Showing posts with label Myliobatiformes. Show all posts
Showing posts with label Myliobatiformes. Show all posts

Sunday, January 11, 2026

[Ichthyology • 2026] Hemitrygon ariakensis • Redescription of Hemitrygon akajei with Description of the cryptic stingray species (Myliobatoidei: Dasyatidae) from the Northwest Pacific


Hemitrygon ariakensis  
 Furumitsu & Yamaguchi, 2025. 
 

Abstract
We redescribe Hemitrygon akajei (Bürger in Müller and Henle 1841) based on the lectotype and newly collected specimens, and describe Hemitrygon ariakensis sp. nov. from western Japan. Owing to their considerable morphological similarity and sympatric distribution, these two species have been subject to longstanding taxonomic confusion, with one remaining unrecognized as a cryptic species for over 160 years prior to the availability of molecular evidence. The red stingray H. akajei was originally described from six syntypes, including juveniles that likely represented multiple species, including the cryptic one. Species identification in Hemitrygon is complicated not only by interspecific morphological resemblance but also by marked ontogenetic changes between juveniles and adults. Herein, we describe the external morphology of both species across developmental stages to aid in their distinction. Hemitrygon akajei and Hemitrygon ariakensis sp. nov. can be distinguished by the following combination of characters: arrangement of denticles on dorsal surface of disc and posterior part of tail; shape, size, and arrangement of thorns on dorsal tail anterior to caudal spine; presence or absence of transverse groove on ventral surface of disc; coloration of ventral tail fold; shape of outer marginal color band on ventral disc; morphology of clasper and prepelvic processes of pelvic girdle; and number of prespine separate centra. Stingrays are important fishery resources and key mesopredators in Japanese coastal ecosystems, influencing populations of other fishery species. The ability to distinguish these two species will facilitate more accurate ecological research, inform species-specific conservation strategies, and promote effective biodiversity management. Such taxonomic resolution is essential for understanding coastal ecosystem dynamics. 

Keywords: Taxonomy, New species, Cryptic species, Western Japan, Ariake Bay

Fresh specimens of Hemitrygon ariakensis sp. nov.
a, b Holotype (FFNU-P-02129, 363.3 mm DW, male, mature); c, d paratype (FFNU-P-02126, 154.4 mm DW, male, immature); e, f paratype (FFNU-P-02141, 545.1 mm DW, female, mature). a, c, e Dorsal view; b, d, f ventral view. Scales indicate 50 mm

Illustrations originally considered Hemitrygon akajei; herein reidentified as Hemitrygon ariakensis sp. nov. based on the morphological characters depicted.
a Original illustration from Bürger’s unpublished manuscript (No. 13; RMNH.ART.256, courtesy of Naturalis Biodiversity Center, CC0 1.0), b illustration from the original description in Müller and Henle (1841), c illustration from the Glover Atlas, illustrated by Hagiwara (1915), in the collection of Nagasaki University Library.


 Keisuke Furumitsu and Atsuko Yamaguchi. 2025. Redescription of Hemitrygon akajei with Description of the cryptic stingray species Hemitrygon ariakensis sp. nov. from the Northwest Pacific (Myliobatoidei: Dasyatidae).  Ichthyological Research. DOI: doi.org/10.1007/s10228-025-01048-5 [19 December 2025]


Tuesday, August 19, 2025

[Ichthyology • 2025] Mobula yarae • An Integrative Taxonomy Investigation unravels A Cryptic Species of Mobula Rafinesque, 1810 (Myliobatiformes: Mobulidae), from the Atlantic Ocean

 

Mobula yarae   Bucair & Marshall, 

in Bucair, Hinojosa-Alvarez, Marshall, Pate, Francini,  Garrido, Capel, Loboda, Monteiro, Bruno, Vaga, Dove, Hoopes, Perry et Kitahara, 2025.

Abstract
Manta and devil rays comprise a vulnerable animal group with a complex nomenclatural history and a somewhat unresolved taxonomy. The existence of a putative undescribed species of manta ray in the Atlantic Ocean has been proposed for over 15 years. Molecular assessments have been crucial for improving our understanding of the evolutionary history and, therefore, species delimitation of this threatened group. Herein, morphological and molecular data from Western Atlantic specimens support the formal description of a new taxon assigned to the genus Mobula Rafinesque, 1810. Morphologically, this new mobulid species differs from its closest congeners (i.e., Mobula birostris and Mobula alfredi) on the stellate-shaped dermal denticle form and non-bifurcate ramification, the characteristic dorsal surface with V-shaped supra-branchial patches, ventral colour patterns, presence and feature of a caudal bulb with a residual spine, 9 to 13 rows of teeth, and overall morphometrics. Based on nearly complete mitochondrial genome and nuclear data, phylogeny reconstructions recovered the new species as a monophyletic lineage closely related to M. birostris and M. alfredi. To date, the new manta ray species has been recorded only in Atlantic waters, inhabiting oceanic islands and archipelagos as well as coastal and estuarine regions, areas under major threats due to pollution, boat strikes, coastal fisheries, and habitat degradation. Unfortunately, the species has been reported caught as bycatch, being either discarded, shared, or sold, in addition to boat strike and entanglement reports, suggesting that this new mobulid species, like all other mobulids, is likely threatened.
 
Keywords: Biodiversity, Conservation, Manta ray, Mobulids, Systematics

Distinct colouration of manta ray species. Dorsal and ventral colouration pattern of
Mobula birostris a, d, M. alfredi b, e, and Mobula yarae sp. nov. c, f.
Photo credits: Leo Francini a; Guy Stevens | Manta Trust b, e; Rawany Porfilho c; Mauricio Andrade d; and Nayara Bucair f

Order Myliobatiformes.
Family Mobulidae Gill, 1893.

Genus Mobula Rafinesque, 1810.

Mobula yarae sp. nov. Bucair & Marshall

Colour morphs variation on the regular spectrum of Mobula yarae sp. nov.
 Dorsal (column a and b) and ventral (column c and d) colouration pattern disparity. Photo credits/sources: Projeto Mantas do Brasil and Marine Megafauna Foundation database



Nayara Bucair, Silvia Hinojosa-Alvarez, Andrea Denise Marshall, Jessica Pate, Carlo Leopoldo Bezerra Francini, Amana Guedes Garrido, Katia Cristina Cruz Capel, Thiago Silva Loboda, Jhonatas Sirino Monteiro, Carlos Eduardo Malavasi Bruno, Claudia Francesca Vaga, Alistair D. M. Dove, Lisa A. Hoopes, Cameron Perry  and Marcelo V. Kitahara. 2025. An Integrative Taxonomy Investigation unravels A Cryptic Species of Mobula Rafinesque, 1810 (Mobulidae, Myliobatiformes), from the Atlantic Ocean. Environmental Biology of Fishes. DOI: doi.org/10.1007/s10641-025-01727-2  [23 July 2025]
https://www.smithsonianmag.com/smart-news/scientists-identify-a-new-manta-ray-species-just-the-third-known-in-the-world-180987109/


Wednesday, June 25, 2025

[Ichthyology • 2025] Neotrygon romeoi • A New Blue-spotted Maskray Species (Myliobatiformes: Dasyatidae: Neotrygon) from Fiji

 

Live colouration of Neotrygon romeoi n. sp. from around Fiji:
(a) Lautoka, mixed rocky and sand habitat (©Leon Perrie, observed 1 July 2023, inaturalist.org); (b) Near South Sea Island, rocky reef, (©Jack Crosbie, 17 August 2023,  inaturalist.org); (c) Drawaqa Island, Yasawas on sand flat with some seagrass in ≃18 m of water, (©Robert Macfarlane, 7 January 2024, modified); (d) Suva foreshore, on seagrass in ≃0.2 m of water (©Tom Vierus, observed 24 March 2022, inaturalist.org); (e) Mana Island, over seagrass (©Floyd E. Hayes, observed 27 March 2018, inaturalist.org).

Glaus, White, O'Neill, Thurnheer & Appleyard, 2025

Abstract
Neotrygon romeoi n. sp. (Dasyatidae), a new species of blue-spotted maskray from Fiji, previously confused with Neotrygon kuhlii (Müller and Henle 1841) or Neotrygon trigonoides (Castelnau 1873), is described based on nine specimens (310–397 mm disc width) from Fiji. Neotrygon romeoi n. sp. is a large maskray with a broadly angled snout, long claspers in adult males and a median row of thornlets extending from the nape to the tail base. Fresh specimens have a brownish dorsal surface with dark mask-like marking covering across and between the eyes (sometimes indistinct), two large brown to black branchial blotches posterior to the spiracles, numerous black pepper-like spots mainly concentrated in masked area and the branchial blotches, and sometimes having small, dark-edged pale blue to whitish spots. The new species is further characterized by ocellated spots in the medial belt usually absent. Molecular analysis based on 570 bp of partial cytochrome c oxidase subunit 1 (COI) mitochondrial gene also supports that N. romeoi n. sp. is a distinct species from other congeners. The new species, known only from the Fiji Islands, may thus warrant inclusion in Fiji's Endangered and Protected Species Act.

Keywords: Fiji, endemic, new species, Oceania, South Pacific Ocean, species complex

Live colouration of Neotrygon romeoi n. sp. from around Fiji:
(a) Lautoka, mixed rocky and sand habitat (©Leon Perrie, observed 1 July 2023, modified, www.inaturalist.org/observations/171357979); (b) Near South Sea Island, rocky reef, (©Jack Crosbie, observed 17 August 2023, modified, www.inaturalist.org/observations/180044335); (c) Drawaqa Island, Yasawas on sand flat with some seagrass in ≃18 m of water, (©Robert Macfarlane, 7 January 2024, modified); (d) Suva foreshore, on seagrass in ≃0.2 m of water (©Tom Vierus, observed 24 March 2022, modified, www.inaturalist.org/observations/109579248); (e) Mana Island, over seagrass (©Floyd E. Hayes, observed 27 March 2018, modified, www.inaturalist.org/observations/99347812).

Neotrygon romeoi n. sp. 

 Etymology: The epithet is dedicated to the late Romeo Glaus, the father of the first author, in recognition of his lasting inspiration, enduring support and deep respect for nature. 
Vernacular: Fiji Maskray.


Kerstin Glaus, William T. White, Helen L. O'Neill, Sarah Thurnheer and Sharon A. Appleyard. 2025. A New Blue-spotted Maskray Species (Neotrygon, Dasyatidae) from Fiji. Journal of Fish Biology. DOI: doi.org/10.1111/jfb.70094 [09 June 2025]

Sunday, March 23, 2025

[Ichthyology • 2025] Hypanus rubioi • A New Species of the Genus Hypanus (Myliobatiformes: Dasyatidae) from the Eastern Tropical Pacific Ocean


Hypanus rubioi
Mejía-Falla, Navia, Cardeñosa & Tavera, 2025
 
Longnose Pacific Stingray | Raya picuda  ||  DOI: doi.org/10.1643/i2024010 

 Abstract 
A new species of stingray belonging to the genus Hypanus is described in this study based on data collected in the Eastern Tropical Pacific (ETP) region of Colombia. This new species stands out within the genus by its unique spade-shaped disc with a width-to-length ratio ranging from 1.0 to 1.1, whereas its obtuse snout extends 29–30% of the disc width (DW). This species also stands out due to its large size (125 cm DW). Notably, it has three distinctive rows of enlarged denticles on its mid-scapular area, with the central row extending back to the caudal sting. Additionally, it possesses a long tail that measures 2.2–2.5 times the DW, tapering smoothly. Molecular data also revealed significant differences between this new species and its congeners using COI. The phylogenetic analysis recovered Hypanus rubioi, new species, as the sister species to the western Atlantic Longnose Stingray H. guttatus, with an uncorrected genetic distance of 2.27 to 2.94%. The preliminary ecological niche modeling further indicates that this newly described species is likely associated with coastal regions in the ETP, ranging from central Mexico to northern Peru, with backlight and salinity as the most influential variables. These findings contribute to our understanding of the biodiversity within the genus Hypanus and the ecological distribution of this novel species in the ETP. 

Hypanus rubioi, new species

Specimens of Hypanus rubioi, new species, caught in artisanal fishing operations in Charambirá, Colombian Pacific Ocean (courtesy of WCS Colombia, Julian Caicedo).

Hypanus rubioi, new species
Longnose Pacific Stingray
Spanish name: Raya picuda

Etymology.—The name rubioi comes from the professor Efrain Rubio, who worked for many decades as ichthyology teacher at Universidad del Valle. Dr. Rubio was one of the first researchers interested in the fish fauna of the Colombian Pacific. During all these years at Universidad del Valle, he started the ichthyology collection (CIRUV) in addition to training many generations of young ichthyologists interested in the Pacific fishes of Colombia.



P. A. Mejía-Falla, A. F. Navia, D. Cardeñosa and J. Tavera. 2025. New Species of the Genus Hypanus (Dasyatidae) from the Eastern Tropical Pacific Ocean. Ichthyology & Herpetology. 113(1); 44-60. DOI: doi.org/10.1643/i2024010  (18 February 2025) 

Saturday, March 23, 2024

[Ichthyology • 2024] The Indo-Pacific Stingray Genus Brevitrygon (Myliobatiformes: Dasyatidae): Clarification of Historical Names and Description of a New Species, B. manjajiae sp. nov., from the Western Indian Ocean


[Bengal whipray] Brevitrygon walga (Müller & Henle, 1841),
 [Dwarf whipray]  B. heterura (Bleeker, 1852), 
[Coromandel Whipray]  B. imbricata (Bloch & Schneider, 1801), 
[Sandwich-tail Whipray] Brevitrygon manjajiae Last, Weigmann & Naylor, 2024
[Javan whipray]  B. javaensis (Last & White, 2013) 


Abstract
Members of the genus Brevitrygon are small, locally abundant tropical stingrays (family Dasyatidae) occurring in soft sedimentary habitats of inner continental shelves of the Indo-West Pacific from the Red Sea to Indonesia. Formerly members of the genus Himantura, whose members lack dorsal and ventral skin folds on the tail (typical of most dasyatid genera), folds are present or rudimentary in some Brevitrygon. Important to artisanal fisheries and known to consist of at least five species, these fishes are possibly the most frequently misidentified of all stingrays. Most were inadequately described in the 19th century, and they are often taxonomically confused due to morphological similarity, ontogenetic variability, and sexual dimorphism. Their nomenclatural history is complex with four of the known species represented within the type series of one species, B. walga (Müller & Henle). Also, the type of the species with which B. walga is most often confused, B. imbricata (Bloch & Schneider) from off southern India and Sri Lanka, is in very poor condition. A lectotype has been designated for B. walga (confined to the Bay of Bengal). The genus also contains B. heterura (Bleeker) from the Indo-Malay Archipelago, B. javaensis (Last & White) from off southern Indonesia, and a new species, B. manjajiae sp. nov., from the western Indian Ocean. The former species are redescribed and redefined based largely on a combination of morphometrics, tail morphology, squamation, and molecular data. Molecular divergences were detected within lineages of B. heterura, B. walga and B. manjajiae sp. nov., requiring further investigation.

Keywords: Chondrichthyes; Elasmobranchii; systematics; taxonomy; diversity; review of genus; nomenclatural discussion; redescriptions; morphology; genetics; NADH2



  Peter R. Last, Simon Weigmann and Gavin J. P. Naylor. 2024. The Indo-Pacific Stingray Genus Brevitrygon (Myliobatiformes: Dasyatidae): Clarification of Historical Names and Description of a New Species, B. manjajiae sp. nov., from the Western Indian Ocean.  Diversity. 15(12), 1213. DOI: 10.3390/d15121213
(This article belongs to the Special Issue Recent Advances in Ecology, Evolution and Biodiversity of the Chondrichthyan Fauna) 

Wednesday, November 8, 2023

[PaleoIchthyology • 2023] Dasyomyliobatis thomyorkei (Chondrichthyes: Myliobatiformes) • The Evolutionary Origin of the durophagous Pelagic Stingray Ecomorph


Dasyomyliobatis thomyorkei  
 Marramà, Villalobos-Segura, Zorzin, Kriwet & Carnevale, 2023

 Artworks by Fabrizio Lavezzi.
 
Abstract
Studies of the origin of evolutionary novelties (novel traits, feeding modes, behaviours, ecological niches, etc.) have considered a number of taxa experimenting with new body plans, allowing them to occupy new habitats and exploit new trophic resources. In the marine realm, colonization of pelagic environments by marine fishes occurred recurrently through time. Stingrays (Myliobatiformes) are a diverse clade of batoid fishes commonly known to possess venomous tail stings. Current hypotheses suggest that stingrays experimented with a transition from a benthic to a pelagic/benthopelagic habitat coupled with a transition from a non-durophagous diet to extreme durophagy. However, there is no study detailing macroevolutionary patterns to understand how and when habitat shift and feeding specialization arose along their evolutionary history. A new exquisitely preserved fossil stingray from the Eocene Konservat-Lagerstätte of Bolca (Italy) exhibits a unique mosaic of plesiomorphic features of the rajobenthic ecomorph, and derived traits of aquilopelagic taxa, that helps to clarify the evolutionary origin of durophagy and pelagic lifestyle in stingrays. A scenario of early evolution of the aquilopelagic ecomorph is proposed based on new data, and the possible adaptive meaning of the observed evolutionary changes is discussed. The body plan of †Dasyomyliobatis thomyorkei gen. et sp. nov. is intermediate between the rajobenthic and more derived aquilopelagic stingrays, supporting its stem phylogenetic position and the hypothesis that the aquilopelagic body plan arose in association with the evolution of durophagy and pelagic lifestyle from a benthic, soft-prey feeder ancestor.

Keywords: durophagy, ecomorph, evolution, Myliobatiformes, pelagic lifestyle, stingray

Dasyomyliobatis thomyorkei gen. et sp. nov. from the Eocene of Monte Bolca (Italy).
 MCSNV VR.21.107, holotype, dorsoventral view natural normal light.

Dasyomyliobatis thomyorkei gen. et sp. nov.  (MCSNV VR.21.107, holotype) showing its peculiar combination of rajobenthic (A–D) and aquilopelagic (E–H) traits:
A, small holaulacorhizous lateral teeth arranged in alternating rows; B, pectoral-fin radials with catenated calcification and no cross-bracing; C, free tail vertebrae without cartilaginous rod and caudal fin reduced to a ventral fold; D, soft, flexible pectoral disc with convex anterior and posterior margins; E, head protruding from pectoral disc; F, cephalic lobes; G, wing-like pectoral disc with positive FRD; H, enlarged hexagonal symphyseal/parasymphyseal polyaulacorhizous teeth in pavement-like arrangement. Scale bar represents 100 mm.

SYSTEMATIC PALAEONTOLOGY

Class CHONDRICHTHYES Huxley, 1880
Superorder BATOIDEA Compagno, 1973
Order MYLIOBATIFORMES Compagno, 1973

Family DASYOMYLIOBATIDAE nov.
 
Genus DASYOMYLIOBATIS nov.
 
Type species: Dasyomyliobatis thomyorkei sp. nov.

Derivation of names: Genus and family names refer to the peculiar mosaic of dasyatoid and myliobatoid traits.
 
Dasyomyliobatis thomyorkei sp. nov.
 
Derivation of name: After the British composer and musician Thom Yorke.

Holotype: MCSNV VR.21.107/8 well preserved, complete, and articulated skeleton in part and counterpart, 99.9 cm disc width.

Type locality & horizon: Pesciara site, Bolca Konservat-Lagerstätte, Italy; early Eocene, late Ypresian, middle Cuisian, SBZ-11, †Alveolina dainelli Zone, c. 50 Ma (Papazzoni et al. 2014).

Diagnosis: Stingray unique in having a peculiar combination of dasyatoid and myliobatoid traits. Like dasyatoids, †Dasyomyliobatis has a soft and flexible pectoral disc with convex anterior and posterior fin margins supported by catenated radials with no cross-bracing; numerous (c. 40) labiolingually directed files of holaulacorhizous lateral teeth arranged in alternating rows; tail formed by free vertebrae not stiffened by a cartilaginous rod; caudal fin reduced to a ventral fold. Like myliobatoids, †Dasyomyliobatis shows a head protruding anterior to a wing-like pectoral disc; cephalic lobes contacting along their mesial edge forming a single, shovel-like structure; cephalic-lobe radials discontinuous with pectoral-fin radials; moderately enlarged hexagonal symphyseal/parasymphyseal polyaulacorhizous teeth in pavement-like arrangement, with bulbous/irregular interlocking mechanism, 3–4 wide-block and irregularly spaced root lobes. In addition, †Dasyomyliobatis has a pectoral-fin AR between 2.0 and 3.0, and positive FRD.

Hypothetical reconstruction of †Dasyomyliobatis thomyorkei gen. et sp. nov. in different views.
Artwork by Fabrizio Lavezzi.

Life reconstruction of †Dasyomyliobatis thomyorkei gen. et sp. nov. swimming in the marine tropical shallow waters of the western Tethys about 50 million years ago.
 Artwork by Fabrizio Lavezzi.

CONCLUSIONS: 
The unique body plan of †Dasyomyliobatis suggests that:
• †Dasyomyliobatis is a representative of a new stingray family with unique hybrid dentition and pectoral-fin morphology that allowed the shift from undulatory to oscillatory swimming, and to exploit a variety of prey (from soft-bodied to hard-shelled organisms).
• The evolutionary origin of durophagy and pelagic lifestyle was achieved through gradual transformation of morphological traits at least since the early Late Cretaceous.
• Cephalic lobes were already present in a stingray without crustal calcification, cross-bracing, or compagibus laminam corroborating the hypothesis that they originated before the shift toward exclusive oscillatory locomotion and occupation of pelagic environments.
• The phylogenetic analyses highlight that evolutionary modifications of the dentition related to a shift toward extreme durophagy seem to covariate with the evolution of traits of pectoral skeleton related to a shift toward a pelagic lifestyle, possibly reflecting high level of integration. One can speculate that although invasion of new habitats allowed initially stingrays to exploit wider ranges of food items, competition with other benthic batoids like skates, known to occupy today the same niche as benthic stingrays in deeper and cooler waters (Ebert & Compagno 2007) but also warm and shallow waters during the Late Cretaceous (Cappetta 1980), pushed pelagic/benthopelagic stingrays to specialize for a less exploited food resource, like hard-shelled invertebrates, although this hypothesis needs to be tested.


Giuseppe Marramà, Eduardo Villalobos-Segura, Roberto Zorzin, Jürgen Kriwet and Giorgio Carnevale. 2023. The Evolutionary Origin of the durophagous Pelagic Stingray Ecomorph. Palaeontology. DOI: 10.1111/pala.12669


Saturday, April 30, 2022

[Ichthyology • 2022] Aetomylaeus wafickii • Resolution of the Aetomylaeus nichofii Species Complex (Myliobatiformes: Myliobatidae), with the Description of A New Eagle Ray Species from the northwest Indian Ocean and A Key to the Genus Aetomylaeus


Aetomylaeus wafickii
Jabado, Ebert & Al Dhaheri, 2022

Wafic’s Eagle Ray | لخمت وفيق   ||  DOI: 10.1007/s12526-021-01234-4

Abstract
 In recent years, the eagle ray family Myliobatidae has undergone major taxonomic revisions due to molecular and morphological findings. A new species of eagle ray, Aetomylaeus wafickii sp. nov., is described based on specimens collected from the Arabian Gulf, Northwest Indian Ocean. The new species externally most closely resembles A. caeruleofasciatus White, Last, & Baje, 2015 in White et al. 2016 and A. nichofii (Bloch & Schneider, 1801). It can be distinguished from these species by a combination of morphological and meristic characteristics including a higher number of transverse pale bluish to light grey bands on its dorsal surface (8–10 in Aetomylaeus wafickii sp. nov. vs 5–8 in A. caeruleofasciatus and A. nichofii), a higher number of tooth plate rows (13–15 vs 7), a shorter upper tooth plate width (3.1–4.3 vs 4.6–7.5%DW), and a shorter tail ((0.9–1.6) vs (1.4–1.8)) times disc width. Pelvic fin radial counts separate the new species from A. nichofii for males (14–16 vs 16–19) and females (16–19 vs 20–21). Geographically, it occurs from the southern Red Sea, eastwards to the Arabian Sea, and south to Sri Lanka, including in the Arabian Gulf. It appears to be frequently caught as bycatch in gillnets due to its habit of schooling, and is considered particularly susceptible to impacts from regional fisheries. Morphological and meristic findings complement prior molecular evidence documenting three species within the A. nichofii complex. A key to the genus Aetomylaeus is provided for the first time.

Keywords: Chondrichthyes, Elasmobranch, Batoid, United Arab Emirates, Arabian Gulf, New species


Aetomylaeus wafickii, sp. nov. 
Wafic’s Eagle Ray 
(Arabic name: Lukhmat Wafic – لخمت وفيق).

Etymology: The new species is named after Wafic Jabado, father of author Rima Jabado in recognition of his support for her work and the occasion of his 73rd birthday. The proposed common name is Wafic’s Eagle Ray.
 

Rima W. Jabado, David A. Ebert and Shaikha S. Al Dhaheri. 2022. Resolution of the Aetomylaeus nichofii Species Complex, with the Description of A New Eagle Ray Species from the northwest Indian Ocean and A Key to the Genus Aetomylaeus (Myliobatiformes: Myliobatidae). Marine Biodiversity. 52; 15. DOI: 10.1007/s12526-021-01234-4
  https://dubaigazette.com/ead-2/ 

Tuesday, October 1, 2019

[PaleoIchthyology • 2019] Lessiniabatis aenigmatica • A Bizarre Eocene Dasyatoid Batomorph (Elasmobranchii, Myliobatiformes) from the Bolca Lagerstätte (Italy) reveals A New, Extinct Body Plan for Stingrays


Lessiniabatis aenigmatica
Marramà, Carnevale, Giusberti, Naylor & Kriwet, 2019


Abstract
In the last few years, the detailed revision of the Eocene cartilaginous fishes (Chondrichthyes) from the Bolca Lagerstätte (Italy) has provided new insights into the fish biodiversity of the western Tethys. The morphological analysis of three previously undescribed specimens from the Pesciara deposit of Bolca revealed the existence of a new stingray taxon, †Lessiniabatis aenigmatica gen. et sp. nov., which is unique among the myliobatiform batoids in having the following unique combination of characters: low number of vertebrae posterior to the pelvic girdle (65–68); thoracolumbar synarcual extending backward beyond the pelvic girdle; tail extremely short not protruding from the posterior edge of the pectoral disc; radials proximally fused to each other; pelvic girdle extremely small and strongly arched; dorsal and caudal fins absent; tail stings and cartilaginous tail rod absent; and teeth of dasyatoid morphology with smooth enameloid surface. The phylogenetic analysis suggests that †Lessiniabatis gen. nov. is deeply nested within the benthic stingrays (Dasyatoidea) representing the sister to all dasyatids and potamotrygonids. Its unique anatomy clearly reveals the existence of a new hitherto unknown body plan experimented by benthic stingrays, whose evolution can be possibly linked to the adaptive fish radiation in the aftermath of the end-Cretaceous extinction.

Figure 1: Lessiniabatis aenigmatica gen. et sp. nov. from the Eocene of Bolca Lagerstätte. (a,b) the holotype MNHN F.Bol.566 in part and counterpart. Scale bars equal 100 mm.

 Systematic palaeontology
Class Chondrichthyes Huxley, 1880.

Superorder Batomorphii Cappetta, 1980.
Order Myliobatiformes Compagno, 1973.

Superfamily Dasyatoidea Compagno, 1973.
Family incertae sedis

Genus Lessiniabatis gen. nov.

Type species. Lessiniabatis aenigmatica sp. nov.

Etymology: After Lessinia, the Italian geographic area where the Bolca Lagerstätte is located, and from the Ancient Greek word ‘βατίς’ (batis), meaning ray or skate; gender feminine.

Diagnosis: A dasyatoid stingray unique in having a thoracolumbar synarcual extending backward beyond the pelvic girdle, a tail that is extremely short and not protruding from the posterior edge of the pectoral disc, and pectoral radials that are proximally fused with one another. Moreover, †Lessiniabatis gen. nov. is characterized by the following combination of traits: low number of vertebrae posterior to the pelvic girdle (65–68); dorsal and caudal fins absent; pelvic girdle extremely small and strongly arched; tail stings and cartilaginous tail rod absent; teeth with dasyatoid morphology; enameloid surface smooth; lingual tooth surface broad and slightly convex; labial tooth surface slightly concave; labial and lingual tooth faces not steep in lateral profile; tooth root bilobed, with a central foramen; holaulacorhizid root type with an elongated pulp cavity; sparse, star-shaped dermal denticles covering the whole body; about 130–135 pectoral-fin radials (of which 59–61 are propterygial, 16–18 are mesopterygial, and 54–57 are metapterygial); about 120 vertebral centra.

Composition of the genus: The genus is represented only by the type species †Lessianabatis aenigmatica sp. nov.

 Figure 2:Lessiniabatis aenigmatica gen. et sp. nov. from the Eocene of Bolca Lagerstätte. (a,b) the paratype MSNFI IGF 103555 in part and counterpart; (c) the paratype MFSN GP.864. Scale bars equal 100 mm.

Lessiniabatis aenigmatica sp. nov.

Urolophus crassicaudatus (Blainville, 1818): Raux (2014), Figs 1, 7–9, 1137.
Urolophus” crassicaudatus (Blainville, 1818): Marramà et al. (2018), Fig. 9A,B, non C-D15.

Etymology: After the Latin word ‘aenigmaticus’, -a, meaning enigmatic, puzzling, referring to its peculiar anatomy; gender feminine.

Holotype: MNHN F.Bol.566 (ex 11001 and 10997), nearly complete articulated skeleton, in part (566B) and counterpart (566 A); 466.8 mm DW (Fig. 1).

Type locality and horizon: Pesciara site, Bolca Konservat-Lagerstätte, Italy; lower Eocene, upper Ypresian, SB 11 and NP 14a Zones.

....

Figure 9: Silhouettes of selected living and fossil taxa as representatives for the modern stingray families and holomorphic fossil taxa.
(a) Hexatrygon bickelli (Hexatrygonidae); (b) Dasyatis marmorata (Dasyatidae); (c) Potamotrygon tigrina (Potamotrygonidae); (d) Urobatis halleri (Urobatidae); (e) Plesiobatis daviesi (Plesiobatidae); (f) Urolophus kapalensis (Urolophidae); (g) †Lessiniabatis aenigmatica gen. et sp. nov.; (h) †Asterotrygon maloneyi; (i) †Heliobatis radians; (j) Gymnura altavela (Gymnuridae); (k) †Promyliobatis gazolai; (l) Myliobatis hamlyni (Myliobatidae); (m) Aetobatus laticeps (Aetobatidae); (n) Rhinoptera bonasus (Rhinopteridae); (o) Mobula mobular (Mobulidae). Figures not to scale.

Giuseppe Marramà, Giorgio Carnevale, Luca Giusberti, Gavin J. P. Naylor and Jürgen Kriwet. 2019. A Bizarre Eocene Dasyatoid Batomorph (Elasmobranchii, Myliobatiformes) from the Bolca Lagerstätte (Italy) reveals A New, Extinct Body Plan for Stingrays. Scientific Reports. 9: 14087. DOI: 10.1038/s41598-019-50544-y

     

Saturday, May 19, 2018

[PaleoIchthyology • 2018] Protohimantura vorstmani • Anatomy, Relationships and Palaeobiogeographic Implications of the First Neogene Holomorphic Stingray (Myliobatiformes: Dasyatidae) from the early Miocene of Sulawesi, Indonesia, SE Asia


Protohimantura vorstmani  (De Beaufort, 1926)

Protohimantura
Marramà, Klug, de Vos & Kriwet, 2018

Abstract
The early Miocene stingray †Trygon vorstmani represented by a single specimen collected from the fish-bearing limestones of the Tonasa Formation of SW Sulawesi, Indonesia, is redescribed here in detail. This taxon exhibits a unique combination of features that clearly support the presence of a new genus, †Protohimantura gen. nov. and its assignment to the whiptail stingrays (Dasyatidae) of the subfamily Urogymninae. The morphological and phylogenetic affinities of †Protohimantura gen. nov. with the living whiprays suggest a close association of this taxon with tropical shallow-water habitats hypothesized for the SW Sulawesi palaeoenvironment during early Miocene. Moreover, this occurrence, which also represents the first holomorphic stingray specimen from the Neogene, provides new insights into the role of the Indo-Australian Archipelago for the evolutionary history of fishes associated with reefs in the context of the shift of the marine biodiversity hotspot across the globe during the last 50 million years.

    

Figure 2. †Protohimantura vorstmani (de Beaufort, 1926) from early Miocene of Sulawesi, Indonesia. A, RGM 624420, holotype; B, reconstruction, dermal denticles omitted. Scale bars 20 mm.

Abbreviations: ao, antorbital cartilage; e, eye; fpf, frontoparietal fontanelle; hyo, hyomandibula; mc, Meckel’s cartilage; mes, mesopterygium; met, metapterygium; nc, nasal capsules; oc, optic capsule; pq, palatoquadrate; pro, propterygium; rad, radials; sca, scapulocoracoid; ss, suprascapulae; syn1, cervicothoracic synarcual; syn2, thoracolumbar synarcual.

SYSTEMATIC PALAEONTOLOGY



Class Chondrichthyes Huxley, 1880 
Superorder Batomorphii Cappetta, 1980 

Order Myliobatiformes Compagno, 1973 

Family Dasyatidae Jordan, 1888 
Subfamily Urogymninae Gray, 1851 (Sensu; Last Et Al., 2016B) 

Genus †Protohimantura Gen. Nov. 

Type species: Trygon vorstmani de Beaufort, 1926.

Etymology: From the Ancient Greek word prōto, meaning ‘first’, ‘foremost’, ‘earliest form of’, and Himantura, one of the living whipray genera, thus indicating a possible close relationship between both taxa.

Diagnosis: A whipray characterized by the following combination of characters and body proportions: eye small; interorbital width/eye diameter ratio of 3.5; nasal capsule width/neurocranial length ratio of 0.7; nasal capsule length/neurocranial length ratio of 0.2; anteroposterior fontanelle/neurocranial length ratio of 0.8; scapulocoracoid width/lateral face length ratio of 2.2; 55 propterygial radials; 17 mesopterygial radials; mid-dorsal surface of disc covered by heart-shaped denticles arranged in an antero-posteriorly directed patch having sharply defined outlines; teeth with semi-ovoid or subhexagonal crown with a second transverse keel; lingual and labial crown ornamentation absent.

Remarks: The species †Trygon vorstmani was created by de Beaufort (1926) who presented a short description (one page long) and figured this single specimen in part and counterpart, which was previously collected by Professor Brouwer at the beginning of the 20th century near Patoenoeang Asoe E in the Maros district of SW Sulawesi, Indonesia. The placement of this taxon in the family Dasyatidae [= Trygonidae of de Beaufort (1926)] was based on the presence of a propterygium that is bent inwards in front to the median line and pectorals of both sides meeting at the snout (de Beaufort, 1926). However, after this first brief report, no in-depth morphological analysis or identification of characters was provided to distinguish the specimen from other extant or extinct rays, with the exception of a preliminary study by Klug & Kriwet (2012) who recognized its close relationship with the genus Himantura. However, at present, Trygon is regarded as a junior synonym of Dasyatis Rafinesque, 1810, and the Sulawesi species shows several morphological features that distinguish it from DasyatisHimantura and all representatives of the family Dasyatidae (see Description and Discussion). On the contrary, the morphological characters observed in the examined specimen and discussed below corroborate the erection of a new genus to contain †Trygon vorstmani and its inclusion in the subfamily Urogymninae.

Protohimantura vorstmani (De Beaufort, 1926)

Trygon vorstmani de Beaufort, 1926: p. 119, pl. 1 (original occurrence of name, photograph and outline reconstruction); de Beaufort, 1931: p. 462.
Himantura vorstmani (de Beaufort, 1926); Klug & Kriwet, 2012: p. 93.

Holotype: RGM 624420, single specimen in part and counterpart, lacking the posterior region of body.

Type locality and horizon: Patoenoeang Asoe E, Maros District, SW Sulawesi, Indonesia; Tonasa Formation, ?Burdigalian, early Miocene (see: Wilson, 2000; Wilson et al., 2000).

Figure 1. Location and simplified geological map of the SW Sulawesi, Indonesia. The map, showing the early Miocene outcrops of the Tonasa Formation in which †Protohimantura vorstmani (de Beaufort, 1926) has been collected, is adopted and modified from Wilson (2000) and Wilson et al. (2000).

Figure 9. Palaeobiogeographical distribution of whiptail stingrays of the subfamily Urogymninae during middle Eocene to early Oligocene (A), Miocene (B), and Pliocene to present day (C).
1, Morocco; 2, Egypt; 3, Pakistan; 4, Oman; 5, India; 6, Madagascar; 7, Indonesia (this paper); 8, Italy.

The blue colour marks the main areal of the modern representatives of the Urogymninae. Data on fossil occurrences taken from Sahni & Mehrotra (1980), Case & Wiest (1991), Cappetta & Cavallo (2006), Adnet et al. (2007, 2010), Underwood et al. (2011) and Andrianavalona et al. (2015). The enclosed solid red lines delimit the West Tethys, Arabian, and IAA biodiversity hotspots according to Renema et al. (2008).


CONCLUSIONS: 
Although the early Miocene stingray from Sulawesi lacks portions of the posterior body, including the tail and the characteristic spines, several features are preserved and allow identification as a new representative of the family Dasyatidae, subfamily Urogymninae, and the creation of a new genus, †Protohimantura. A monophyletic family Dasyatidae is recovered based on the parsimony analyses. The phylogenetic analysis recovered a dichotomous nature of the relationships of the Myliobatiformes, which might reflect a phylogenetic signal in the nature of calcification of their pectoral radials, in their body shape and, consequently, in their swimming style. The analysis of the fossil record of the Urogymninae seems to suggest that the modern distribution of whiprays is the final result of their spatial dynamics across the Palaeogene and consistent, at least in part, with the eastward shift of the marine centre of palaeobiodiversity across the globe during the last 50 million years.


Giuseppe Marramà, Stefanie Klug, John de Vos and Jürgen Kriwet. 2018. Anatomy, Relationships and Palaeobiogeographic Implications of the First Neogene Holomorphic Stingray (Myliobatiformes: Dasyatidae) from the early Miocene of Sulawesi, Indonesia, SE Asia. Zoological Journal of the Linnean Society. zly020. DOI: 10.1093/zoolinnean/zly020