Basal levels of enzymatic biomarkers and energy reserves in Porcellionides pruinosus

In the last decades biomarkers have been widely used for the assessment of effects and/or exposure to environmental contaminants, but to our knowledge few data has been published for isopod species. Along with biomarkers the quantification of energy reserves has also been used to evaluate organisms’...

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Published inSoil biology & biochemistry Vol. 42; no. 12; pp. 2128 - 2136
Main Authors Ferreira, Nuno G.C., Santos, Miguel J.G., Domingues, Inês, Calhôa, Carla F., Monteiro, Marta, Amorim, Mónica J.B., Soares, Amadeu M.V.M., Loureiro, Susana
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LanguageEnglish
Published Amsterdam Elsevier Ltd 01.12.2010
Elsevier
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Abstract In the last decades biomarkers have been widely used for the assessment of effects and/or exposure to environmental contaminants, but to our knowledge few data has been published for isopod species. Along with biomarkers the quantification of energy reserves has also been used to evaluate organisms’ energetic budget. Enzymatic biomarkers can also be useful to understand chemicals/stress modes of action. The aim of this study was to obtain information on biomarker basal level activities and energy contents of the isopod Porcellionides pruinosus as little information is available. Results can then be used as foundations for other ecotoxicological or biomonitorization studies and also as control values for evaluating isopod status in laboratory cultures. The cholinesterase (ChE) type of the isopod P. pruinosus was characterized using three substrates (acetylthiocholine iodide, propionylthiocholine iodide, and S-butyrylthiocholine iodide) and three ChE inhibitors (eserine hemisulfate, tetraisopropyl pyrophosphoramide (iso-OMPA) and 1,5-bis(4-allyldimethyl-ammonimphenyl) pentan-3-one dibromide (BW284C51)]. The results showed that this organism has only one cholinesterase form, the acetylcholinesterase with a mean basal level of 113.6 ± 4.7 U/mg protein. Other biomarkers related to oxidative stress or metabolism were assessed, showing activity ranges of 3.0 ± 1.1 U/mg protein for lactate dehydrogenase (LDH), 6.1 ± 1.1 U/mg protein for catalase (CAT), 2.7 ± 1.1 U/mg protein for glutathione peroxidase (GPx), 34.6 ± 4.7 nmol/mg ww for lipid peroxidation (LPO) and 137.8 ± 7.1 U/mg protein for glutathione S-transferases (GST) (mean ± st. error). The carbohydrates and protein contents were 12290.8 ± 56.4 J/mg organism (org) and 22905 ± 57.5 J/mg org, respectively (mean ± st. error). The mean lipid content was 503.1 ± 12.7 J/mg org. Our results were compared to other previous works with isopod species but also with other species, showing high levels of inter and intraspecific variability. Even tough this study can contribute as foundations for other studies as ChE characterization, optimization of homogenization procedures and basal levels for biomarker activity and energy reserves were described. ► Terrestrial isopods have as choline receptor the enzyme Achetylcholinesterase. ► Knowledge of isopod biomarkers basal levels are crucial for ecotoxicological studies. ► Biomarker levels can be used as useful tools to evaluate the health status of isopods.
AbstractList In the last decades biomarkers have been widely used for the assessment of effects and/or exposure to environmental contaminants, but to our knowledge few data has been published for isopod species. Along with biomarkers the quantification of energy reserves has also been used to evaluate organisms' energetic budget. Enzymatic biomarkers can also be useful to understand chemicals/stress modes of action. The aim of this study was to obtain information on biomarker basal level activities and energy contents of the isopod Porcellionides pruinosus as little information is available. Results can then be used as foundations for other ecotoxicological or biomonitorization studies and also as control values for evaluating isopod status in laboratory cultures. The cholinesterase (ChE) type of the isopod P. pruinosus was characterized using three substrates (acetylthiocholine iodide, propionylthiocholine iodide, and S-butyrylthiocholine iodide) and three ChE inhibitors (eserine hemisulfate, tetraisopropyl pyrophosphoramide (iso-OMPA) and 1,5-bis(4-allyldimethyl-ammonimphenyl) pentan-3-one dibromide (BW284C51)]. The results showed that this organism has only one cholinesterase form, the acetylcholinesterase with a mean basal level of 113.6 ± 4.7 U/mg protein. Other biomarkers related to oxidative stress or metabolism were assessed, showing activity ranges of 3.0 ± 1.1 U/mg protein for lactate dehydrogenase (LDH), 6.1 ± 1.1 U/mg protein for catalase (CAT), 2.7 ± 1.1 U/mg protein for glutathione peroxidase (GPx), 34.6 ± 4.7 nmol/mg ww for lipid peroxidation (LPO) and 137.8 ± 7.1 U/mg protein for glutathione S-transferases (GST) (mean ± st. error). The carbohydrates and protein contents were 12290.8 ± 56.4 J/mg organism (org) and 22905 ± 57.5 J/mg org, respectively (mean ± st. error). The mean lipid content was 503.1 ± 12.7 J/mg org. Our results were compared to other previous works with isopod species but also with other species, showing high levels of inter and intraspecific variability. Even tough this study can contribute as foundations for other studies as ChE characterization, optimization of homogenization procedures and basal levels for biomarker activity and energy reserves were described.
In the last decades biomarkers have been widely used for the assessment of effects and/or exposure to environmental contaminants, but to our knowledge few data has been published for isopod species. Along with biomarkers the quantification of energy reserves has also been used to evaluate organisms’ energetic budget. Enzymatic biomarkers can also be useful to understand chemicals/stress modes of action. The aim of this study was to obtain information on biomarker basal level activities and energy contents of the isopod Porcellionides pruinosus as little information is available. Results can then be used as foundations for other ecotoxicological or biomonitorization studies and also as control values for evaluating isopod status in laboratory cultures. The cholinesterase (ChE) type of the isopod P. pruinosus was characterized using three substrates (acetylthiocholine iodide, propionylthiocholine iodide, and S-butyrylthiocholine iodide) and three ChE inhibitors (eserine hemisulfate, tetraisopropyl pyrophosphoramide (iso-OMPA) and 1,5-bis(4-allyldimethyl-ammonimphenyl) pentan-3-one dibromide (BW284C51)]. The results showed that this organism has only one cholinesterase form, the acetylcholinesterase with a mean basal level of 113.6 ± 4.7 U/mg protein. Other biomarkers related to oxidative stress or metabolism were assessed, showing activity ranges of 3.0 ± 1.1 U/mg protein for lactate dehydrogenase (LDH), 6.1 ± 1.1 U/mg protein for catalase (CAT), 2.7 ± 1.1 U/mg protein for glutathione peroxidase (GPx), 34.6 ± 4.7 nmol/mg ww for lipid peroxidation (LPO) and 137.8 ± 7.1 U/mg protein for glutathione S-transferases (GST) (mean ± st. error). The carbohydrates and protein contents were 12290.8 ± 56.4 J/mg organism (org) and 22905 ± 57.5 J/mg org, respectively (mean ± st. error). The mean lipid content was 503.1 ± 12.7 J/mg org. Our results were compared to other previous works with isopod species but also with other species, showing high levels of inter and intraspecific variability. Even tough this study can contribute as foundations for other studies as ChE characterization, optimization of homogenization procedures and basal levels for biomarker activity and energy reserves were described. ► Terrestrial isopods have as choline receptor the enzyme Achetylcholinesterase. ► Knowledge of isopod biomarkers basal levels are crucial for ecotoxicological studies. ► Biomarker levels can be used as useful tools to evaluate the health status of isopods.
In the last decades biomarkers have been widely used for the assessment of effects and/or exposure to environmental contaminants, but to our knowledge few data has been published for isopod species. Along with biomarkers the quantification of energy reserves has also been used to evaluate organisms' energetic budget. Enzymatic biomarkers can also be useful to understand chemicals/stress modes of action. The aim of this study was to obtain information on biomarker basal level activities and energy contents of the isopod Porcellionides pruinosus as little information is available. Results can then be used as foundations for other ecotoxicological or biomonitorization studies and also as control values for evaluating isopod status in laboratory cultures. The cholinesterase (ChE) type of the isopod P. pruinosus was characterized using three substrates (acetylthiocholine iodide, propionylthiocholine iodide, and S-butyrylthiocholine iodide) and three ChE inhibitors (eserine hemisulfate, tetraisopropyl pyrophosphoramide (iso-OMPA) and 1,5-bis(4-allyldimethyl-ammonimphenyl) pentan-3-one dibromide (BW284C51)]. The results showed that this organism has only one cholinesterase form, the acetylcholinesterase with a mean basal level of 113.6 +/- 4.7 U/mg protein. Other biomarkers related to oxidative stress or metabolism were assessed, showing activity ranges of 3.0 +/- 1.1 U/mg protein for lactate dehydrogenase (LDH), 6.1 +/- 1.1 U/mg protein for catalase (CAT), 2.7 +/- 1.1 U/mg protein for glutathione peroxidase (GPx), 34.6 +/- 4.7 nmol/mg ww for lipid peroxidation (LPO) and 137.8 +/- 7.1 U/mg protein for glutathione S-transferases (GST) (mean +/- st. error). The carbohydrates and protein contents were 12290.8 +/- 56.4 J/mg organism (org) and 22905 +/- 57.5 J/mg org, respectively (mean +/- st. error). The mean lipid content was 503.1 +/- 12.7 J/mg org. Our results were compared to other previous works with isopod species but also with other species, showing high levels of inter and intraspecific variability. Even tough this study can contribute as foundations for other studies as ChE characterization, optimization of homogenization procedures and basal levels for biomarker activity and energy reserves were described.
Author Amorim, Mónica J.B.
Santos, Miguel J.G.
Soares, Amadeu M.V.M.
Loureiro, Susana
Domingues, Inês
Monteiro, Marta
Calhôa, Carla F.
Ferreira, Nuno G.C.
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Issue 12
Keywords Biomarkers
Basal levels
Energy reserves
Isopods
Energy metabolism
Enzyme
Biological marker
Crustacea
Isopoda
Arthropoda
Soil science
Invertebrata
Metabolic storage
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Snippet In the last decades biomarkers have been widely used for the assessment of effects and/or exposure to environmental contaminants, but to our knowledge few data...
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SubjectTerms abiotic stress
acetylcholinesterase
Agronomy. Soil science and plant productions
Basal levels
Biochemistry and biology
Biological and medical sciences
Biomarkers
catalase
Chemical, physicochemical, biochemical and biological properties
cholinesterase
cholinesterase inhibitors
ecotoxicology
energy metabolism
Energy reserves
environmental exposure
environmental monitoring
enzyme activity
enzyme substrates
Fundamental and applied biological sciences. Psychology
glutathione peroxidase
glutathione transferase
Isopoda
Isopods
lactate dehydrogenase
lipid content
lipid peroxidation
oxidative stress
Physics, chemistry, biochemistry and biology of agricultural and forest soils
pollutants
Porcellionidae
Porcellionides pruinosus
protein content
reference standards
soil invertebrates
soil pollution
Soil science
Title Basal levels of enzymatic biomarkers and energy reserves in Porcellionides pruinosus
URI https://dx.doi.org/10.1016/j.soilbio.2010.08.008
https://www.proquest.com/docview/857114114
https://www.proquest.com/docview/860371801
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