Showing posts with label Germany. Show all posts
Showing posts with label Germany. Show all posts

Monday, January 19, 2026

[PaleoIchthyology • 2025] Apolithabatis seiomaInsights into Stem Batomorphii: A New holomorphic Ray (Chondrichthyes: Elasmobranchii) from the upper Jurassic of Germany

 

Apolithabatis seioma   
Türtscher, Jambura, Spindler & Kriwet, 2025 
     

Abstract
The Late Jurassic fossil deposits of southern Germany, collectively known as the ’Solnhofen Archipelago’, are one of the world’s most important sources of Mesozoic vertebrates. Complete skeletons of cartilaginous fishes (Chondrichthyes), whose skeletal remains are rare in the fossil record and therefore all the more valuable, are represented, among others, by exceptionally well-preserved rays (superorder Batomorphii). Despite their potential for research in several areas, including taxonomy, morphology, ecology, and phylogeny, the number of studies on these chondrichthyans is still very limited. Here, we identify a previously unknown ray, †Apolithabatis seioma gen. et sp. nov., which represents the first record of a ray species from the upper Kimmeridgian of Painten, Germany, and thus the oldest Late Jurassic ray taxon from Germany based on skeletal remains. This new batomorph is characterised by a unique body shape and a combination of skeletal features that distinguish it readily from all other known Late Jurassic rays. Two different morphometric approaches confirm differences in body shape and proportions to all known Late Jurassic conspecifics. We thus extend the recent taxonomic revision of these rays and include all described holomorphic specimens in a phylogenetic framework using strict cladistic principles. The phylogenetic analysis reveals all Late Jurassic batomorphs to represent a monophyletic group, for which we introduce the new order Apolithabatiformes, which is sister to all other batomorphs representing a stem group. While the phylogenetic relationships within Apolithabatiformes ord. nov. remain largely unresolved, †Apolithabatis gen. nov. is placed as the sister to †Aellopobatis. This highlights that, despite considerable progress in our understanding of the diversity and phylogeny of early rays, difficulties remain in establishing robust relationships within batomorphs. We therefore emphasise the importance of comprehensive studies of completely preserved fossil cartilaginous fishes to obtain a better understanding of chondrichthyan evolution and their systematics in deep time. 

Systematic palaeontology
Class CHONDRICHTHYES Huxley, 1880 
Subclass ELASMOBRANCHII Bonaparte, 1838  

Cohort EUSELACHII Hay, 1902 
Subcohort NEOSELACHII Compagno, 1977 

Superorder BATOMORPHII Cappetta, 1980 

†APOLITHABATIFORMES ord. nov.

We consequently propose a new order, †Apolithabatiformes ord. nov., which includes the single family, †Spathobatidae with the genera †Aellopobatis, †Apolithabatis gen. nov., †Asterodermus, †Belemnobatis, †Kimmerobatis, and †Spathobatis. This order represents the most plesiomorphic clade within Batomorphii being placed on the stem of the total group Batomorphii. It is possible that the hitherto undescribed Late Jurassic batomorph from Argentina, previously considered merely as Batomorphii indet. by Cione (1999) [14], also belongs to this order, which, however, can only be clarified by a detailed examination of the specimen.

Type species. Apolithabatis seioma gen. et sp. nov.

Included taxa: Aellopobatis bavarica, †Apolithabatis seioma gen. et sp. nov., †Asterodermus platypterus, †Belemnobatis spp., †Kimmerobatis etchesi, †Spathobatis spp.

Etymology: The name ’Apolithabatiformes’ is composed of two Greek words, i.e., ’aπολίθωμα’ (apolíthoma) meaning ’fossil’ and ’βατίς’ (batís) meaning ’ray’ or ’skate’.

Diagnostic characters. Elongated mesopterygium contiguous with propterygium and similar in shape; lateral articulation of antorbital cartilages (if present) to nasal capsules; two true fin spines anterior to dorsal fins (absent in some taxa);

Family †SPATHOBATIDAE Dames, 1888 

†APOLITHABATIS gen. nov.

Type species. Apolithabatis seioma gen. et sp. nov.

 Etymology: Identical to that of the order †Apolithabatiformes (see above): the genus name ’Apolithabatis’ is composed of two Greek words, i.e., ’Απολίθωμα’ (apolíthoma) meaning ’fossil’, and ’βατίς’ (batís) meaning ’ray’ or ’skate’.

Stratigraphic and geographic distribution: Only known from the upper Kimmeridgian (Upper Jurassic) of the ’Solnhofen Archipelago’ (Painten), Bavaria, Germany.

Diagnosis: A guitarfish-like batomorph unique in having the following combination of characters: heart-shaped disc that is wider than long; pointed snout; antorbital cartilages present but reaching less than halfway between the nasal capsules and the propterygium; vertebral centra extending less than half of the synarcual length; large mesopterygium tangent to the propterygium; 40 pectoral radials (9 propterygial, 11 mesopterygial, 20 metapterygial); no pectoral radials articulate directly with the scapulocoracoid between the meso- and metapterygium; pectoral radials segmented in up to five segments; at least 16 pairs of ribs; 19 basipterygial radials (including one compound radial); puboischiadic bar curved anteriorly; no postpelvic processes present; broad and triangular lateral prepelvic processes; well-developed and plate-like haemal and supraneural spines; conspicuous bulge-like structure formed by the supraneural spines in front of each dorsal fin; no fin spines present.

APOLITHABATIS SEIOMA gen. et sp. nov.





Environmental reconstruction showing †Apolithabatis seioma gen. et sp. nov. in association with a juvenile pleurosaurid.


     Julia Türtscher, Patrick L. Jambura, Frederik Spindler and Jürgen Kriwet. 2025. Insights into Stem Batomorphii: A New holomorphic Ray (Chondrichthyes, Elasmobranchii) from the upper Jurassic of Germany. PLoS ONE. 20(1): e0310174. DOI: doi.org/10.1371/journal.pone.0310174
 

Friday, September 26, 2025

[Paleontology • 2025] Eurhinosaurus mistelgauensis • A new Eurhinosaurus Species (Ichthyosauria) from the Lower Jurassic (Toarcian) of Mistelgau (Bavaria, Southern Germany)


 Eurhinosaurus mistelgauensis
Spicher, Miedema, Heijne & Klein, 2025

artwork by Andrey Atuchin / Urwelt-Museum Oberfranken

Abstract
Eurhinosaurus is a European Lower Jurassic longirostrine ichthyosaur, characterized by its remarkable overbite. Despite the long history of the genus, the taxonomy of Eurhinosaurus is still under debate, and its morphology is poorly understood. Over the past two decades, three specimens of Eurhinosaurus have been discovered in the Mistelgau clay pit in Bavaria, southern Germany, from Upper Toarcian layers. This makes these specimens the youngest stratigraphic occurrence of the genus Eurhinosaurus. The examined specimens include two nearly complete skeletons and a partial snout, preserved three-dimensionally in a semi-articulated state, with elements exposed in multiple orientations. The Mistelgau specimens exhibit clear morphological similarities to known Eurhinosaurus, confirming their affiliation to the genus based on numerous characteristics. However, the Eurhinosaurus specimens from Mistelgau exhibit notable differences in the basioccipital and rib morphology compared to known species. While not significant at the genus level, these distinctions allow recognition as a new species: Eurhinosaurus mistelgauensis sp. nov. These well-preserved fossils from Mistelgau further provide valuable insights into Eurhinosaurus morphology and significantly contribute to our understanding of this historically important ichthyosaur.

Key Words: 3D Preservation, pathology, parvipelvia, skull morphology, taphonomy, taxonomy



 Eurhinosaurus mistelgauensis sp. nov.


Paleoart by Andrey Atuchin 
(used with permission of the Urwelt-Museum Oberfranken)


 Gaël E. Spicher, Feiko Miedema, Jelle Heijne and Nicole Klein. 2025. A new Eurhinosaurus (Ichthyosauria) species from the Lower Jurassic (Toarcian) of Mistelgau (Bavaria, Southern Germany). Fossil Record. 28(2): 249-291. DOI: doi.org/10.3897/fr.28.154203

Wednesday, August 27, 2025

[Paleontology • 2025] The Osteology, Taxonomy, and Phylogenetic Placement of Seeleyosaurus guilelmiimperatoris (Plesiosauroidea: Microcleididae) from the Lower Jurassic Posidonia Shale of Germany

 

Seeleyosaurus guilelmiimperatoris (Dames, 1895) 

Sachs, Madzia, Marx, Roberts, Hampe et Kear, 2025. 

Abstract
Seeleyosaurus guilelmiimperatoris is an early-diverging plesiosauroid from the lower Toarcian (Lower Jurassic) of the Posidonienschiefer Formation (Posidonia Shale) of Holzmaden, southwestern Germany. It is known from almost complete skeletons of two osteologically mature individuals, the holotype and a referred specimen that was largely destroyed during World War II. Although well-preserved and substantially complete, the anatomy of Seeleyosaurus and its taxonomic and phylogenetic significance remain insufficiently understood. Here, we provide a complete osteological description of the taxon. Seeleyosaurus guilelmiimperatoris can be diagnosed based on a unique combination of characters, including one autapomorphy: the tall and basally constricted neural spines of the posterior cervical, pectoral, and dorsal vertebrae which have a sinusoidal shape in lateral view. Our study supports the validity of the plesiosauroid taxon Plesiopterys wildi, which was considered a junior synonym of Seeleyosaurus in a previous joint assessment of the taxa. Our phylogenetic evaluation places S. guilelmiimperatoris among Microcleididae, in congruence with previous studies. However, in contrast to earlier phylogenetic reconstructions, our analyses, which take into account numerous changes to the character matrix, reconstruct S. guilelmiimperatoris as falling within the Microcleidus clade. While we admit that Seeleyosaurus might potentially be considered a species of Microcleidus, we refrain from promoting this nomenclatural change pending an osteological and taxonomic reassessment of Microcleidus spp. as well as other, potentially closely related forms, such as Lusonectes sauvagei.

Keywords: Plesiosauria, Microcleididae, Seeleyosaurus, Toarcian, Lower Jurassic, Germany

Skeleton of the referred specimen of Seeleyosaurus guilelmiimperatoris (SMNS 12039). (a) initial slab mount with original skull and unaltered paddles (from Fraas, 1910a, plate 6). (b) cast of the modified skeleton with modeled skull and arranged paddles (SMNS collection). Scale equals 50 cm.

Seeleyosaurus (left) and Thaumatosaurus, now Meyerasaurus (right)
as depicted in Water reptiles of the past and present (1914)


Sven Sachs, Daniel Madzia, Miguel Marx, Aubrey J. Roberts, Oliver Hampe and Benjamin P. Kear. 2025. The Osteology, Taxonomy, and Phylogenetic Placement of Seeleyosaurus guilelmiimperatoris (Plesiosauroidea, Microcleididae) from the Lower Jurassic Posidonia Shale of Germany. The Anatomical Record. DOI: doi.org/10.1002/ar.25620 [21 February 2025]


Monday, August 4, 2025

[Paleontology • 2025] Plesionectes longicollum • An unusual early-diverging plesiosauroid from the Lower Jurassic Posidonia Shale of Holzmaden, Germany


Plesionectes longicollum 
Sachs​ & Madzia, 2025 

life reconstruction by Peter Nickolaus.

Abstract 
The lower Toarcian Posidonia Shale at Holzmaden, Southwest Germany, has yielded some of the most remarkable Lower Jurassic marine tetrapod specimens, including five plesiosaur taxa identified from nearly complete skeletons. This study provides a comprehensive description of an osteologically immature plesiosauroid skeleton found in a Holzmaden quarry in 1978. Despite that the specimen has been researched in the past, previous studies have been either brief or targeted some specific aspects of the specimen, such as its soft tissue preservation. The anatomy and taxonomy of the specimen have never been explored in detail. We reinterpret several of its osteological features and evaluate their taxonomic and phylogenetic significance. Our findings reveal that the specimen possesses an unusual combination of character states, which are not markedly affected by ontogenetic development, warranting the designation of a new taxon, Plesionectes longicollum gen. et sp. nov., thereby increasing the known plesiosaur diversity of both the Toarcian age and the Posidonia Shale.

Skeleton of Plesionectes longicollum gen. et sp. nov. (SMNS 51945).
Scale bar equals 30 cm.

Plesiosauria De Blainville, 1835
Plesiosauroidea Gray, 1825

Plesionectes gen. nov.
 
Etymology. The name Plesionectes derives from plēsíon (Greek), meaning “close”, “near”, referring to its plesiosaur affinities, and nēktēs (Greek), “swimmer”, common suffix in plesiosaur taxon names.

Plesionectes longicollum sp. nov.

Type locality and horizon. Holzmaden, Esslingen District, Baden-Württemberg, southwestern Germany; lower Toarcian (Lias ɛII1, ‘Koblenzer’, Dactylioceras tenuicostatum Zone, D. semicelatum Subzone; Hauff, 1921; Riegraf, Werner & Lörcher, 1984; Maisch, 2021), Lower Jurassic.

Diagnosis. Plesiosauroid plesiosaur bearing following unique combination of characters states: paraoccipital process being considerably longer as the height of the exoccipital body; neck comprising ≥43 cervical vertebrae; V-shaped neurocentral suture in the cervical and pectoral vertebrae (potential local autapomorphy sensu Beeston et al., 2024); conjoined parapophysis and diapophysis in the anterior, middle, and the majority of the posterior cervicals, one rib facet formed in the posteriormost cervical vertebrae; cervical rib processes strap-shaped and pronounced in anterior and mid-neck region; posterior cervical and pectoral neural spines not considerably taller than long (mostly < 1:2), lacking constriction at base; dorsal vertebral series comprising 20–21 vertebrae.

Etymology. The name longicollum derives from longus (Latin), meaning “long”, and collum (Latin), “neck”, in reference to its long neck, comprising at least 43 vertebrae.

Plesionectes longicollum 
life reconstruction by Peter Nickolaus.


Sven Sachs​ and Daniel Madzia. 2025. An unusual early-diverging plesiosauroid from the Lower Jurassic Posidonia Shale of Holzmaden, Germany. PeerJ. 13:e19665. DOI: doi.org/10.7717/peerj.19665 

Friday, July 4, 2025

[Ichthyology • 2025] Barbatula fluvicola & B. ommata • Two New Species of Stone Loaches of the Genus Barbatula (Cypriniformes: Nemacheilidae) from Europe with a neotype designation of B. barbatula

  

 Barbatula fluvicola
 Barbatula ommata
Calegari, Freyhof, Waldock, Wegscheider, Josi, Rüber & Seehausen, 2025

 
Abstract
Ten species of Barbatula are recognised in Europe, west of the Urals: B. barbatula, B. caucasica, B. hispanica, B. leoparda, B. pironae, B. quignardi, B. sturanyi, B. taurica, B. vardarensis and B. zetensis, with B. caucasica and B. taurica formerly considered subspecies of B. barbatula. A comprehensive dataset of the DNA barcoding gene coI recovered four major clades within Europe: three in Eastern Europe including B. caucasica, B. pironae, B. sturanyi, B. taurica, B. vardarensis and B. zetensis, and one in Western Europe including B. barbatula, B. hispanica and B. leoparda. The results further indicated several genetic lineages, representing potentially new species. Recent surveys in Switzerland revealed two new species of Barbatula, within the Western clade, which are herein described. Barbatula fluvicola, a new species, inhabits streams and rivers in the upper and middle Rhine drainage in Switzerland and Germany, as well as the upper Danube drainage in Germany and Austria. Barbatula ommata, a new species, is mostly confined to lakes of the Aare-Rhine system. The two new species overlap geographically in Switzerland, where they occupy different habitats. Morphological differences, species delimitation analyses, phylogenetic reconstruction and genetic distances based on the coI gene corroborates the recognition of the two new species. To stabilise the nomenclatural status and the consequent use of the nomen B. barbatula, we are herein designating an unambiguously identifiable neotype from the Lez River population, previously recognised as B. quignardi, to clarify the identity of the nominal species Cobitis barbatula Linnaeus, 1758.

Keywords: biodiversity, Danube River, European fishes, freshwater lakes, Rhine River, systematics

Live coloration of Barbatula fluvicola, NMBE 1111057, Thur River, Rhine drainage, Switzerland.
Type locality of Barbatula fluvicola at Glane River (a) and B. ommata at Lake Neuchatel (b), both water systems from Rhine drainage.

Barbatula fluvicola, new species

Etymology. The name fluvicola is from Latin meaning inhabitant of rivers, alluding to the stream preference habitats where this species has been collected. A noun in apposition.

Vernacular name. North-Prealpine Stone Loach (English), 
Nord-Voralpine Bartgrundel (German), 
Loche Préalpes du Nord (French).


Barbatula ommata, new species

Etymology. Barbatula ommata from the Greek ómmata (ὄμματα) for eyes, and is given in reference to the species diagnostic great diameter of its eyes. A noun in apposition.

Vernacular name. Lake Stone Loach (English), 
Seebartgrundel (German), 
Loche du Lac (French).


Bárbara B. Calegari, Jörg Freyhof, Conor Waldock, Bernhard Wegscheider, Dario Josi, Lukas Rüber, Ole Seehausen. 2025. Two New Species of Stone Loaches of the Genus Barbatula (Cypriniformes: Nemacheilidae) from Europe with a neotype designation of Bbarbatula (Teleostei: Nemacheilidae). Journal of Fish Biology. DOI: doi.org/10.1111/jfb.70108 [02 July 2025]


Wednesday, July 2, 2025

[Paleontology • 2025] Sphenodraco scandentis • An arboreal rhynchocephalian from the Late Jurassic of Germany, and the importance of the appendicular skeleton for ecomorphology in lepidosaurs


 Sphenodraco scandentis
Beccari, Guillaume, Jones, Villa, Cooper  Regnault & Rauhut, 2025

artwork by Gabriel Ugueto  facebook.com/serpenillus 
 
Abstract
Here, we describe a new species of Jurassic rhynchocephalian from the Solnhofen Archipelago, Sphenodraco scandentis gen. et sp. nov., and highlight the importance of the postcranial anatomy for ecomorphological studies in the rhynchocephalian clade. The holotype of Sphenodraco scandentis is divided into a main slab, which has been mentioned in the literature and previously assigned to Homoeosaurus maximiliani, and a counterslab containing most of its skeletal remains. This new taxon shows an exclusive combination of osteological features that differs from previously described rhynchocephalians. Sphenodraco was recovered in our phylogenetic analysis as a component of a clade including Homoeosaurus and Kallimodon. To evaluate the ecomorphology of the new taxon, we compare fossil rhynchocephalians with the extant tuatara and squamates. We quantify the diversity of body proportions in lepidosaurs systematically, inferring lifestyle for extinct rhynchocephalians. Our analysis suggests that fossil rhynchocephalians had a diverse array of substrate uses, with some categorized as good climbers, and with Sphenodraco showing the extreme condition of limb elongation found in strictly arboreal lizards. This new taxon is here regarded as the first predominantly or even strictly arboreal rhynchocephalian. Furthermore, our analysis shows that the diversity of fossil rhynchocephalians might still be underestimated.

ecomorphology, Germany, Jurassic, Rhynchocephalia, sphenodontian, taxonomy, tuatara

Photograph of the holotype of Sphenodraco scandentis.
A, SMF R414, the main slab, containing some bone remains and the imprint of the skeleton.
B, NHMUK PV R 2741, the counterslab, containing most of the skeletal remains



Lepidosauria Haeckel, 1866,
Rhynchocephalia Günther, 1867,sensuDeMar et al. (2022),
Neosphenodontia Herrera-Flores et al., 2018
Sphenodraco gen. nov.
Derivation of name: The genus name combines the prefix spheno- (which composes the name Sphenodontia) and draco (Latin for ‘dragon’, but also in reference to the arboreal gliding lizards, whose limb proportions are similar to that of the new taxon) and translates to ‘the sphenodontian dragon’. The genus name is masculine.

Type species: Sphenodraco scandentis gen. et sp. nov., by monotypy.
 
Sphenodraco scandentis sp. nov.

Derivation of name: The species name comes from the Latin word scandens, meaning ‘climber’.

Diagnosis: Small rhynchocephalian with the following unique combination of traits: (i) maxillary dentition with posterior flanges decreasing in size posteriorly among the last three teeth; (ii) bases of the maxillary teeth are oblique to the tooth row (in labial view)*; (iii) short posterior process of the pleurapophysis of sacral vertebra 2; (iv) tall, funnel-shaped proximal epiphysis of the humerus; (v) tall acetabular region of the ilium, with posteriorly oriented iliac blade; (vi) short pubic process of the ilium*; (vii) slender stylopodia and zeugopodia, with the diameter being <.06 of the length between metaphyses; and (viii) metacarpal and metatarsal IV longer than III. An asterisk (*) represents autapomorphic features.

Living reconstruction of Sphenodraco scandentis in the Solnhofen Archipelago in Germany during the late Jurassic period. 
artwork by Gabriel Ugueto

 
Victor Beccari, Alexandre R. D. Guillaume, Marc E. H. Jones, Andrea Villa, Natalie Cooper, Sophie Regnault and Oliver W. M. Rauhut. 2025. An arboreal rhynchocephalian from the Late Jurassic of Germany, and the importance of the appendicular skeleton for ecomorphology in lepidosaurs. Zoological Journal of the Linnean Society. 204(3); zlaf073.  DOI: doi.org/10.1093/zoolinnean/zlaf073  [02 July 2025] 

Friday, June 13, 2025

[Paleontology • 2025] Spathagnathus roeperi • A New Species and the earliest Occurrence of the Gnathosaurinae (Pterosauria) from the Late Kimmeridgian of Brunn, Germany

 

Spathagnathus roeperi
 Fernandes, Tischlinger, Rothgaenger & Rauhut, 2025

Artistic reconstruction by Alessio Ciaffi
 
Abstract
The so-called “Solnhofen limestones” of southern Germany are widely recognized for their abundance of Late Jurassic fossil vertebrates, with pterosaurs being no exception. Within the recognized plenitude of the pterosaurs within this assemblage, although ctenochasmatid remains are relatively abundant, gnathosaurines are scarce, with only one known Solnhofen representative of the group known thus far. The Late Kimmeridgian locality of Brunn (near Regensburg, Germany) represents the oldest locality of the Solnhofen complex (“Solnhofen Archipelago” in recent literature), with only one pterosaur having been described from this locality to date. Here, a second pterosaur taxon from within this locality and a new gnathosaur is introduced, Spathagnathus roeperi gen. et sp. nov., whose novel tooth and dental enamel features add to the known dental diversity for the group. The new taxon represents the oldest occurrence of a gnathosaurine and contributes to the paleoenvironmental stratigraphic range for the Gnathosaurinae within the overall fossil assemblage of the Solnhofen Archipelago. Furthermore, the new taxon adds to the known diversity of ctenochasmatids in the Late Jurassic and underlines the importance of this early radiation of pterodactyloid pterosaurs during this time.

Keywords: Pterosauria, Gnathosaurinae, Mesozoic, Jurassic, Germany, Solnhofen Archipelago

SNSB-BSPG 1993 XVIII 1006 Spathagnathus roeperi gen. et sp. nov. photographed under normal light (A) and UV light (B).
Scale bar represents: 10 mm

Systematic paleontology
Order PTEROSAURIA Owen, 1842
Suborder PTERODACTYLOIDEA Plieninger, 1901

Family CTENOCHASMATIDAE Nopcsa, 1928 sensu Unwin, 2003
Subfamily GNATHOSAURINAE Nopcsa, 1928 sensu Unwin, 2002

Genus Spathagnathus gen. nov.

Spathagnathus roeperi gen. et sp. nov.

Diagnosis (autapomorphies indicated with asterisk). dorsoventrally compressed rostrum with lateral spatulate expansion on the anterior end of the premaxilla, laterally directed musiform teeth, tooth girth increasing from anterior to posterior end of the rostrum, dental enamel coating approximately half of tooth crowns, strongly veined enamel texture on tooth surface, presence of carinae.

Etymology. From the Latin “spatha” for “spatula”, and “gnath” for “jaw”; “roeperi” in honor of the late Martin Röper, long term director of the Bürgermeister-Müller-Museum in Solnhofen and leader of the excavations at the locality Brunn since the early 1990’s.

Artistic reconstruction of Spathagnathus roeperi by Alessio Ciaffi
 
 
Alexandra E. Fernandes, Helmut Tischlinger, Monika Rothgaenger and Oliver W. M. Rauhut. 2025. A New Species and the earliest Occurrence of the Gnathosaurinae (Pterosauria) from the Late Kimmeridgian of Brunn, Germany. PalZ. DOI: doi.org/10.1007/s12542-025-00725-0 [06 June 2025]


Thursday, May 15, 2025

[PaleoEntomology • 2025] Eoplatypleura messelensisSounds from the Eocene: The First Singing Cicada from the Messel Pit, Germany

 

 Eoplatypleura messelensis
 Jiang, Moulds, Blank, Rust & Wedmann, 2025 
 

Abstract
Cicadidae is one of the most species-rich insect families today. However, compared to the number of extant species, fossil records of Cicadidae are extremely limited. Among singing cicadas, the tribe Platypleurini within the Cicadinae subfamily is notable for its broad geographic distribution, high species diversity, and distinctive features, but no reliable fossil records have been discovered to date. In this study, we report the first fossil record of the Platypleurini from the Eocene Messel Pit: a new genus and species, Eoplatypleura messelensis. This species not only represents one of the earliest known fossil crown-group Cicadidae from the Eurasian continent but also the oldest confirmed record of the subfamily Cicadinae worldwide to date. As the first described fossil singing cicada from the Eocene Messel Pit, this discovery enriches the species diversity of the Messel biota and fills a significant gap in the Eocene cicada fossil record. The discovery of E. messelensis gen. et sp. nov. will serve as a fossil calibration point for future molecular phylogenetic studies and provides new insights into the origins and dispersal patterns of Platypleurini. Based on the analysis of existing records, Cicadidae was once widely distributed in Germany and across Europe during the Cenozoic.


Eoplatypleura messelensis  gen. et sp. nov.

 

Hui Jiang, Maxwell S. Moulds, Stephan M. Blank, Jes Rust and Sonja Wedmann. 2025. Sounds from the Eocene: The First Singing Cicada from the Messel Pit, Germany. Scientific Reports. 15: 12826. DOI: doi.org/10.1038/s41598-025-94099-7 [29 April 2025]

Monday, January 27, 2025

[Paleontology • 2022] Geiseleptes delfinoi • A New Gecko (Squamata: Gekkota) from the Eocene of Geiseltal (Germany) implies long-term persistence of European Sphaerodactylidae


 Geiseleptes delfinoi    
Villa, Wings & Rabi, 2022


Abstract
Gekkota (geckos and pygopods) constitute a diverse and early diverging clade of squamates, but their highly fragmentary fossil record allows only limited insights into their evolutionary history. Even long-known classic Palaeogene Lagerstätten, such as the Eocene Messel and Geiseltal, remained uninformative for gecko evolution. Here we describe an articulated near-complete crown-gekkotan skull from the Eocene of Geiseltal. The skull represents one of the most complete and oldest fossil geckos from the Cenozoic and warrants the naming of a new taxon, Geiseleptes delfinoi gen. et sp. nov. Parsimony analysis of an expanded morphological dataset that comprehensively samples fossil geckos recovers at least two lineages in the Palaeogene of Europe: Gekkonidae and Sphaerodactylidae. Further clades may have been present but require further support. The new species, together with several other European extinct taxa, belongs to the extant clade Sphaerodactylidae. Published molecular phylogenies imply a European dispersal from Africa for the clade, and G. delfinoi constrains the timing of this event to no later than the middle Eocene. Within Sphaerodactylidae, several Eocene, Oligocene and Miocene species form the stem-lineage of the extant Mediterranean-endemic Euleptes europaea of which G. delfinoi is the oldest representative. We here define the new clade Euleptinae for this group. Euleptine geckos had an unusually long evolutionary history in Cenozoic Europe and may represent one of the very few vertebrate clades with a persistent presence since the early Palaeogene, indicating extreme adaptability. As the oldest known crown-sphaerodactylid, G. delfinoi represents an important fossil calibration for divergence dating analyses of geckos.

Keywords: Palaeogene, Europe, phylogeny, Sphaerodactylidae, lizard, gecko



 Geiseleptes delfinoi gen. et sp. nov. 



Andrea Villa, Oliver Wings and Márton Rabi. 2022. A New Gecko (Squamata, Gekkota) from the Eocene of Geiseltal (Germany) implies long-term persistence of European Sphaerodactylidae. Papers in Palaeontology. 8(3); e1434. DOI: 10.1002/spp2.1434  
  phys.org/news/2022-06-history-european-geckos.html

Monday, November 18, 2024

[Paleontology • 2024] Skiphosoura bavarica • A new and large monofenestratan (Monofenestrata: Pterodactyliformes) reveals the evolutionary transition to the pterodactyloid pterosaurs


Skiphosoura bavarica 
 Hone, Fitch, Selzer, Lauer & Lauer, 2024

 Artwork by Gabriel Ugueto.
 
Highlights: 
• A new pterosaur, Skiphosoura bavarica, is named from the Jurassic of Germany
• The specimen is much larger than other known forms and is preserved in three dimensions
• The Skiphosoura helps document the transition from early pterosaurs to the pterodactyloids
• The tail is short but retains the supporting structures of earlier forms

Summary  
For over a century, there was a major gap in our understanding of the evolution of the flying Mesozoic reptiles, the pterosaurs, with a major morphological gap between the early forms and the derived pterodactyloids. Recent discoveries have found a cluster of intermediate forms that have the head and neck of the pterodactyloids but the body of the early grade, yet this still leaves fundamental gaps between these intermediates and both earlier and more derived pterosaurs. Here, we describe a new and large Jurassic pterosaur, Skiphosoura bavarica gen. et sp. nov., preserved in three dimensions, that helps bridge the gap between current intermediate pterosaurs and the pterodactyloids. A new phylogeny shows that there is a general progression of key characteristics of increasing head size, increasing length of neck and wing metacarpal, modification to the fifth toe that supports the rear wing membrane, and gradual reduction in tail length and complexity from earlier pterosaurs into the first pterodactyloids. This also shows a clear evolution of the increasing terrestrial competence of derived pterosaurs. Furthermore, this closes gaps between the intermediates and their ancestors and descendants, and it firmly marks the rhamphorhynchines and ctenochasmatid clades as, respectively, being the closest earliest and latest groups to this succession of transitional forms.

Keywords: Monofenestrata, Wukongopteridae, non-pterodactyloid, Pterosauria, Solnhofen, phylogeny


Taxonomy: 
Pterosauria (Kaup, 1834)
Breviquartossa (Unwin, 2003 sensu Andres et al., 2014)
Monofenestrata (Lü et al., 2010 sensu Andres et al., 2014)
Pterodactyliformes (Andres et al., 2014)

Photograph of the original specimen of Skiphosoura bavarica in natural and UV lighting. 

Skiphosoura gen. nov.
Skiphosoura bavarica sp. nov.

Diagnosis: A large, non-pterodactyloid pterodactyliform pterosaur (Figures 1 and S1–S11) with the following unique autapomorphies for this grade: raised margins of the alveoli in the maxillary dentition and laterally developed; variable tooth spacing with anterior teeth close together and posterior teeth much further apart in the upper jaw; postexapophyses present on cervical vertebrae; procoleous dorsal vertebrae; tail short but still retaining filiform supporting zygapophyses and chevrons; humerus shorter than femur; ulna more than 1.5 times the length of the humerus; robust pteroid that is gently curved along its length; and wing phalanx 2 is subequal to wing phalanx 3. 

Holotype: Specimen LF 4157—a near-complete but disarticulated specimen of a subadult animal that is missing only part of the skull, some vertebrae, and a few metapodial elements.

Locality information: The specimen was found in 2015 in the “visitor’s section” of the Schaudiberg Quarry near Mühlheim, Bavaria, Germany, which has yielded other recent pterosaur finds. ...

Life restoration of two Skiphosoura bavarica in flight.
 Artwork by Gabriel Ugueto.

Etymology: Skiphosoura derives from “skyphos” and “oura,” Ancient Greek for “sword” and “tail,” in reference to the short, stiff, and tapering caudal series of the animal, with bavarica in reference to the Free State of Bavaria in Germany where the specimen was found.
 

 
David William Elliott Hone, Adam Fitch, Stefan Selzer, René Lauer and Bruce Lauer. 2024. A new and large monofenestratan reveals the evolutionary transition to the pterodactyloid pterosaurs. Current Biology. DOI: doi.org/10.1016/j.cub.2024.10.023


Monday, September 23, 2024

[Paleontology • 2024] Cranial Anatomy of Acynodon adriaticus and extreme durophagous adaptations in Eusuchia (Reptilia: Crocodylomorpha)

 

Acynodon adriaticus Delfino, Martin & Buffetaut, 2008

in Muscioni, Chiarenza, Fernandez, Dreossi, Bacchia et Fanti. 2024.   
Artwork by Davide Bonadonna   facebook.com/DavideBonadonna1

Abstract
Acynodon adriaticus, a small eusuchian from the Late Cretaceous of Italy, is known for its well-preserved cranial and postcranial material. Despite its excellent preservation, many details remain hidden due to the physical overlap between the elements and matrix obliteration. We used Micro-CT scans to reveal previously overlooked anatomical features and describe in detail the cranial and dental anatomy of this taxon, shedding new light on its palaeoecology. The holotypic specimen, SC 57248, represents a mature individual exhibiting signs of hyperossification, developed ornamentation, and various pathologies, including jaw arthritis and a possible dental anomaly. Acynodon adriaticus exhibits significant durophagous adaptations, including a robust, brevirostrine skull optimized for powerful biting and stress-load capacity. Its specialized dentition, lacking caniniform teeth, features anterior chisel-like teeth and hypertrophic posterior molariforms with thick enamel, indicative of a diet specializing in hard-shelled prey. The dentition pattern, accelerated molariform replacement rate, and reduced orbit size suggest adaptations for durophagous foraging in turbid, densely vegetated aquatic environments. The paleoecological context during the Late Cretaceous, characterized by increased freshwater habitats and high invertebrate diversity, likely facilitated the evolution of such specialized traits in A. adriaticus. This small crocodylomorph likely foraged slowly in shallow, benthic environments, using its powerful bite to process mollusks and large arthropods. The study of A. adriaticus, along with comparisons with other crocodylomorphs and ecomorphologically similar taxa like Iharkutosuchus makadii and Gnatusuchus pebasensis, provides a valuable morphofunctional model for understanding the evolutionary pathways of extinct crocodylians to durophagy.

Keywords: Acynodon, Cretaceous, durophagy, Hylaeochampsidae, paleobiology

  Systematic paleontology
Crocodylomorpha Hay, 1930 sensu Nesbitt, 2011.
Neosuchia Benton & Clark, 1988.

Eusuchia Huxley, 1875 sensu Brochu, 2003.
Hylaeochampsidae Andrews, 1913.

Acynodon Buscalioni et al., 1997.

Acynodon adriaticus Delfino et al., 2008.



Schematic individual cranial bones of MCSNT 57248 in dorsal (a), ventral (b), lateral (c) and posterior (d) view. ...


 
Marco Muscioni, Alfio Alessandro Chiarenza, Diego Bladimir Haro Fernandez, Diego Dreossi, Flavio Bacchia, Federico Fanti. 2024. Cranial Anatomy of Acynodon adriaticus and extreme durophagous adaptations in Eusuchia (Reptilia: Crocodylomorpha). The Anatomical Record. DOI: doi.org/10.1002/ar.25574
Nuove scoperte sul fossile di un coccodrillo di 80 milioni di anni al Villaggio del Pescatore
 www.nationalgeographic.it/nuove-scoperte-sul-fossile-di-un-coccodrillo-di-80-milioni-di-anni-al-villaggio-del-pescatore