquatic toxicology.
[56] J. G. Scandalios. Oxidative stress: molecular perception and transduction of signals triggering antioxidant gene defenses. , 2005, Brazilian journal of medical and biological research = Revista brasileira de pesquisas medicas e biologicas.
[57] C. Cossu-Leguille,et al. Metal bioaccumulation and oxidative stress in yellow perch (Perca flavescens) collected from eight lakes along a metal contamination gradient (Cd, Cu, Zn, Ni) , 2005 .
[58] Peter G. C. Campbell,et al. Influence of lake chemistry and fish age on cadmium, copper, and zinc concentrations in various organs of indigenous yellow perch (Perca flavescens) , 2004 .
[59] A. C. Santos,et al. A proposed sequence of events for cadmium-induced mitochondrial impairment. , 2003, Journal of inorganic biochemistry.
[60] I. Reynolds,et al. Zinc inhibition of cellular energy production: implications for mitochondria and neurodegeneration , 2003, Journal of neurochemistry.
[61] P. Couture,et al. Morphometric and metabolic indicators of metal stress in wild yellow perch (Perca flavescens) from Sudbury, Ontario: a review. , 2003, Journal of environmental monitoring : JEM.
[62] P. Campbell,et al. Seasonal variation in carbohydrate and lipid metabolism of yellow perch (Perca flavescens) chronically exposed to metals in the field. , 2002, Aquatic toxicology.
[63] B. Barton. Stress in Fishes: A Diversity of Responses with Particular Reference to Changes in Circulating Corticosteroids1 , 2002, Integrative and comparative biology.
[64] R. Barouki,et al. Repression of cytochrome P450 1A1 gene expression by oxidative stress: mechanisms and biological implications. , 2001, Biochemical pharmacology.
[65] Y. Couillard,et al. Interrenal metallothionein and cortisol secretion in relation to Cd, Cu, and Zn exposure in yellow perch, Perca flavescens, from Abitibi lakes , 2000 .
[66] J. Lloret,et al. Condition of cod (Gadus morhua) off Greenland during 1982–1998 , 2000 .
[67] T. W. Moon,et al. Cortisol in teleosts: dynamics, mechanisms of action, and metabolic regulation , 1999, Reviews in Fish Biology and Fisheries.
[68] J. Zelikoff,et al. Immunotoxicity of low level cadmium exposure in fish: an alternative animal model for immunotoxicological studies. , 1995, Journal of toxicology and environmental health.
[69] J. Fagan,et al. Down-regulation of P4501A1 and P4501A2 mRNA expression in isolated hepatocytes by oxidative stress. , 1994, The Journal of biological chemistry.
[70] R. Kletzien,et al. Glucose‐6‐phosphate dehydrogenase: a “housekeeping” enzyme subject to tissue‐specific regulation by hormones, nutrients, and oxidant stress , 1994, FASEB journal : official publication of the Federation of American Societies for Experimental Biology.
[71] F. Kibenge,et al. Modulation of cadmium-induced mitochondrial dysfunction and volume changes by temperature in rainbow trout (Oncorhynchus mykiss). , 2015, Aquatic toxicology.
[72] Y. Couillard,et al. Determination of Free Cd, Cu and Zn Concentrations in Lake Waters by In Situ Diffusion Followed by Column Equilibration Ion-exchange , 2010 .
[73] X. Cui,et al. Improved statistical tests for differential gene expression by shrinking variance components estimates. , 2005, Biostatistics.
[74] Pierre R. Bushel,et al. STATISTICAL ANALYSIS OF A GENE EXPRESSION MICROARRAY EXPERIMENT WITH REPLICATION , 2002 .
[75] Pierre R. Bushel,et al. Assessing Gene Significance from cDNA Microarray Expression Data via Mixed Models , 2001, J. Comput. Biol..
[76] Gary A. Churchill,et al. Analysis of Variance for Gene Expression Microarray Data , 2000, J. Comput. Biol..
[77] S. Lindquist,et al. The function of heat-shock proteins in stress tolerance: degradation and reactivation of damaged proteins. , 1993, Annual review of genetics.
[78] J. Zelikoff. Metal pollution-induced immunomodulation in fish , 1993 .