194
Collette BB, Bănărescu P (1977) Systematics and zoogeography of the fishes of the family
Percidae. J Fish Res Board Can 34:1450–1463
Combosch DJ, Collins TM, Glover EA, Graf DL, Harper EM, Healy JM, Kawauchi GY, Lemer
S, McIntyre E, Strong EE, Taylor JD, Zardus JD, Mikkelsen PM, Giribet G, Bieler R (2017) A
family-level Tree of Life for bivalves based on a Sanger-sequencing approach. Mol Phylogenet
Evol 107:191–208
Cope JCW (1996) The early evolution of the Bivalvia. In: Taylor JD (ed) Origin and evolutionary
radiation of the Mollusca. Oxford University Press, Oxford, pp. 361–370
Cox CB (1969a) Two new dicynodonts from the Triassic Ntawere Formation, Zambia. Bull Br Mus
(Nat Hist) Geol 17:255–294
Cox LR (1969b) General features of the bivalvia. In: Moore RC (ed) Treatise on invertebrate
paleontology, part N, Mollusca, 6. Bivalvia. Geological Society of America and University of
Kansas Press, Lawrence, pp. N2–N129
Cressey R, Boxshall G (1989) Kabatarina pattersoni, a fossil parasitic copepod (Dichelesthiidae)
from a Lower Cretaceous fish. Micropaleontology 35:150–167
Cressey R, Patterson C (1973) Fossil parasitic copepods from a Lower Cretaceous fish. Science
180:1283–1285
Crête-Lafrenière A, Weir LK, Bernatchez L (2012) Framing the Salmonidae family phylogenetic
portrait: a more complete picture from increased taxon sampling. PLoS One 7:e46662. https://
doi.org/10.1371/journal.pone.0046662
Dartnall HJG, Walkey M (1979) The distribution of glochidia of the swan mussel, Anodonta cygnea
(Mollusca) on the three-spined stickleback Gasterosteus aculeatus (Pisces). J Zool 189:31–37
Davenport D, Warmuth M (1965) Notes on the relationship between the freshwater mussel Anodonta implicata Say and the alewife Pomolobus pseudoharengus (Wilson). Limnol
Oceanogr 10:R74–R78
Davis GM, Fuller SLH (1981) Genetic relationships among recent Unionacea of North America.
Malacologia 20:217–253
Davis SP, Martill DM (1999) The gonorynchiform fish Dastilbe from the Lower Cretaceous of
Brazil. Palaeontology 42:715–740
da Silva VR, Varejão FG, Matos SA, Fürsich FT, Skawina A, Schneider S, Simões MG (2020)
Cratonaia novaolindensis gen. et sp. nov. (Unionida, Silesunionoidea) from the Aptian of
Brazil (Araripe Basin), and its implications for the early evolution of freshwater mussels.
Cretaceous Research, 107:104275. https://doi.org/10.1016/j.cretres.2019.104275
De Baets K, Dentzien-Dias P, Upeniece I, Verneau O, Donoghue PCJ (2015) Constraining the deep
origin of parasitic flatworms and host-interactions with fossil evidence. Topics in Geobiology
90:93–135
De Baets K, Littlewood DTJ (2015) The importance of fossils in understanding the evolution of
parasites and their vectors. Advances in Parasitology 90:1–51
De Baets K, Huntley JW, Klompmaker AA, Schiffbauer JD, Muscente AD (2021) The fossil record
of parasitism: Its extent and taphonomic constraints. In: De Baets K, Huntley JW (eds) The
evolution and fossil record of parasitism: Coevolution and paleoparasitological techniques.
Topics in Geobiology 50
DeConto RM, Pollard D (2003) Rapid Cenozoic glaciation of Antarctica induced by declining
atmospheric CO2. Nature 421:245–249
Denic M, Taeubert JE, Geist J (2015) Trophic relationships between the larvae of two freshwater
mussels and their fish hosts. Invertebr Biol 134:129–135
Dick MH, Donaldson WE, Vining IW (1998) Epibionts of the tanner crab Chionoecetes bairdi in
the region of Kodiak Island, Alaska. J Crustac Biol 18:519–527
Dickinson D, Sietman BE (2008) Recent observation of metamorphosis without parasitism in
Utterbackia imbecillis. Ellipsaria 10:7–8
Divay JD, Murray AM (2016) An early Eocene fish fauna from the Bitter Creek area of the Wasatch
Formation of southwestern Wyoming, USA. J Vertebr Paleontol 36:e1196211. https://doi.org/1
0.1080/02724634.2016.1196211
A. Skawina
Collette BB, Bănărescu P (1977) Systematics and zoogeography of the fishes of the family
Percidae. J Fish Res Board Can 34:1450–1463
Combosch DJ, Collins TM, Glover EA, Graf DL, Harper EM, Healy JM, Kawauchi GY, Lemer
S, McIntyre E, Strong EE, Taylor JD, Zardus JD, Mikkelsen PM, Giribet G, Bieler R (2017) A
family-level Tree of Life for bivalves based on a Sanger-sequencing approach. Mol Phylogenet
Evol 107:191–208
Cope JCW (1996) The early evolution of the Bivalvia. In: Taylor JD (ed) Origin and evolutionary
radiation of the Mollusca. Oxford University Press, Oxford, pp. 361–370
Cox CB (1969a) Two new dicynodonts from the Triassic Ntawere Formation, Zambia. Bull Br Mus
(Nat Hist) Geol 17:255–294
Cox LR (1969b) General features of the bivalvia. In: Moore RC (ed) Treatise on invertebrate
paleontology, part N, Mollusca, 6. Bivalvia. Geological Society of America and University of
Kansas Press, Lawrence, pp. N2–N129
Cressey R, Boxshall G (1989) Kabatarina pattersoni, a fossil parasitic copepod (Dichelesthiidae)
from a Lower Cretaceous fish. Micropaleontology 35:150–167
Cressey R, Patterson C (1973) Fossil parasitic copepods from a Lower Cretaceous fish. Science
180:1283–1285
Crête-Lafrenière A, Weir LK, Bernatchez L (2012) Framing the Salmonidae family phylogenetic
portrait: a more complete picture from increased taxon sampling. PLoS One 7:e46662. https://
doi.org/10.1371/journal.pone.0046662
Dartnall HJG, Walkey M (1979) The distribution of glochidia of the swan mussel, Anodonta cygnea
(Mollusca) on the three-spined stickleback Gasterosteus aculeatus (Pisces). J Zool 189:31–37
Davenport D, Warmuth M (1965) Notes on the relationship between the freshwater mussel Anodonta implicata Say and the alewife Pomolobus pseudoharengus (Wilson). Limnol
Oceanogr 10:R74–R78
Davis GM, Fuller SLH (1981) Genetic relationships among recent Unionacea of North America.
Malacologia 20:217–253
Davis SP, Martill DM (1999) The gonorynchiform fish Dastilbe from the Lower Cretaceous of
Brazil. Palaeontology 42:715–740
da Silva VR, Varejão FG, Matos SA, Fürsich FT, Skawina A, Schneider S, Simões MG (2020)
Cratonaia novaolindensis gen. et sp. nov. (Unionida, Silesunionoidea) from the Aptian of
Brazil (Araripe Basin), and its implications for the early evolution of freshwater mussels.
Cretaceous Research, 107:104275. https://doi.org/10.1016/j.cretres.2019.104275
De Baets K, Dentzien-Dias P, Upeniece I, Verneau O, Donoghue PCJ (2015) Constraining the deep
origin of parasitic flatworms and host-interactions with fossil evidence. Topics in Geobiology
90:93–135
De Baets K, Littlewood DTJ (2015) The importance of fossils in understanding the evolution of
parasites and their vectors. Advances in Parasitology 90:1–51
De Baets K, Huntley JW, Klompmaker AA, Schiffbauer JD, Muscente AD (2021) The fossil record
of parasitism: Its extent and taphonomic constraints. In: De Baets K, Huntley JW (eds) The
evolution and fossil record of parasitism: Coevolution and paleoparasitological techniques.
Topics in Geobiology 50
DeConto RM, Pollard D (2003) Rapid Cenozoic glaciation of Antarctica induced by declining
atmospheric CO2. Nature 421:245–249
Denic M, Taeubert JE, Geist J (2015) Trophic relationships between the larvae of two freshwater
mussels and their fish hosts. Invertebr Biol 134:129–135
Dick MH, Donaldson WE, Vining IW (1998) Epibionts of the tanner crab Chionoecetes bairdi in
the region of Kodiak Island, Alaska. J Crustac Biol 18:519–527
Dickinson D, Sietman BE (2008) Recent observation of metamorphosis without parasitism in
Utterbackia imbecillis. Ellipsaria 10:7–8
Divay JD, Murray AM (2016) An early Eocene fish fauna from the Bitter Creek area of the Wasatch
Formation of southwestern Wyoming, USA. J Vertebr Paleontol 36:e1196211. https://doi.org/1
0.1080/02724634.2016.1196211
A. Skawina
