Chandurvelan R, Marsden ID, Glover CN, Gaw S (2015) Assessment of a
mussel as a metal bioindicator of coastal contamination: relationships between metal bioaccumulation and multiple biomarker responses. Sci Total Environ 511:663–675
Clark RB (1997) Marine pollution, vol 4. Clarendon press, Oxford, p 161
Cooper S, Hare L, Campbell PGC (2010) Subcellular partitioning of
cadmium in the freshwater bivalve, Pyganodon grandis, after separate short-term exposures to waterborne or diet-borne metal. Aquat
Toxicol 100:303–312
Cossa D, Lassus P (1989) Le cadmium en milieu marin : biogeochimie et
ecotoxicologie. Rapports scientifiques et techniques de L’Ifremer,
No. 16. Ifremer, Brest, France
Drif F (2012) Distribution des métaux traces chez les bivalves
(Mollusques) dans le golfe d’Annaba (Nord-est Algérien).thèse
doctorat. Université de Badji Mokhtar Annaba. Algérie, 154
EU, Commission Regulation no 1005/(2015), Official Journal of the
European Union, 25 June 2015, L161
EU, Commission Regulation no 488/(2014), Official Journal of the
European Union, 12 May 2014, L138
Firth DC, Salie K, O'Neill B, Hoffman LC (2019) Monitoring of trace
metal accumulation in two South African farmed mussel species,
Mytilus galloprovincialis and Choromytilus meridionalis. Mar
Pollut Bull 141:529–534
Galgani F, Chiffoleau JF, Barrah M, Drebika U, Tomasino C, Andral B
(2014) Assessment of heavy metal and organic contaminants levels
along the Libyan coast using transplanted mussels (Mytilus
galloprovincialis). Environ Sci Pollut Res 21(19):11331–11339
García-Navarro JA, Franco L, Romero D (2017) Differences in the accumulation and tissue distribution of Pb, Cd and Cu in Mediterranean
mussels (Mytilus galloprovincialis) exposed to single, binary, and
ternary metal mixtures. Environ Sci Pollut Res. https://doi.org/10.
1007/s11356-016-8349-7
Geffard O (2001) Toxicité potentielle des sédiments marins et estuariens
contaminés : evaluation chimique et biologique, biodisponibilité des
contaminants sédimentaires. Thèse de Doctorat. Université de
Bordeaux1, France, 352p
Giarratano E, Gil MN, Malanga G (2011) Seasonal and pollution-induced
variations in biomarkersof transplanted mussels within the Beagle
Channel. Mar Pollut Bull 62:1337–1344
Jebali J, Chouba L, Banni M, Boussetta H (2014) Comparative study of
the bioaccumulation and elimination of trace metals (Cd, Pb, Zn, Mn
and Fe) in the digestive gland , gills and muscle of bivalve Pinna
nobilis during afield transplant experiment. J Trace Elem Med Biol
28:212–217
Jitar O, Teodosiu C, Nicoara M, Plavan G (2013) Study of heavy metal
pollution and bioaccumulation in the black sea living environment.
Environ Eng Manag 12(2):271–276
Kumar V, Sinha AK, Rodrigues PP, Mubiana VK, Blust R, De Boeck G
(2015) Linking environmental heavy metal concentrations and salinity gradients with metal accumulation and their effects: a case
study in 3 mussel species of Vitória estuary and Espírito Santo
bay, Southeast Brazil. Sci Total Environ 523:1–15. https://doi.org/
10.1016/j.scitotenv.2015.03.139
Levinton JS (1995) Marine biology- function, biodiversity, ecology, vol
1. Oxford University press, INC., New York, p 423
Li Y, Yang H, Liu N, Luo J, Wang Q, Wang L (2015) Cadmium accumulation and metallothionein biosynthesis in cadmium-treated freshwater mussel Anodonta woodiana. PLoS One 10:1–15. https://doi.
org/10.1371/journal.pone.0117037
Maanan M (2007) Biomonitoring of heavy metals using Mytilus
galloprovincialis in Safi coastal waters, Morocco. Environ Toxicol
22(5):525–531. https://doi.org/10.1002/tox.20301
Maes GE, Raeymaekers JAM, Pampoulie C, Seynaeve A, Goemans G,
Belpaire C, Volckaert FAM (2005) The catadromous European eel
Anguilla anguilla (L.) as a model for freshwater evolutionary
ecotoxicology: relationship between heavy metal bioaccumulation,
condition and genetic variability. Aquat Toxicol 73(1):99–114
Mersch J (1993) Modalités d’utilisation de la moule zébrée Dreissena
polymorpha en tant que indicateur biologique de la contamination
des écosystèmes d’eau douce par les métaux lourds. Comparaison
avec un autre type d'organismes sentinelles, les mousses aquatiques
Etude dans le bassin de la Moselle. Thèse de Doctorat. Université de
Metz, France, 242p
Mzoughi N, Chouba L (2012) Heavy metals and PAH assessment based
on mussel caging in the north coast of Tunisia (Mediterranean Sea).
Int J Environ Res 6(1):109–118
Neff JM (2002) Bioaccumulation in marine organisms: effect of contaminants from oil well produced water, Elsevier Ltd , The Boulevard,
Langford Lane Kidlington, Oxford OX5 1GB UK.
Peharda M, Zupan I, Bavcevic L, Frankic A, Klanjscek T (2007) Growth
and condition index of mussel Mytilus galloprovincialis in experimental integrated aquaculture. Aquac Res 38:1714–1720
Peyrot C, Gagnon C, Gagné F, Willkinson KJ, Patrice Turcotte P,
Sébastien Sauvé S (2009) Effects of cadmium telluride quantum
dots on cadmium bioaccumulation and metallothionein production
to the freshwater mussel, Elliptio complanata. Comp Biochem
Physiol C 150:24–251
Phillips DJH, Rainbow PS (1994) Biomonitoring of trace aquatic contaminants. Aldenn Press Ltd, Oxford, London
PNUE (1999) Manuel sur les biomarqueurs recommandés pour le programme de biosurveillance du MED POL, 51P
Ramade F (1998) Dictionnaire encyclopédique des sciences de l’eau.
Ediscience Paris, Paris, p 785
Regoli F (1992) Lysosomal responses as a sensitive stress index in biomonitoring heavy metal pollution. Mar Ecol Prog Ser 84:63–69
Remili S, Kerfouf A (2013) Evaluation of physico-chemical quality and
level of metal contamination (Cd, Pb, Zn) of wastewater discharges
in Oran and Mostaganem (Algeria West coast). Physio-Géo 7:165–
182
Rouane HO (2013) Biosurveillance de la qualité des eaux côtières du
littoral occidental Algérien, par le suivi des indices biologiques, de
la biodisponibilité et la bioaccumulation des métaux lourds (Zn, Cu,
Pb et Cd) chez la moule Mytilus galloprovincialis et l’oursin
Paracentrotus lividus, Thèse doctorat, Université d’Oran, faculté
des sciences, Algerie pp 295
Sohail M, Khan MN, Chaudhry AS, Qureshi NA (2016)
Bioaccumulation of heavy metals and analysis of mineral element
alongside proximate composition in foot, gills and mantle of freshwater mussels (Anodonta anatina). Rend Fis Acc Lincei 27:687–
696. https://doi.org/10.1007/s12210-016-0551-5
Spada L, Annicchiarico C, Cardellicchio N, Giandomenico S, Di Leo A
(2013) Heavy metals monitoring in the mussel Mytilus
galloprovincialis from the Apulian coast (Southern Italy). Mediterr
Mar Sci 14(1):99–108
Sreedevi P, Suresh A, Sivaramakrishna B, Prabhavathl B,
Radhakrishnalah K (1992) Bioaccumulation of nickel in the organs
of the freshwater fish, Cyprinus carpio, and the freshwater mussel,
Lamellidens marginalis, under lethal and sublethal nickel stress.
Chemosphere 24(1):29–36
Stankovic S, Jovic M, Stankovic AR, Katsikas L (2012) Health risks of
heavy metals in the Mediterranean mussels as seafood. Environ
Chem Lett 2:119–130
Stewart AR (1999) Accumulation of Cd by a freshwater mussel
(Pyganodon grandis) is reduced in the presence of Cu, Zn, Pb,
and Ni. J Fish Aquat Sci 56(3):467–478
Stien X, Percic P, Gnassia-Barelli M (1998) Evaluation of biomarkers in
caged fishes and mussels to assess the quality of waters in a bay of
the NW Mediterranean Sea. Environ Pollut 99:339–345
UNEP/FAO/IOC/IAEA (1993) Guidelines for monitoring chemical contaminants in the sea using marine organisms. Reference Methods
For Marine Pollution Studies No 6.34
Environ Sci Pollut Res
mussel as a metal bioindicator of coastal contamination: relationships between metal bioaccumulation and multiple biomarker responses. Sci Total Environ 511:663–675
Clark RB (1997) Marine pollution, vol 4. Clarendon press, Oxford, p 161
Cooper S, Hare L, Campbell PGC (2010) Subcellular partitioning of
cadmium in the freshwater bivalve, Pyganodon grandis, after separate short-term exposures to waterborne or diet-borne metal. Aquat
Toxicol 100:303–312
Cossa D, Lassus P (1989) Le cadmium en milieu marin : biogeochimie et
ecotoxicologie. Rapports scientifiques et techniques de L’Ifremer,
No. 16. Ifremer, Brest, France
Drif F (2012) Distribution des métaux traces chez les bivalves
(Mollusques) dans le golfe d’Annaba (Nord-est Algérien).thèse
doctorat. Université de Badji Mokhtar Annaba. Algérie, 154
EU, Commission Regulation no 1005/(2015), Official Journal of the
European Union, 25 June 2015, L161
EU, Commission Regulation no 488/(2014), Official Journal of the
European Union, 12 May 2014, L138
Firth DC, Salie K, O'Neill B, Hoffman LC (2019) Monitoring of trace
metal accumulation in two South African farmed mussel species,
Mytilus galloprovincialis and Choromytilus meridionalis. Mar
Pollut Bull 141:529–534
Galgani F, Chiffoleau JF, Barrah M, Drebika U, Tomasino C, Andral B
(2014) Assessment of heavy metal and organic contaminants levels
along the Libyan coast using transplanted mussels (Mytilus
galloprovincialis). Environ Sci Pollut Res 21(19):11331–11339
García-Navarro JA, Franco L, Romero D (2017) Differences in the accumulation and tissue distribution of Pb, Cd and Cu in Mediterranean
mussels (Mytilus galloprovincialis) exposed to single, binary, and
ternary metal mixtures. Environ Sci Pollut Res. https://doi.org/10.
1007/s11356-016-8349-7
Geffard O (2001) Toxicité potentielle des sédiments marins et estuariens
contaminés : evaluation chimique et biologique, biodisponibilité des
contaminants sédimentaires. Thèse de Doctorat. Université de
Bordeaux1, France, 352p
Giarratano E, Gil MN, Malanga G (2011) Seasonal and pollution-induced
variations in biomarkersof transplanted mussels within the Beagle
Channel. Mar Pollut Bull 62:1337–1344
Jebali J, Chouba L, Banni M, Boussetta H (2014) Comparative study of
the bioaccumulation and elimination of trace metals (Cd, Pb, Zn, Mn
and Fe) in the digestive gland , gills and muscle of bivalve Pinna
nobilis during afield transplant experiment. J Trace Elem Med Biol
28:212–217
Jitar O, Teodosiu C, Nicoara M, Plavan G (2013) Study of heavy metal
pollution and bioaccumulation in the black sea living environment.
Environ Eng Manag 12(2):271–276
Kumar V, Sinha AK, Rodrigues PP, Mubiana VK, Blust R, De Boeck G
(2015) Linking environmental heavy metal concentrations and salinity gradients with metal accumulation and their effects: a case
study in 3 mussel species of Vitória estuary and Espírito Santo
bay, Southeast Brazil. Sci Total Environ 523:1–15. https://doi.org/
10.1016/j.scitotenv.2015.03.139
Levinton JS (1995) Marine biology- function, biodiversity, ecology, vol
1. Oxford University press, INC., New York, p 423
Li Y, Yang H, Liu N, Luo J, Wang Q, Wang L (2015) Cadmium accumulation and metallothionein biosynthesis in cadmium-treated freshwater mussel Anodonta woodiana. PLoS One 10:1–15. https://doi.
org/10.1371/journal.pone.0117037
Maanan M (2007) Biomonitoring of heavy metals using Mytilus
galloprovincialis in Safi coastal waters, Morocco. Environ Toxicol
22(5):525–531. https://doi.org/10.1002/tox.20301
Maes GE, Raeymaekers JAM, Pampoulie C, Seynaeve A, Goemans G,
Belpaire C, Volckaert FAM (2005) The catadromous European eel
Anguilla anguilla (L.) as a model for freshwater evolutionary
ecotoxicology: relationship between heavy metal bioaccumulation,
condition and genetic variability. Aquat Toxicol 73(1):99–114
Mersch J (1993) Modalités d’utilisation de la moule zébrée Dreissena
polymorpha en tant que indicateur biologique de la contamination
des écosystèmes d’eau douce par les métaux lourds. Comparaison
avec un autre type d'organismes sentinelles, les mousses aquatiques
Etude dans le bassin de la Moselle. Thèse de Doctorat. Université de
Metz, France, 242p
Mzoughi N, Chouba L (2012) Heavy metals and PAH assessment based
on mussel caging in the north coast of Tunisia (Mediterranean Sea).
Int J Environ Res 6(1):109–118
Neff JM (2002) Bioaccumulation in marine organisms: effect of contaminants from oil well produced water, Elsevier Ltd , The Boulevard,
Langford Lane Kidlington, Oxford OX5 1GB UK.
Peharda M, Zupan I, Bavcevic L, Frankic A, Klanjscek T (2007) Growth
and condition index of mussel Mytilus galloprovincialis in experimental integrated aquaculture. Aquac Res 38:1714–1720
Peyrot C, Gagnon C, Gagné F, Willkinson KJ, Patrice Turcotte P,
Sébastien Sauvé S (2009) Effects of cadmium telluride quantum
dots on cadmium bioaccumulation and metallothionein production
to the freshwater mussel, Elliptio complanata. Comp Biochem
Physiol C 150:24–251
Phillips DJH, Rainbow PS (1994) Biomonitoring of trace aquatic contaminants. Aldenn Press Ltd, Oxford, London
PNUE (1999) Manuel sur les biomarqueurs recommandés pour le programme de biosurveillance du MED POL, 51P
Ramade F (1998) Dictionnaire encyclopédique des sciences de l’eau.
Ediscience Paris, Paris, p 785
Regoli F (1992) Lysosomal responses as a sensitive stress index in biomonitoring heavy metal pollution. Mar Ecol Prog Ser 84:63–69
Remili S, Kerfouf A (2013) Evaluation of physico-chemical quality and
level of metal contamination (Cd, Pb, Zn) of wastewater discharges
in Oran and Mostaganem (Algeria West coast). Physio-Géo 7:165–
182
Rouane HO (2013) Biosurveillance de la qualité des eaux côtières du
littoral occidental Algérien, par le suivi des indices biologiques, de
la biodisponibilité et la bioaccumulation des métaux lourds (Zn, Cu,
Pb et Cd) chez la moule Mytilus galloprovincialis et l’oursin
Paracentrotus lividus, Thèse doctorat, Université d’Oran, faculté
des sciences, Algerie pp 295
Sohail M, Khan MN, Chaudhry AS, Qureshi NA (2016)
Bioaccumulation of heavy metals and analysis of mineral element
alongside proximate composition in foot, gills and mantle of freshwater mussels (Anodonta anatina). Rend Fis Acc Lincei 27:687–
696. https://doi.org/10.1007/s12210-016-0551-5
Spada L, Annicchiarico C, Cardellicchio N, Giandomenico S, Di Leo A
(2013) Heavy metals monitoring in the mussel Mytilus
galloprovincialis from the Apulian coast (Southern Italy). Mediterr
Mar Sci 14(1):99–108
Sreedevi P, Suresh A, Sivaramakrishna B, Prabhavathl B,
Radhakrishnalah K (1992) Bioaccumulation of nickel in the organs
of the freshwater fish, Cyprinus carpio, and the freshwater mussel,
Lamellidens marginalis, under lethal and sublethal nickel stress.
Chemosphere 24(1):29–36
Stankovic S, Jovic M, Stankovic AR, Katsikas L (2012) Health risks of
heavy metals in the Mediterranean mussels as seafood. Environ
Chem Lett 2:119–130
Stewart AR (1999) Accumulation of Cd by a freshwater mussel
(Pyganodon grandis) is reduced in the presence of Cu, Zn, Pb,
and Ni. J Fish Aquat Sci 56(3):467–478
Stien X, Percic P, Gnassia-Barelli M (1998) Evaluation of biomarkers in
caged fishes and mussels to assess the quality of waters in a bay of
the NW Mediterranean Sea. Environ Pollut 99:339–345
UNEP/FAO/IOC/IAEA (1993) Guidelines for monitoring chemical contaminants in the sea using marine organisms. Reference Methods
For Marine Pollution Studies No 6.34
Environ Sci Pollut Res
