Large benthic foraminifera (LBF) of the family Lepidocyclinidae originated in the Americas during the Eocene and then spread worldwide, persisting until the Miocene. Like other clades of foraminifera, they are characterized by an evolutionary trend, the “nepionic acceleration”, that favors their use in biostratigraphy. The East Pisco basin of southern Peru includes the Eocene Paracas Formation, whose basal Los Choros Member is characterized by shallow-water sediments rich in LBF. The Zamaca outcrop, investigated here, is located in the Ica desert and consists of mixed bioclastic-siliciclastic fine gravels of the Los Choros Member that nonconformably overlie the basement rocks. The bioclastic fraction is dominated by LBF with subordinate bivalves, echinoids, and barnacles. Lepidocyclinids are the most common group of LBF and to our knowledge they represent the southernmost occurrence of this family along the Pacific coast of America. Rare specimens of Nummulites and Discocyclina were also observed. Within lepidocyclinids, the primitive species Lepidocyclina douvillei, characterized by a small embryo and large and often slightly asymmetric principal auxiliary chambers, is the most common species, occurring together with Lepidocylcina cf. trinitatis and two different species of Polylepidina. The co-occurrence of L. douvillei and Polylepidina, coupled with the lack of Helicolepidina and Helicostegina, suggests a middle Eocene age (43.6–40.0 Ma), probably close to the Lutetian–Bartonian boundary. This interpretation is supported by the nannofossils assemblage (CNE14 biozone, 42.37–40.34 Ma) of the base of the overlying Yumaque Member. These results highlight the potential of lepidocyclinids for biostratigraphic analyses in the South American region.
Coletti, G., Collareta, A., Bosio, G., Bracchi, V., Malinverno, E., Stainbank, S., et al. (2019). The southernmost occurrence of lepidocyclinids from the Pacific coast of South America: the Los Choros Member (Paracas Formation, East Pisco Basin, southern Peru). Intervento presentato a: The micropaleontological society Joint Foraminifera and Nannofossil Meeting, Friburgo.
The southernmost occurrence of lepidocyclinids from the Pacific coast of South America: the Los Choros Member (Paracas Formation, East Pisco Basin, southern Peru)
Coletti, G
Primo
;Bosio, G;Bracchi, V;Malinverno, E;Basso, D;
2019
Abstract
Large benthic foraminifera (LBF) of the family Lepidocyclinidae originated in the Americas during the Eocene and then spread worldwide, persisting until the Miocene. Like other clades of foraminifera, they are characterized by an evolutionary trend, the “nepionic acceleration”, that favors their use in biostratigraphy. The East Pisco basin of southern Peru includes the Eocene Paracas Formation, whose basal Los Choros Member is characterized by shallow-water sediments rich in LBF. The Zamaca outcrop, investigated here, is located in the Ica desert and consists of mixed bioclastic-siliciclastic fine gravels of the Los Choros Member that nonconformably overlie the basement rocks. The bioclastic fraction is dominated by LBF with subordinate bivalves, echinoids, and barnacles. Lepidocyclinids are the most common group of LBF and to our knowledge they represent the southernmost occurrence of this family along the Pacific coast of America. Rare specimens of Nummulites and Discocyclina were also observed. Within lepidocyclinids, the primitive species Lepidocyclina douvillei, characterized by a small embryo and large and often slightly asymmetric principal auxiliary chambers, is the most common species, occurring together with Lepidocylcina cf. trinitatis and two different species of Polylepidina. The co-occurrence of L. douvillei and Polylepidina, coupled with the lack of Helicolepidina and Helicostegina, suggests a middle Eocene age (43.6–40.0 Ma), probably close to the Lutetian–Bartonian boundary. This interpretation is supported by the nannofossils assemblage (CNE14 biozone, 42.37–40.34 Ma) of the base of the overlying Yumaque Member. These results highlight the potential of lepidocyclinids for biostratigraphic analyses in the South American region.File | Dimensione | Formato | |
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