198
P. Thiriet et al.
Di Franco A, De Benedetto G, De Rinaldis G, Raventos N, Sahyoun R, Guidetti P (2011) Large
scale-variability in otolith microstructure and microchemistry: the case study of Diplodus sargus
(Pisces: Sparidae) in the Mediterranean sea. Ital J Zool 78:182–192
Fraschetti S, Terlizzi A, Boero F (2008) How many habitats are there in the sea (and where)? J Exp
Mar Biol Ecol 366:109–115
Guidetti P (2000) Differences among fish assemblages associated with nearshore posidonia oceanica
seagrass beds, rocky–algal reefs and unvegetated sand habitats in the Adriatic sea. Estuar Coast
Shelf Sci 50:515–529
Hansen JP, Sagerman J, Wikstrom SA (2010) Effects of plant morphology on small-scale distribution
of invertebrates. Mar Biol 157:2143–2155
Harmelin-Vivien ML, Harmelin JG, Leboulleux V (1995) Microhabitat requirements for settlement
of juvenile sparid fishes on Mediterranean rocky shores. In: Balvay G (ed) Space partition within
aquatic ecosystems. Springer Netherlands. pp 309–320
Heck K, Orth R (1980) Seagrass habitats: the roles of habitat complexity, competition and predation
in structuring associated fish and motile macroinvertebrate assemblages. In: Kennedy VS (ed)
Estuarine perspectives. Academic Press Inc., pp 449–464
Heck KL, Hays G, Orth RJ (2003) Critical evaluation of the nursery role hypothesis for seagrass
meadows. Mar Ecol Prog Ser 253:123–136
Hindell JS, Jenkins GP, Keough MJ (2000) Evaluating the impact of predation by fish on the
assemblage structure of fishes associated with seagrass (Heterozostera tasmanica) (Martens ex
Ascherson) den Hartog, and unvegetated sand habitats. J Exp Mar Biol Ecol 255:153–174
Hoffmann L, Renard R, Demoulin V (1992) Phenology, growth, and biomass of Cystoseira balearica
in Calvi (Corsica). Mar Ecol Prog Ser 80:249–254
Horinouchi M, Mizuno N, JoY, Fujita M, Sano M, SuzukiY (2009) Seagrass habitat complexity does
not always decrease foraging efficiencies of piscivorous fishes. Mar Ecol Prog Ser 377:43–49
Jones GP (1984) Population ecology of the temperate reef fish Pseudolabrus celidotus Bloch &
Schneider (Pisces: Labridae). I. Factors influencing recruitment. J Exp Mar Biol Ecol 75:
257–276
Levi F (2004) Etude de l’impact de l’algue envahissante Caulerpa taxifolia sur les peuplements de
poissons—Etude approfondie sur une espèce “modèle”: Symphodus ocellatus (Labridae). Thèse
Doct. Sci., Univ. Nice Sophia Antipolis, Nice, p 269
Levin P, Petrik R, Malone J (1997) Interactive effects of habitat selection, food supply and predation
on recruitment of an estuarine fish. Oecologia 112:55–63
Lima SL (1992) Strong preferences for apparently dangerous habitats—a consequence of differential escape from predators. Oikos 64:597–600
Lima SL (1998) Stress and decision making under the risk of predation: Recent developments from
behavioral, reproductive, and ecological perspectives. Stress Behav 27:215–290
Lima SL, Dill LM (1990) Behavioral decisions made under the risk of predation—a review and
prospectus. Can J Zool 68:619–640. (Revue Canadienne De Zoologie)
Macreadie PI, Hindell JS, Keough MJ, Jenkins GP, Connolly RM (2010) Resource distribution
influences positive edge effects in a seagrass fish. Ecology 91:2013–2021
Mangialajo L, Ruggieri N, Asnaghi V, Chiantore M, Povero P, Cattaneo-Vietti R (2007) Ecological
status in the Ligurian sea: the effect of coastline urbanisation and the importance of proper
reference sites. Mar Pollut Bull 55:30–41
Martin CW, Fodrie FJ, Heck KL, Mattila J (2010) Differential habitat use and antipredator response
of juvenile roach (Rutilus rutilus) to olfactory and visual cues from multiple predators. Oecologia
162:893–902
Matsuda H, Abrams PA, Hori H (1993) The effect of adaptive antipredator behavior on exploitative
competition and mutualism between predators. Oikos 68:549–559
Morris DW (2003) Toward an ecological synthesis: a case for habitat selection. Oecologia 136:1–13
Morris DW (2011) Adaptation and habitat selection in the eco-evolutionary process. Proc R Soc B
Biol Sci 278:2401–2411
P. Thiriet et al.
Di Franco A, De Benedetto G, De Rinaldis G, Raventos N, Sahyoun R, Guidetti P (2011) Large
scale-variability in otolith microstructure and microchemistry: the case study of Diplodus sargus
(Pisces: Sparidae) in the Mediterranean sea. Ital J Zool 78:182–192
Fraschetti S, Terlizzi A, Boero F (2008) How many habitats are there in the sea (and where)? J Exp
Mar Biol Ecol 366:109–115
Guidetti P (2000) Differences among fish assemblages associated with nearshore posidonia oceanica
seagrass beds, rocky–algal reefs and unvegetated sand habitats in the Adriatic sea. Estuar Coast
Shelf Sci 50:515–529
Hansen JP, Sagerman J, Wikstrom SA (2010) Effects of plant morphology on small-scale distribution
of invertebrates. Mar Biol 157:2143–2155
Harmelin-Vivien ML, Harmelin JG, Leboulleux V (1995) Microhabitat requirements for settlement
of juvenile sparid fishes on Mediterranean rocky shores. In: Balvay G (ed) Space partition within
aquatic ecosystems. Springer Netherlands. pp 309–320
Heck K, Orth R (1980) Seagrass habitats: the roles of habitat complexity, competition and predation
in structuring associated fish and motile macroinvertebrate assemblages. In: Kennedy VS (ed)
Estuarine perspectives. Academic Press Inc., pp 449–464
Heck KL, Hays G, Orth RJ (2003) Critical evaluation of the nursery role hypothesis for seagrass
meadows. Mar Ecol Prog Ser 253:123–136
Hindell JS, Jenkins GP, Keough MJ (2000) Evaluating the impact of predation by fish on the
assemblage structure of fishes associated with seagrass (Heterozostera tasmanica) (Martens ex
Ascherson) den Hartog, and unvegetated sand habitats. J Exp Mar Biol Ecol 255:153–174
Hoffmann L, Renard R, Demoulin V (1992) Phenology, growth, and biomass of Cystoseira balearica
in Calvi (Corsica). Mar Ecol Prog Ser 80:249–254
Horinouchi M, Mizuno N, JoY, Fujita M, Sano M, SuzukiY (2009) Seagrass habitat complexity does
not always decrease foraging efficiencies of piscivorous fishes. Mar Ecol Prog Ser 377:43–49
Jones GP (1984) Population ecology of the temperate reef fish Pseudolabrus celidotus Bloch &
Schneider (Pisces: Labridae). I. Factors influencing recruitment. J Exp Mar Biol Ecol 75:
257–276
Levi F (2004) Etude de l’impact de l’algue envahissante Caulerpa taxifolia sur les peuplements de
poissons—Etude approfondie sur une espèce “modèle”: Symphodus ocellatus (Labridae). Thèse
Doct. Sci., Univ. Nice Sophia Antipolis, Nice, p 269
Levin P, Petrik R, Malone J (1997) Interactive effects of habitat selection, food supply and predation
on recruitment of an estuarine fish. Oecologia 112:55–63
Lima SL (1992) Strong preferences for apparently dangerous habitats—a consequence of differential escape from predators. Oikos 64:597–600
Lima SL (1998) Stress and decision making under the risk of predation: Recent developments from
behavioral, reproductive, and ecological perspectives. Stress Behav 27:215–290
Lima SL, Dill LM (1990) Behavioral decisions made under the risk of predation—a review and
prospectus. Can J Zool 68:619–640. (Revue Canadienne De Zoologie)
Macreadie PI, Hindell JS, Keough MJ, Jenkins GP, Connolly RM (2010) Resource distribution
influences positive edge effects in a seagrass fish. Ecology 91:2013–2021
Mangialajo L, Ruggieri N, Asnaghi V, Chiantore M, Povero P, Cattaneo-Vietti R (2007) Ecological
status in the Ligurian sea: the effect of coastline urbanisation and the importance of proper
reference sites. Mar Pollut Bull 55:30–41
Martin CW, Fodrie FJ, Heck KL, Mattila J (2010) Differential habitat use and antipredator response
of juvenile roach (Rutilus rutilus) to olfactory and visual cues from multiple predators. Oecologia
162:893–902
Matsuda H, Abrams PA, Hori H (1993) The effect of adaptive antipredator behavior on exploitative
competition and mutualism between predators. Oikos 68:549–559
Morris DW (2003) Toward an ecological synthesis: a case for habitat selection. Oecologia 136:1–13
Morris DW (2011) Adaptation and habitat selection in the eco-evolutionary process. Proc R Soc B
Biol Sci 278:2401–2411
