A multivariate biomarker-based model predicting population-level responses of Daphnia magna
- 1 September 2003
- journal article
- website
- Published by Oxford University Press (OUP) in Environmental Toxicology and Chemistry
- Vol. 22 (9) , 2195-2201
- https://doi.org/10.1897/02-223
Abstract
A multivariate model is proposed relating short-term biomarker measurements in Daphnia magna to chronic effects (21-d exposure) occurring at the population level (time to death, mean brood size, mean total young per female, intrinsic rate of natural increase, net reproductive rate, and growth). The results of the short-term exposure (48h-96 h) to eight model toxicants (cadmium, chromium, mercury, tributyl tin, linear alkylsulfonic acid, sodium pentachlorophenolate, lindane, and 2,4-dichloro-phenoxyacetic acid) on the following biomarkers were used for the multivariate model: digestive enzymes (amylase, cellulase, β-galactosidase, trypsin, and esterase), enzymes of the intermediary metabolism (glycogen phosphorylase, glucose-6-phosphate de-hydrogenase, pyruvate kinase, lactate dehydrogenase, and isocitrate dehydrogenase), cellular energy allocation (CEA) (protein, carbohydrate, and lipid content and electron transport activity), and DNA damage and antioxidative stress activity. Using partial least squares to latent structures (PLS), a two-component model was obtained with R2 of 0.68 and a Q2 value of 0.60 based on the combined analysis of a limited number of the 48- and 96-h biomarker responses. For the individual population-level responses, the R2 values varied from 0.66 to 0.77 and the Q2 values from 0.52 to 0.69. Energy-related biomarkers (cellular energy allocation, lipid contents, anaerobic metabolic activity—pyruvate kinase, and lactate dehydrogenase), combined with parameters related to oxidative stress (catalase) and DNA damage measured after 48 and 96 h of exposure, were able to predict long-term effects at higher levels of biological organization.Keywords
This publication has 20 references indexed in Scilit:
- The Use of Biomarkers in Daphnia magna Toxicity Testing V. In Vivo Alterations in the Carbohydrate Metabolism of Daphnia magna Exposed to Sublethal Concentrations of Mercury and LindaneEcotoxicology and Environmental Safety, 2001
- Multivariate analysis of aquatic toxicity data with PLSAquatic Sciences, 1995
- Antioxidants and disease preventionMolecular Aspects of Medicine, 1994
- Structure-activity relationships for unsaturated dialdehydes 7. The membrane toxicity of 15 sesquiterpenoids measured as the induction of ATP leakage in ELD cells. The correlation of the activity with structural descriptors by the multivariate PLS methodToxicology in Vitro, 1993
- Some macromolecular abnormalities developed by the interaction of malathion and permethrin and subsequent refeeding in Tribolium castaneum larvaeArchives of Insect Biochemistry and Physiology, 1989
- In vivo sub-acute physiological stress induced by Sumithion on some aspects of oxidative metabolism in the fresh water crabWater, Air, & Soil Pollution, 1984
- Responses of Mytilus edulis on exposure to the water-accommodated fraction of North Sea oilMarine Biology, 1982
- Effects of the “Amoco Cadiz” oil spill on zooplanktonHelgoland Marine Research, 1980
- α-Tocopherol increases lifespan in the rotifer PhilodinaExperimental Gerontology, 1980
- Modèle de détection rapide des effets sublétaux des polluants: Modification des taux d'amylase et de trypsine d'Artemia salina contaminées par le cuivre ou le zincMarine Biology, 1979