Skip to main content

ETHNOS_APP

Home • Search • Journals • List 0

A New Mormoopid Bat from the Oligocene (Whitneyan and Early Arikareean) of Florida, and Phylogenetic Relationships of the Major Clades of Mormoopidae (Mammalia

(Chiroptera)

Bibliographic Data

ID19259786
AuthorsGareth Morgan (0000-0002-9495-1274, New Mexico Museum of Natural History and Science), Gary S Morgan (New Mexico Museum of Natural History, Albuquerque, NM), Nicholas J Czaplewski (0000-0001-8701-2538, Oklahoma Museum of Natural History, University of Oklahoma, Norman), Nancy B Simmons (0000-0001-8807-7499, American Museum of Natural History)
Year2019
Volume2019
Issue434
Pages1
Publication date2019-06-17
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueBulletin of the American Museum of Natural History (BOOK_SERIES)
Journal identifiersISSN: 0003-0090 • E-ISSN: 1937-3546
PublisherAmerican Museum of Natural History (BioOne sponsored) (PUBLISHER)
DOI10.1206/0003-0090.434.1.1
OpenAlexW2952279626
LanguageEN
Citations received1
References cited127

A new genus and species of fossil bat, Koopmanycteris palaeomormoops, representing an ancient member of the endemic Neotropical family Mormoopidae, is described from the Oligocene of Florida. This new species is known from two paleokarst deposits in northern peninsular Florida, the early Oligocene (Whitneyan, 30–32 Ma) I-75 Local Fauna in Alachua County and the late Oligocene (early Arikareean, 26–28 Ma) Brooksville 2 Local Fauna in Hernando County. The discovery of Koopmanycteris extends the fossil record of the Mormoopidae back in time almost 30 million years. Compared to most other described taxa of North American Tertiary bats, the fossil sample of Koopmanycteris palaeomormoops is substantial, consisting of 50 specimens including: P4, all lower teeth from p3 through m3, dentary, petrosal, humerus, proximal radius, and femur. Koopmanycteris is morphologically intermediate between the two living genera of mormoopids, Mormoops and Pteronotus, but is most similar to the former taxon. Characters shared by Koopmanycteris and Mormoops include: large anterolabial basin on P4; large, double-rooted p3; secondary process ventral to angular process on dentary; absence of groove separating capitulum into medial and lateral portions on distal humerus; presence of prominent ridge on posterolateral edge of distal humeral shaft; rounded extremity on proximal radius; and presence of a prominent ridge or tubercle on posterodistal shaft of femur. All of these features appear to be relatively derived, with the exception of the large, double-rooted p3. In several mandibular characters, Koopmanycteris more closely resembles Pteronotus, including: pronounced posteroventral process on the symphysis; lack of curvature of ventral edge of horizontal ramus between posterior edge of symphysis and p4; and less pronounced dorsal upturning of ascending ramus compared to Mormoops. Koopmanycteris retains the primitive dental morphology of Mormoops, with a large double-rooted p3, and the primitive posterior mandibular morphology of Pteronotus, with the lesser degree of dorsal flexion of the ascending ramus. A phylogenetic analysis including all known extant mormoopid lineages as well as representative outgroups from other noctilionoid clades confirms that Koopmanycteris and Mormoops are sister taxa. These findings indicate that the lineages leading to Pteronotus and Mormoops were distinct by ∼30 Ma. The fossil record tentatively indicates that the Mormoopidae originated in North America in the early Oligocene or earlier, and may not have reached South America until the Pliocene following the onset of the Great American Biotic Interchange. Several lines of evidence support this hypothesis: (1) the earliest fossil record of the Mormoopidae is in the early Oligocene of Florida; (2) the greatest diversity and endemism of modern mormoopid species is in the West Indies; and (3) the absence of a pre–late Pleistocene record, lack of endemism, and marginal recent distribution of mormoopids in South America. Most species of living mormoopids are obligate cave dwellers, suggesting that the occurrence of caves and paleokarst deposits has affected both their modern distribution and fossil record

Biology · Fauna · Genus · Ridge · Taxon · Zoology · Amphibian and Reptile Biology · Anatomy · Bat Biology and Ecology Studies · Ecology · Evolution and Paleontology Studies · Geology · Paleontology

  • Phylogeny, Biogeography, and Classification of Frugivorous Bats in the Subtribe Vampyressina (Phyllostomidae

    Open Access•Guilherme S T Garbino, Paúl M Velazco et al.•Bulletin of the American Museum…•2026

  • Chapter 15

    Open Access•Bruce J Macfadden, Gary S Morgan•Bulletin of the American Museum…•2003

  • Phylogeny of Phyllostomid Bats (Mammalia

    Open Access•ANDREA L WETTERER, MATTHEW V ROCKMAN et al.•Bulletin of the American Museum…•2000

  • Phylogenetic Relationships of Mormoopid Bats (Chiroptera

    Open Access•Nancy B Simmons, Tenley M Conway•Bulletin of the American Museum…•2001

  • On the Cranial Osteology of Chiroptera. I. Pteropus (Megachiroptera

    Open Access•Norberto P Giannini, John R Wible et al.•Bulletin of the American Museum…•2006

  • Formal ratification of the Quaternary System/Period and the Pleistocene Series/Epoch with a base at 2.58 Ma

    Open Access•Philip L Gibbard, Martin J Head et al.•Journal of Quaternary Science•2010

  • Terrestrial Ecoregions of the World

    David M Olson, E Dinerstein et al.•BioScience•2001

  • Systematics of Funnel-Eared Bats (Chiroptera

    Open Access•Adrian Tejedor•Bulletin of the American Museum…•2011

  • Tropical and western influences in vertebrate faunas from the Pliocene and Pleistocene of Florida

    Open Access•Gary S Morgan, D Emslie et al.•Quaternary International•2010

  • The Mammals of Paracou, French Guiana

    Open Access•Robert S Voss, Darrin P Lunde et al.•Bulletin of the American Museum…•2001

  • Cenozoic mammals of North America

    Open Access•Donald E Russell•Journal of Human Evolution•1989

Unique citing works1
Citations per year1
Citation span2026 - 2026 (1)
Citation velocitycurrent
Highly citedNo
Citation typesNeutral: 1

Tools

Open DOIOpen Access
Ethnos_APP • Open Source Project • MIT License • Frontend v2.0.0 • Privacy and Cookies • API Documentation: api.ethnos.app/docs • API Source Code: GitHub • DOI: 10.5281/zenodo.17049435 • Frontend Source Code: GitHub • DOI: 10.5281/zenodo.17050053 • cruz.rio.br • Expectantes Misericordiae