Henry Y, Piscart C, Charles S, Colinet H (2017) Combined effect of temperature and ammonia on
molecular response and survival of the freshwater crustacean Gammarus pulex. Ecotoxicol
Environ Saf 137:42–48
Iltis C, Dechaume-Moncharmont F-X, Galipaud M, Moreau J, Bollache L, Louâpre P (2017) The
curse of being single: both male and female Gammarus pulex benefit energetically from
precopulatory mate guarding. Anim Behav 130:67–72
Kelly DW, Dick JTA, Montgomery WI (2002) The functional role of Gammarus (Crustacea,
Amphipoda): shredders, predators, or both? Hydrobiologia 485(1–3):199–203
Kunz PJ, Kienle C, Gerhardt A (2010) Gammarus spp. in aquatic ecotoxicology and water quality
assessment: toward integrated multilevel tests. Rev Environ Contam Toxicol 205:1–76
Labaude S, Moret Y, Cézilly F, Reuland C, Rigaud T (2017) Variation in the immune state of
Gammarus pulex (Crustacea, Amphipoda) according to temperature: are extreme temperatures a
stress? Dev Comp Immunol 76:25–33
Lahive E, O’Halloran J, Jansen MAK (2015) A marriage of convenience; a simple food chain
comprised of Lemna minor (L.) and Gammarus pulex (L.) to study the dietary transfer of zinc.
Plant Biol 17:75–81
Le Moullac G, Haffner P (2000) Environmental factors affecting immune responses in Crustacea.
Aquaculture 191(1–3):121–131
Magi E, Di Carro M, Mirasole C, Benedetti B (2018) Combining passive sampling and tandem
mass spectrometry for the determination of pharmaceuticals and other emerging pollutants in
drinking water. Microchem J 136:56–60
Maltby L, Clayton SA, Wood RM, McLoughlin N (2002) Evaluation of the Gammarus pulex in situ
feeding assay as a biomonitor of water quality: robustness, responsiveness, and relevance.
Environ Toxicol Chem 21(2):361–368
Maul JD, Schuler LJ, Belden JB, Whiles MR, Lydy MJ (2006) Effects of the antibiotic ciprofloxacin on stream microbial communities and detritivorous macroinvertebrates. Environ Toxicol
Chem 25(6):1598–1606
McCahon CP, Pascoe D (1988) Use of Gammarus pulex (L.) in safety evaluation tests: culture and
selection of a sensitive life stage. Ecotoxicol Environ Saf 15(3):245–252
Naylor C, Maltby L, Calow P (1989) Scope for growth in Gammarus pulex, a freshwater benthic
detritivore. Hydrobiologia 188–189(1):517–523
Newton K, Zubrod JP, Englert D, Lüderwald S, Schell T, Baudy P, Konschak M, Feckler A,
Schulz R, Bundschuh M (2018) The evil within? Systemic fungicide application in trees
enhances litter quality for an aquatic decomposer-detritivore system. Environ Pollut
241:549–556
Nilsson LM (1974) Energy budget of a laboratory population of Gammarus pulex (Amphipoda).
Oikos 25(1):35–42
Pascoe D, Kedwards TJ, Blockwell SJ, Taylor EJ (1995) Gammarus pulex (L.) feeding bioassay-effects of parasitism. Bull Environ Contam Toxicol 55(4):629–632
Perrot-Minnot M-J, Dion E, Cézilly F (2013) Modulatory effects of the serotonergic and histaminergic systems on reaction to light in the crustacean Gammarus pulex. Neuropharmacology
75:31–37
Semsar-kazerouni M, Verberk WCEP (2018) It’s about time: linkages between heat tolerance,
thermal acclimation and metabolic rate at different temporal scales in the freshwater amphipod
Gammarus fossarum Koch, 1836. J Therm Biol 75:31–37
Sutcliffe DW (1984) Quantitative aspects of oxygen uptake by Gammarus (Crustacea,
Amphipoda): a critical review. Freshw Biol 14(5):443–489
Sutcliffe DW, Carrick TR (1973) Studies on mountain streams in the English Lake District. Freshw
Biol 3(5):437–462
Taylor EJ, Jones DPW, Maund SJ, Pascoe D (1993) A new method for measuring the feeding
activity of Gammarus pulex (L.). Chemosphere 26(7):1375–1381
40
G. Consolandi et al.
molecular response and survival of the freshwater crustacean Gammarus pulex. Ecotoxicol
Environ Saf 137:42–48
Iltis C, Dechaume-Moncharmont F-X, Galipaud M, Moreau J, Bollache L, Louâpre P (2017) The
curse of being single: both male and female Gammarus pulex benefit energetically from
precopulatory mate guarding. Anim Behav 130:67–72
Kelly DW, Dick JTA, Montgomery WI (2002) The functional role of Gammarus (Crustacea,
Amphipoda): shredders, predators, or both? Hydrobiologia 485(1–3):199–203
Kunz PJ, Kienle C, Gerhardt A (2010) Gammarus spp. in aquatic ecotoxicology and water quality
assessment: toward integrated multilevel tests. Rev Environ Contam Toxicol 205:1–76
Labaude S, Moret Y, Cézilly F, Reuland C, Rigaud T (2017) Variation in the immune state of
Gammarus pulex (Crustacea, Amphipoda) according to temperature: are extreme temperatures a
stress? Dev Comp Immunol 76:25–33
Lahive E, O’Halloran J, Jansen MAK (2015) A marriage of convenience; a simple food chain
comprised of Lemna minor (L.) and Gammarus pulex (L.) to study the dietary transfer of zinc.
Plant Biol 17:75–81
Le Moullac G, Haffner P (2000) Environmental factors affecting immune responses in Crustacea.
Aquaculture 191(1–3):121–131
Magi E, Di Carro M, Mirasole C, Benedetti B (2018) Combining passive sampling and tandem
mass spectrometry for the determination of pharmaceuticals and other emerging pollutants in
drinking water. Microchem J 136:56–60
Maltby L, Clayton SA, Wood RM, McLoughlin N (2002) Evaluation of the Gammarus pulex in situ
feeding assay as a biomonitor of water quality: robustness, responsiveness, and relevance.
Environ Toxicol Chem 21(2):361–368
Maul JD, Schuler LJ, Belden JB, Whiles MR, Lydy MJ (2006) Effects of the antibiotic ciprofloxacin on stream microbial communities and detritivorous macroinvertebrates. Environ Toxicol
Chem 25(6):1598–1606
McCahon CP, Pascoe D (1988) Use of Gammarus pulex (L.) in safety evaluation tests: culture and
selection of a sensitive life stage. Ecotoxicol Environ Saf 15(3):245–252
Naylor C, Maltby L, Calow P (1989) Scope for growth in Gammarus pulex, a freshwater benthic
detritivore. Hydrobiologia 188–189(1):517–523
Newton K, Zubrod JP, Englert D, Lüderwald S, Schell T, Baudy P, Konschak M, Feckler A,
Schulz R, Bundschuh M (2018) The evil within? Systemic fungicide application in trees
enhances litter quality for an aquatic decomposer-detritivore system. Environ Pollut
241:549–556
Nilsson LM (1974) Energy budget of a laboratory population of Gammarus pulex (Amphipoda).
Oikos 25(1):35–42
Pascoe D, Kedwards TJ, Blockwell SJ, Taylor EJ (1995) Gammarus pulex (L.) feeding bioassay-effects of parasitism. Bull Environ Contam Toxicol 55(4):629–632
Perrot-Minnot M-J, Dion E, Cézilly F (2013) Modulatory effects of the serotonergic and histaminergic systems on reaction to light in the crustacean Gammarus pulex. Neuropharmacology
75:31–37
Semsar-kazerouni M, Verberk WCEP (2018) It’s about time: linkages between heat tolerance,
thermal acclimation and metabolic rate at different temporal scales in the freshwater amphipod
Gammarus fossarum Koch, 1836. J Therm Biol 75:31–37
Sutcliffe DW (1984) Quantitative aspects of oxygen uptake by Gammarus (Crustacea,
Amphipoda): a critical review. Freshw Biol 14(5):443–489
Sutcliffe DW, Carrick TR (1973) Studies on mountain streams in the English Lake District. Freshw
Biol 3(5):437–462
Taylor EJ, Jones DPW, Maund SJ, Pascoe D (1993) A new method for measuring the feeding
activity of Gammarus pulex (L.). Chemosphere 26(7):1375–1381
40
G. Consolandi et al.
