Showing posts with label Caribbean. Show all posts
Showing posts with label Caribbean. Show all posts

Tuesday, April 28, 2026

[Crustacea • 2026] Nephropsis perexigua • A New Species of Nephropsis Wood-Mason, 1872 (Decapoda: Astacidea: Nephropidae) [the World’s Smallest Clawed Lobster]


Nephropsis perexigua
Chan & Chang, 2026


Abstract
Several small specimens of a clawed lobster recently collected off the island of Guadeloupe in the West Indies and originally reported as Nephropsis aculeata Smith, 1881 are found to represent a species new to science. The new species, N. perexigua sp. nov., can be readily separated from N. aculeata by the absence of a dorsal median carina in the abdomen. Nephropsis perexigua sp. nov. actually closely resembles N. pygmaea Chang, Chan & Kumar, 2020 from the West Pacific, but differs in the abdomen being smooth. The shape of the posteromesial plate on the coxa of the pereiopod III is also distinctly different among males of N. perexiguasp. nov., N. aculeata, and N. pygmaea. The large sequence divergence in the barcoding gene COI supports the distinct specific status of the new species. With the carapace length of the largest specimen being 12.1 mm and the smallest ovigerous female only 10.0 mm, N. perexiguasp. nov. is the world’s smallest clawed lobster so far known. An updated key to the species of Nephropsis Wood-Mason, 1872 is provided.



Nephropsis perexigua sp. nov.


Tin-Yam Chan and Su-Ching Chang. 2026. Description of the World’s Smallest Clawed Lobster, A New Species of Nephropsis Wood-Mason, 1872 (Decapoda: Astacidea: Nephropidae). Journal of Crustacean Biology. 46(2); ruag015. DOI: doi.org/10.1093/jcbiol/ruag015 [10 April 2026 ]
 

Thursday, April 9, 2026

[Botany • 2026] Scottmoria umbonata (Lecythidaceae) • A New Species from Panama’s Caribbean Rainforests


Scottmoria umbonata S.A.Mori ex J.E.Bat., 

in Batista-Guerra, Campos-Pineda et Carrión, 2026. 
 
Abstract
A new species, Scottmoria umbonata, from wet Caribbean forests on the slopes of Sierra Llorona, Province of Colón, Panama, is described and illustrated. We provide a comprehensive description of the new taxon, discuss its affinities with similar species, and include line drawings, field photographs, a distribution map, and a preliminary conservation status assessment.

Bertholletia clade, Endemism, Scottmoria complex, Sierra Llorona, Taxonomy, Eudicots


Plate comparing Scottmoria umbonata (A–E) and Scottmoria woodsoniana (F–J).
Scottmoria umbonata: A. Laminated grey bark. B. Abaxial leaf blade, showing 1–2 intersecondary veins not impressed to slightly impressed adaxially. C. Inflorescence. D. Close up of bud, showing calyx lobes and pedicel-hypantium zone. E. Lateral view of mature fruit.
S. woodsoniana: F. Smooth reddish-brown bark. G. Abaxial leaf blade, showing 1–2 intersecondary veins strongly impressed adaxially. H. Inflorescence. I. Close up of bud, showing calyx lobes and pedicel-hypantium zone. J. Lateral view of mature fruit.
(A, E, J. Batista et al. 2174; B–D, Galdames et al. 6359; F, I, H, J. Batista 1449; G, J. Batista 1455; J, J. Batista 1659). Photos by Juvenal Batista and Carmen Galdames.

Scottmoria umbonata.
A. Apical and lateral views of flowers. B. Androecial hood in cross section showing yellow staminodes and nectaries. C. Androecial hood in cross section showing pink staminodes and yellow nectaries. D. Clustered or agglomerated inflorescences. E. Agglomerated inflorescences showing buds, robust rachis and lateral view of flowers. F. Rachis of inflorescences in groups of 5–6 per node.
(A, B, D–F, J. Batista et al. 2174; C, J. Batista et al. 2173). 
Photos by Juvenal Batista.

Scottmoria umbonata S.A.Mori ex J.E.Bat., sp. nov.  

Diagnosis:—Scottmoria umbonata and Scottmoria woodsoniana (Dwyer) (1965:362) Cornejo (2025: 489) are morphologically closely related species due to their similar flower color and depressed-globose fruits, but S. umbonata differs by presenting leaf blades with secondary veins slightly impressed adaxially (vs. strongly impressed in S. woodsoniana); 1–2 intersecondary veins not impressed to slightly impressed adaxially (vs. strongly impressed); leaf blade base cuneate, acute to slightly attenuate (vs. obtuse to rounded or truncate); inflorescences 2–5 per node, clustered, sometimes 1 per node (vs. solitary or 1 per node); rachis 0.5–3 (–7) cm long, thick and robust (vs. 2–8.5 cm, thin and slender); hypanthium verrucose with crowded lenticels (vs. smooth with scattered lenticels); sepals widely ovate (vs. ovate to oblong); flowers with style finely grooved (vs. smooth); style obconical (vs. columnar); stigma long-apiculate (vs. rounded to short-apiculate); mature fruits 6–7 × 3.5–8 cm (vs. up to 2.5 × 6 cm); supra-calycine zone 1.5–2.5 cm long (vs. 1–1.5 cm); the operculum with well-developed umbo from immature fruit to maturity (vs. convex operculum to poorly-developed); seeds 2–13 per mature fruit (vs. 5–6), with a flattened funicle (vs. thickened).

Etymology:—The epithet “umbonata” means having a highly developed umbo or raised central protuberance that persists from immature to mature fruit. 

Vernacular name:—The people of the Santa Rita and Sierra Llorona communities call this species “Coquito de potrero”. Its vernacular name refers to its peculiar pyxidium and the fact that it is one of the few trees that survives in pastures (“potreros”) that were once primary forests its hard wood, short height, and seeds that are edible for cattle are among the reasons why it is not cut down in the area.


Juvenal E. BATISTA-GUERRA, Ernesto CAMPOS-PINEDA and Juan F. CARRIÓN. 2026. Scottmoria umbonata sp. nov. (Lecythidaceae) from Panama’s Caribbean rainforests.  Phytotaxa. 750(3); 147-156. DOI: doi.org/10.11646/phytotaxa.750.3.1 [2026-04-07]


Wednesday, March 4, 2026

[PaleoEntomology • 2026] Hypoponera electrocacica • The Ant Genus Hypoponera (Hymenoptera: Formicidae) in Dominican Amber

 

Hypoponera electrocacica 
Fiorentino, Bouju, Sosa, Navarro & Barden, 2026
 
 
Abstract
Hypoponera Santschi, 1938 is a genus of ponerine ants, well known for its simplified morphology, lacking any clear autopomorphy, and its cosmopolitan distribution. Here, we describe the first Hypoponera in Dominican amber. The discovery of Hypoponera electrocacica new species confirms the long-expected presence of the genus in the Caribbean Miocene. The modern diversity of Hypoponera in the Greater Antilles now stands at five species and two putative subspecies.

Systematic paleontology
Order Hymenoptera Linnaeus, Reference Linnaeus1758

Family Formicidae Latreille, Reference Latreille1802
Subfamily Ponerinae Lepeletier de Saint-Fargeau, Reference Lepeletier de Saint-Fargeau1835

Genus Hypoponera Santschi, Reference Santschi1938

Type species: Ponera abeillei André, 1881, 
now Hypoponera abeillei (André, Reference André1881).

 Photomicrographs and illustration of Hypoponera electrocacica n. sp., holotype specimen, MNHNSD FOS 18.126.
(1) Head in front face view. (2) Illustration of forewing venation. (3) Body in dorsal view. (4) Body in lateral view.
Scale bars = 0.5 mm.

Hypoponera electrocacica new species

Etymology: The specific epithet electrocacica (from the Latin electrum, meaning ‘amber,’ and the feminine form of the Taino word cacique, meaning ‘chief’) is a feminine singular adjective in the nominative case. It refers to the alate ant or queen trapped in amber.


Gianpiero Fiorentino, Valentine Bouju, Diyael Sosa, Santo Navarro  and Phillip Barden. 2026. The Ant Genus Hypoponera (Hymenoptera: Formicidae) in Dominican Amber. Journal of Paleontology. First View. DOI: doi.org/10.1017/jpa.2025.10213 [05 February 2026]

Tuesday, March 3, 2026

[Crustacea • 2025] Trichocallia delicatula • A New Genus and Species of the Ghost-shrimp Family Callianideidae (Decapoda: Axiidea) from the Caribbean coast of Panama


Trichocallia delicatula   
Anker, 2025 
 

Abstract   
peculiar new species of ghost-shrimp from Bocas del Toro Archipelago on the Caribbean coast of Panama is assigned to the genus Trichocallia gen. nov. in the family Callianideidae. The holotype and presently the only known specimen of Trichocallia delicatula sp. nov. was collected with a suction pump on a silty-muddy bottom under a network of decomposing and partly overgrown mangrove roots. The new genus appears to be most closely related to Callianidea H. Milne Edwards, 1837, with two species in the Indo-West Pacific, and Paracallianidea Sakai, 1992, with two species, one in the western Atlantic and one in the eastern Pacific.

Keywords: Malacostraca, Decapod crustacean, New taxon, Caribbean Sea, West Atlantic, Marine biodiversity


Trichocallia gen. nov.  
 Trichocallia delicatula sp. nov. 


Arthur Anker. 2025. A New Genus and Species of the Ghost-shrimp Family Callianideidae from the Caribbean coast of Panama (Decapoda: Axiidea). Papéis Avulsos De Zoologia. 65; e202565009.  DOI: doi.org/10.11606/1807-0205/2025.65.009

Saturday, December 27, 2025

[Crustacea • 2025] Caribodillo martinicensis • A New Genus and Species of terrestrial isopod (Oniscidea: Armadillidae) endemic to Martinique


Caribodillo martinicensis  
Kästle, Binder, Jones & Coulis, 2025
  

The terrestrial isopods of the family Armadillidae Brandt, 1833 are poorly known in tropical regions, many new species remain to be described and the classification of many already described species requires revision. The aim of this work is to improve our knowledge of the terrestrial isopods of this family in Martinique, an island in the Lesser Antilles archipelago. The species Caribodillo martinicensis n. gen., n. sp. is described, and a genetic barcode (CO1) is provided. Furthermore, the relationship between Caribodillo n. gen., and Venezillo Verhoeff, 1928 is discussed. The species constitutes the second Armadillidae endemic to the Lesser Antilles, the first one being Cubaris depressa (Dollfuss, 1896) from Saint-Vincent. In addition to increasing our knowledge on the invertebrate biodiversity of the lesser Antilles, the description of this new genus will facilitate the taxonomy of Armadillidae species in the region.

Keywords: Caribbean, Lesser Antilles, Neotropics, Venezillo, woodlice, fluorescence, barcoding, new species, new genus



Caribodillo martinicensis n. gen., n. sp. 

 

 
Benedikt KÄSTLE, Stephanie BINDER, Nathan T. JONES and Mathieu COULIS. 2025. Description of A New Genus and Species of terrestrial isopod (Oniscidea, Armadillidae) endemic to Martinique. Zoosystema. 47(29); 721-729. DOI: 10.5252/zoosystema2025v47a29 [14 November 2025]

Saturday, December 20, 2025

[PaleoEntomology • 2025] Aulacigaster alabaster, A. breviradia, ... • Aulacigaster Macquart (Diptera: Schizophora: Aulacigastridae) in Amber

 

Aulacigaster alabaster 
Grimaldi, 2025 

Abstract
Four new species of the nearly worldwide genus Aulacigaster are described based on specimens preserved in Late Miocene amber (15–17 million years old) from the Dominican Republic: Aulacigaster alabaster n. sp., A. breviradia n. sp., A. mathisi n. sp., and A. rungae n. sp. Details of the male terminalia of A. neoleucopeza are provided as a comparison to three of the fossil species. Commentary is provided on morphological characters pertaining to aulacigastrid relationships. All the fossil Aulacigaster belong to the A. leucopeza group, which today predominates in the Holarctic Region, Africa and Asia, with only a few of the 42 Neotropical species in the genus belonging to the group. No leucopeza-group species are known from the Caribbean, so the fossils probably represent significant extinction in the region.

KEYWORDS: acalyptrates, biogeography, fossil resin, Hispaniola, Neogene


David A. Grimaldi. 2025. Aulacigaster Macquart in Amber (Diptera: Schizophora: Aulacigastridae). Proceedings of the Entomological Society of Washington. 127(3):458-473. DOI: doi.org/10.4289/0013-8797.127.3.458 [28 November 2025]

Saturday, October 18, 2025

[Paleontology • 2025] Chiloconger aflorens, Dasyscopelus inopinatus, ... • Remarkable Dominance of myctophid otoliths in Upper Miocene Chagres Formation, Caribbean Panama

  

The Piña assemblage, represents a rare fossil record of a mesopelagic fish-dominated ecosystem linked to coastal upwelling during the Late Miocene
Reconstruction of Late Miocene mesopelagic fish-dominated ecosystem in Caribbean Panama.
 Artwork by Yun-Kae Kiang.

in Lin​ et O’Dea, 2025. 

Abstract 
Marine fossils from the Upper Miocene Chagres Formation in northern Panama offer critical insights into the paleoenvironmental conditions and ecological responses prior to the separation of the Atlantic from the Pacific by the formation of the Isthmus of Panama. Here we present a systematic study based on more than 6,200 otoliths collected from a coastal exposure near the town of Piña, Colón. This assemblage is remarkable for the extraordinary dominance of the family Myctophidae, constituting over 96% of specimens. The otolith density in the sediments is among the richest known globally (278.80 ± 135.59 otoliths/kg). The taxonomic composition is represented by 31 taxa across 12 families, including four new species: namely Chiloconger aflorens sp. nov., Dasyscopelus inopinatus sp. nov., Hoplostethus boyae sp. nov., and Malakichthys schwarzhansi sp. nov. Taphonomic evidence, combined with abundant predatory marine vertebrate fossils and extensive burrow ichnofossils, indicates a dynamic and highly productive nearshore ecosystem. The dominance of myctophids and multiple lines of evidence support the existence of a Late Miocene coastal upwelling system in the region, highlighted by efficient trophic transfer channeled from high primary production to apex predators. These findings provide a nuanced understanding of Neogene marine ecosystems prior to the final emergence of the Isthmus of Panama.



Reconstruction of Late Miocene mesopelagic fish-dominated ecosystem in Caribbean Panama.
The illustration highlights key taxa, including lanternfish, hatchetfish, billfish, Isistius sharks, Otodus megalodon, Isthminia panamensis, and Lepidochelys sea turtle.
 Artwork by Yun-Kae Kiang.
 

Chien-Hsiang Lin​ and Aaron O’Dea. 2025. Remarkable Dominance of myctophid otoliths in Upper Miocene Chagres Formation, Caribbean Panama. PeerJ. 13:e20155. DOI: doi.org/10.7717/peerj.20155 [October 17, 2025]

Friday, October 10, 2025

[Botany • 2025] Pinguicula panfetiae (Lentibulariaceae) • A New Caribbean Butterwort from eastern Cuba

 

Pinguicula panfetiae Panco, P.Temple & Y.Domínguez,
  
in Pančo, Temple, Cobas, Lobaina, Matisova et Domínguez, 2025. 

Abstract
Background and aims – Pinguicula is a cosmopolitan genus of carnivorous plants with more than 100 species, most of them distributed in two centres of diversity: Europe and the Central American-Caribbean region. Fourteen species are reported for Cuba. During fieldwork to study Pinguicula populations in eastern Cuba, a white-flowered taxon, previously misidentified as Pinguicula albida or Pinguicula jaraguana, was collected in the mountainous regions of the Alejandro de Humboldt National Park. This taxon represents a new species for which we present a full description, a distribution map, illustrations, photographs, and a conservation status.

Material and methods – Living and preserved material of several populations of white-flowered Pinguicula from Cuba were analysed, measured, and described based on vegetative and reproductive characters. Statistical analyses were carried out to explore the differences among the collections. The preliminary conservation status of the new species was assessed based on the IUCN guidelines and criteria.

Key results – Pinguicula panfetiae is described as a new species endemic to eastern Cuba. It thrives on permanently wet, ferritic soils derived from serpentine bedrocks, on slopes above the banks of the River Toa in association with surrounding semi-arid montane serpentine shrubwood (charrascal). It differs from the closely related species, Pinguicula albida and Pinguicula jaraguana, primarily by its smaller rosettes with obovate, suberect to erect leaves, non-involute leaf margins, smaller flowers up to 1–1.3 cm including the spur, longer (0.6–0.7 mm) and wider (0.18–0.22 mm) seeds, and that it grows in full sun.

Conclusion – The newly described species increases the number of Pinguicula in the Cuban archipelago to 15. Pinguicula panfetiae is preliminarily assessed as Critically Endangered (CR) according to the IUCN Red List Categories and Criteria.

Keywords: butterwort, carnivorous plant, critically endangered, endemic, Pinguicula albidaPinguicula jaraguana, taxonomy

Pinguicula panfetiae based on type specimens (holotype HAJB [G 002601], isotypes B, BSC [22092]) and on living material.
A. Habit, perennial herb with details of the trichomes of the leaf and the inflorescence scape (circles). B. Emerging leaf with involute margin. C. Frontal view of the flower. D. Lateral view of the flower. E1. Internal trichomes of the outer part of the corolla tube. E2. Internal trichomes of the middle part of the corolla tube. E3. Internal trichomes of the inner part of the corolla tube. F. Dissected flower with the persistent calyx and lateral view of the stamens and gynoecium. G. Fruit with persistent calyx. H. Lateral view of the seed.
Illustration by Yoannis Domínguez.

Pinguicula panfetiae at the type locality in the Alejandro de Humboldt National Park, eastern Cuba.
A. Habit. B. Frontal view of the flower. C. Lateral view of the flower. D. Dissected flower showing the persistent calyx and stamens and gynoecium. E. Lateral view of the fruit. F. Habitat at the banks of the River Toa. G. Regular rosettes with suberect leaves. H. Calathiform rosettes with erect leaves.
Photos by Ivan Pančo (A–E, G–H) and Ivana Matisova (F).

Pinguicula panfetiae Panco, P.Temple & Y.Domínguez, sp. nov.

Diagnosis: Pinguicula jaraguana Casper affinis sed brevibus, foliis ovobatis, erectis suberectis, margine integerrima non involute, flores parvi 10–13 mm (calcari incluso), semina 0.6–0.7 mm longa (appendix incluso), 0.18–0.22 mm lata.

Distinct vegetative and reproductive morphological traits of related species.
 A. Pinguicula panfetiae. B. Pinguicula albida. C. Pinguicula jaraguana.
Photos by Ivan Pančo (A, C) and Yoannis Domínguez (B).

Etymology: Pinguicula panfetiae is named in honour of the late Cuban botanist, Prof. Dr Cristina Mercedes Panfet Valdés, to acknowledge her contributions to Cuban flora research, in particular, with regard to the carnivorous plant families for which she was the main Cuban specialist. Besides her research, Prof. Panfet dedicated most of her life to empowering many generations of Cuban botanists to achieve professional standing, which is also acknowledged herein.


 Ivan Pančo, Paul Temple, Geovanys Rodríguez Cobas, Noel Coutin Lobaina, Ivana Matisova and Yoannis Domínguez. 2025. Pinguicula panfetiae (Lentibulariaceae), A New Caribbean Butterwort from eastern Cuba. Plant Ecology and Evolution. 158(3): 382-391. DOI: doi.org/10.5091/plecevo.161641
 

Thursday, July 31, 2025

[Diplopoda • 2024] On the Identity of the enigmatic Millipede Genus Inodesmus Cook, 1896 (Polydesmida: Haplodesmidae)


 Inodesmus jamaicensis Cook, 1896.
 
in Romero-Rincon et Alvear, 2024.
Scale bars: 1 mm. 
Photographs taken by Karolyn Darrow (USNM) and Stephanie Ware (FMNH).
 
Abstract
The identity of Inodesmus Cook, 1896 and its single species, Inodesmus jamaicensis Cook, 1896, has been a mystery for decades. This species was described from a Jamaican cave but not only did the repository of the type material remain unknown, but also the types were believed to be lost. Here we redescribe the species and designate a lectotype and a paralectotype from the newly found type material. The genus Agathodesmus Silvestri, 1910 from Australia and New Caledonia is presented as a new junior subjective synonym of Inodesmus. Besides I. jamaicensis, the genus Inodesmus includes 23 species: I. adelphus (Mesibov, 2013) comb. nov.; I. aenigmaticus (Mesibov, 2013) comb. nov.; I. agnus (Mesibov, 2013) comb. nov.; I. anici (Mesibov, 2013) comb. nov.; I. baccatus (Carl, 1926) comb. nov.; I. bonang (Mesibov, 2013) comb. nov.; I. bucculentus (Jeekel, 1986) comb. nov.; I. carorum (Mesibov, 2013) comb. nov.; I. chandleri (Mesibov, 2013) comb. nov.; I. gayundah (Mesibov, 2013) comb. nov.; I. hahnensis (Mesibov, 2013) comb. nov.; I. johnsi (Mesibov, 2009) comb. nov.; I. kerensis (Mesibov, 2013) comb. nov.; I. kirrama (Mesibov, 2013) comb. nov.; I. millaa (Mesibov, 2013) comb. nov.; I. morwellensis (Mesibov, 2013) comb. nov.; I. parapholeus (Mesibov, 2013) comb. nov.; I. quintanus (Mesibov, 2013) comb. nov.; I. sagma (Mesibov, 2013) comb. nov.; I. steeli (Silvestri, 1910) comb. nov.; I. summus (Mesibov, 2013) comb. nov.; I. urbanus (Romero-Rincon & Douch, 2024) comb. nov.; I. yuccabinensis (Mesibov, 2013) comb. nov. The bizarre disjunct distribution of Inodesmus is briefly discussed.

Myriapoda, Diplopoda, Jamaica, Agathodesmus, synonymy, redescription

 Inodesmus jamaicensis Cook, 1896.
A, B, C. Male lectotype (USNM-ENT01968074). D, E, F. Male (FMNH-INS000001391).
A, D. Ventral view. B, E. Dorsal view. C, F. Lateral view.
Scale bars: 1 mm. Photographs of figures A-C taken by Karolyn Darrow (USNM). Photographs of figures D-F taken by Stephanie Ware (FMNH).


JUAN ROMERO-RINCON and SANTIAGO ALVEAR. 2024. On the Identity of the enigmatic Millipede Genus Inodesmus Cook, 1896 (Polydesmida: Haplodesmidae).  Zootaxa. 5437(3); 433-440. DOI: doi.org/10.11646/zootaxa.5437.3.8 [2024-04-15]

Wednesday, May 7, 2025

[Entomology • 2020] Antillobinthus inexpectatus • A New Genus and Species of Cricket from eastern Cuba: the First Antillean True Eneopterinae (Orthoptera: Gryllidae: Eneopterinae)

 
Antillobinthus inexpectatus Yong & Desutter-Grandcolas,

in Yong, Desutter-Grandcolas, Teruel & Leguin, 2020. 

Abstract
The occurrence of true Eneopterinae in the Antilles is recorded herein for the first time, with the description of a new genus and species herein described from eastern Cuba (Greater Antilles): Antillobinthus inexpectatus Yong & Desutter-Grandcolas, n. gen. n. sp. It is described and illustrated in detail, including color photographs of habitus, morphologically diagnostic characters and habitat. The present finding revives a biogeographical debate, as no Eneopterinae was up-to-now known from the Antilles.

Orthoptera, cricket, taxonomy, new genus, new species, distribution, Cuba, Greater Antilles
 
Antillobinthus inexpectatus Yong & Desutter-Grandcolas n. sp.,
adult male holotype (1) and adult female allotype (2),
habitus: a) dorsal; b) lateral; c) ventral.
Scale bar in millimeters.

Antillobinthus inexpectatus Yong & Desutter-Grandcolas n. sp.,
adult male holotype (3) and adult female allotype (4),
close-ups: a) head and thorax, dorsal; b) head and thorax, lateral; c) head, frontal.


Sheyla YONG, Laure DESUTTER-GRANDCOLAS, Rolando TERUEL and Elise-Anne LEGUIN. 2020. A New Genus and Species of Cricket from eastern Cuba: the First Antillean True Eneopterinae (Orthoptera: Gryllidae: Eneopterinae). Zootaxa. 4858(2); 261–273. DOI: doi.org/10.11646/zootaxa.4858.2.7

Friday, May 2, 2025

[Paleontology • 2025] A South American sebecid from the Miocene of Hispaniola documents the presence of Apex Predators in early West Indies Ecosystems


a group of hungry sebecids have caught a large crocodile on land

in Viñola López, Velez-Juarbe, Münch, Milan, Antoine, Marivaux, Jimenez-Vasquez et Bloch, 2025.
Illustration by Hodari Nundu and Jorge Machuky instagram.com/hodarinundu 

Abstract
The absence of terrestrial apex predators on oceanic islands led to the evolution of endemic secondary apex predators like birds, snakes and crocodiles, and loss of defence mechanisms among species. These patterns are well documented in modern and Quaternary terrestrial communities of the West Indies, suggesting that biodiversity there assembled similarly through overwater dispersal. Here, we describe fossils of a terrestrial apex predator, a sebecid crocodyliform with South American origins from the late Neogene of Hispaniola that challenge this scenario. These fossils, along with other putative sebecid specimens from Cuba and Puerto Rico, show that deep-time Caribbean ecosystems more closely resembled coeval localities in South America than those of today. We argue that Plio-Pleistocene extinction of apex predators in the West Indies resulted in mesopredator release and other evolutionary patterns traditionally observed on oceanic islands. Adaptations to a terrestrial lifestyle documented for sebecids and the chronology of West Indian fossils strongly suggest that they reached the islands in the Eocene–Oligocene through transient land connections with South America or island hopping. Furthermore, sebecids persisted in the West Indies for at least five million years after their extinction in South America, preserving the last populations of notosuchians yet recovered from the fossil record.

Imagine a crocodile built like a greyhound—that's a sebecid. Standing tall, with some species reaching 20 feet in length, sebecids were top predators until they went extinct during the Miocene.
Illustration by Jorge Machuky

a group of hungry sebecids have caught a large crocodile on land

Illustration by Hodari Nundu and Jorge Machuky


Lázaro W. Viñola López, Jorge Velez-Juarbe, Philippe Münch, Juan N. Almonte Milan, Pierre-Olivier Antoine, Laurent Marivaux, Osvaldo Jimenez-Vasquez and Jonathan Bloch. 2025. A South American sebecid from the Miocene of Hispaniola documents the presence of Apex Predators in early West Indies Ecosystems. Proc. R. Soc. B. 292: 20242891. DOI: doi.org/10.1098/rspb.2024.2891 [30 April 2025]

Thursday, April 17, 2025

[PaleoEntomology • 2025] Basiceros enana • A Fossil-informed pattern of Body Size increase and local extinction in Basiceros dirt ants (Hymenoptera: Formicidae)

 

 Basiceros enana
Fiorentino, Probst, Richter, Economo & Barden, 2025
 

Abstract
Basiceros dirt ants are morphologically distinct and widely distributed members of Neotropical communities. These ants possess features that aid in leaf litter camouflage and are larger than other closely related lineages with similar cryptic adaptations. Here, we report the first fossil of this genus group, Basiceros enana sp. nov., from Miocene-aged Dominican amber, which reveals a pattern of body size evolution and disjunct biogeography. The fossil evidences the local extinction of Basiceros in the Caribbean, even as living Basiceros are known from Honduras to Southern Brazil. Using combined morphological and molecular datasets of all closely related lineages, we recover the evolutionary trajectory for body size within the group, demonstrating that body size was initially small in these ants and followed by a rapid expansion of body size in the common ancestor of all living species. Results reflect the capacity for early morphological evolution to influence perceived patterns of body size increase through a mosaic of ancestral legacy and continuous enlargement.

Keywords: fossil, local extinction, ancestral state reconstruction, Caribbean evolution, body size 

Artistic rendition of Basiceros enana preserved in Dominican amber from CT-scan data. Specialized hairs used for picking up dirt can be seen highlighted in yellow covering the ants' legs and head.
Credit: Gianpiero Fiorentino (NJIT)

Basiceros enana sp. nov. 


Gianpiero Fiorentino, Rodolfo Probst, Adrian Richter, Evan P. Economo and Phillip Barden. 2025. A Fossil-informed pattern of Body Size increase and local extinction in Basiceros dirt ants (Hymenoptera: Formicidae). Proc. R. Soc. B. 292; 20242171. DOI: doi.org/10.1098/rspb.2024.2171 [16 April 2025]

Saturday, December 14, 2024

[Herpetology • 2024] Liotyphlops pino • A New Species of the genus Liotyphlops Peters, 1881 (Serpentes: Anomalepididae) from the Caribbean coast of Honduras

 

Liotyphlops pino
Antúnez-Fonseca, Ramos-Galdámez, Solís, Díaz-Ricaurte & Wilson, 2024. 

 
Abstract
We describe a new species of the genus Liotyphlops from the Caribbean coast of Honduras in Nuclear Mesoamerica, a genus previously known only from Isthmian Mesoamerica and northern, central, and eastern South America. Our description is based on a single specimen found by chance. The new species differs from other congeners by unique combination of external morphological characteristics, specifically by the presence of three scales on the first vertical row of the dorsals, three supralabial scales, 425 dorsal scales, and dorsals in 22 series of uniformly pigmented scales across the body. The type locality represents the northernmost record for the genus and is located 920 km (airline) northwest of the previous record for Liotyphlops albirostris in Costa Rica. We developed an identification key for the genus and discussed natural history and biogeographical aspects of Liotyphlops, including the species described here.

Reptilia, Distribution, external morphology, fossorial snakes, Pico Bonito National Park, species diversity


 
Cristopher A. Antúnez-Fonseca, Josue Ramos-Galdámez, José Mario Solís, Juan C. Díaz-Ricaurte and Larry David Wilson. 2024. A New Species of the genus Liotyphlops Peters, 1881 (Serpentes: Anomalepididae) from the Caribbean coast of Honduras.  Zootaxa. 5543(1); 97-110. DOI: doi.org/10.11646/zootaxa.5543.1.5 


Wednesday, November 20, 2024

[Arachnida • 2024] Trichopelma grandeA hairy Giant among Dwarves: A distinct New Species of Tarantula (Araneae: Theraphosidae) from Cuba

 

Trichopelma grande
Ortiz & Fonseca, 2024
 

ABSTRACT
Large size, tropical climate, topographic complexity, and millions of years of isolation have turned the Greater Antillean islands into natural laboratories of evolution. Several groups have experienced explosive diversification across these islands, leading to highly diverse and endemic biotas and species experiencing unique adaptations. Here we describe a new tarantula species from the Viñales area, a biodiversity hotspot in western Cuba. Despite being a middle-sized species with large projected setae on the legs, reminiscent of those in arboreal tarantulas, phylogenomic analysis, diagnostic morphological features, and trap-door retreat building behaviour identifies it as the largest known representative of Trichopelma, and the only one with such hirsute legs. We provide mitochondrial barcoding data and a database of ultraconserved elements loci of the holotype of this species, which will help to include it in future phylogenetic studies of Theraphosidae. Given its limited distribution range, and its apparent absence in natural history collections despite its distinct appearance, this species might be scarce, positioning it as a potential conservation concern.
 
KEYWORDS: Gigantism, Greater Antilles, phylogenomics, rare species, Trichopelmatinae, UCE sequencing

Family Theraphosidae Thorell, 1869

Genus Trichopelma Simon, 1888



Trichopelma grande sp. n.



 
David Ortiz and Elier Fonseca. 2024. A hairy Giant among Dwarves: Trichopelma grande, A distinct New Species of Tarantula from Cuba (Araneae: Theraphosidae). Journal of Natural History. 58(45-48); 2189-2205. DOI: doi.org/10.1080/00222933.2024.2401921 

Tuesday, September 24, 2024

[Ichthyology • 2024] Sphyrna alleni • A New Hammerhead Shark (Carcharhiniformes: Sphyrnidae) from the Caribbean and the Southwest Atlantic


Sphyrna alleni 
Gonzalez, Postaire, Driggers, Caballero & Chapman, 2024
 
 
Abstract
Hammerhead sharks (Family Sphyrnidae) comprise a monophyletic Miocene radiation of carcharhiniform sharks characterized by their laterally expanded and dorsoventrally compressed head (‘cephalofoil’). The bonnethead shark (Sphyrna tiburo) is currently described as a single amphi-American hammerhead species composed of the subspecies Sphyrna tiburo tiburo in the Western Atlantic Ocean (WA) and S. tiburo vespertina in the Eastern Pacific Ocean (EP). Variation in mitochondrial DNA and cephalofoil shape suggest a species complex, with S. tiburo occurring in the U.S., Mexico, and Bahamas; S. aff. tiburo occurring from Belize to Brazil; and S. vespertina occurring in the EP. Morphometric, meristic, and genetic variation was used to resolve the bonnethead shark complex in the Western Atlantic. Twenty-three specimens (12 S. aff. tiburo from Belize and 11 S. tiburo from U.S.) were subject to sixty-one morphometric measurements and three meristic characters (counts of the number of precaudal vertebrae, lower and upper rows of functional teeth). An allometric formula was used to standardize any effect caused by differences in size of the individuals and data were analyzed with univariate and multivariate statistics. Sphyrna aff. tiburo and S. tiburo have non-overlapping vertebral counts (80-83 and 71-74 respectively) but no morphometric differences were detected. Although not captured in morphometric analysis, the cephalofoil of S. aff. tiburo has a more pointed anterior margin than S. tiburo that together with lobule shaped posterior margins gives the cephalofoil a distinctive shovel-shaped appearance. Concatenated mitochondrial sequences and 12 nuclear microsatellite markers clearly separated S. aff. tiburo and S. tiburo. We conclude that this complex comprises two species in the Western Atlantic, S. tiburo and S. alleni sp. nov., and we provide a description of the latter, which is distinguished by precaudal vertebral counts (80-83), a shovel-shaped cephalofoil with rounded posterior margins, and robust differences in mitochondrial and nuclear genetic markers. We suggest nuclear genetic and meristic examination of EP bonnetheads is needed to update the taxonomical status and redescribe S. vespertina.

Pisces, Shovelbill shark, morphology, mtDNA, nDNA, phylogenetics, species complex, taxonomy


Sphyrna alleni sp. nov.,



Cindy Gonzalez, Bautisse Postaire, William Driggers, Susana Caballero and Demian Chapman. 2024. 2024. Sphyrna alleni sp. nov., A New Hammerhead Shark (Carcharhiniformes, Sphyrnidae) from the Caribbean and the Southwest Atlantic. Zootaxa. 5512(4); 491-511. DOI: doi.org/10.11646/zootaxa.5512.4.2