Tuesday, July 28, 2026

[Herpetology • 2026] Scincella dabieshanensis • A new Scincella species (Squamata: Scincidae) from the Dabie Mountains, China


 Scincella dabieshanensis Zhang, Yi, Zhang & Zhang,

 in H. Zhang, Yi, Yang, Wang, Xu, Zhan, Zhai, Chu, Hou, Y. Zhang, Wen, C. Zhang et B. Zhang, 2026.   
Dabie Mountains Ground Skink | 大别山滑蜥  ||  DOI: doi.org/10.3897/zse.102.187997 

Abstract
Previous studies have indicated the polyphyly of Scincella modesta and reported a new record of Scincella vandenburghi in Qingdao, Shandong Province. Furthermore, the research highlighted significant morphological similarities between the Qingdao population of S. vandenburghi and a branch of S. modesta from Hubei, leaving the taxonomic boundaries between these two species unclear. To better understand the relationship between S. modesta and S. vandenburghi, we conducted extensive sampling in the Dabie Mountains, which geographically lie between Qingdao, Ningbo and Yichang. Based on phylogenetic analyses and morphological comparisons, we identify an undescribed species of the genus Scincella from the Dabie Mountains, China and also discover the presence of a population of S. vandenburghi in the same region. Morphological characteristics and molecular phylogenetic analyses indicate that the new species is similar to S. vandenburghi, but clearly distinct from it and other congeners. The new species has the following characteristics: (1) slender body, small size, snout-vent length 24.47–40.60 mm; (2) supraciliaries 6 or 7; (3) midbody scale row counts 28–31; (4) dorsal scales smooth and slightly enlarged, paravertebral scale row counts 55–68, ventral scale row counts 55–64; (5) upper edge of lateral longitudinal stripes relatively wavy, lower edge irregular, covering 2–2.5 scale rows on the trunk; (6) black dorsolateral stripes from posterior corner of eye to lateral side of tail, six rows of dorsal scales in middle; (7) supralabials 7, infralabials 6 or 7; (8) tympanum diameters significantly smaller than palpebral disc diameters; (9) 9–12 enlarged lamellae beneath finger IV and 14–17 beneath toe IV; (10) 3–4 pairs of nuchal scales; (11) when the limbs are pressed down, toes and fingers touch or overlap. Phylogenetic analyses indicate that the population from the Dabie Mountains in Anhui Province, China, represents a new species, with a 3% uncorrected genetic distance in 16S rRNA from its closest relative (S. vandenburghi). This discovery brings the total number of Scincella species in China to 19, identifying the known distribution of the genus. We have made preliminary progress in clarifying the relationship between S. vandenburghi and S. modesta; however, the polyphyletic issues surrounding S. modesta warrant further investigation in future research. Additionally, the distribution patterns and divergence times of the two Scincella species in the Dabie Mountains require further study to gain a more comprehensive understanding.

Key Words: molecular phylogeny, morphological characters, Scincella dabieshanensis sp. nov., Scincella modesta, taxonomy

Holotype of Scincella dabieshanensis sp. nov. (AHU 25079) in life. Photo by Caiwen Zhang.

Scincella dabieshanensis Zhang, Yi, Zhang & Zhang, sp. nov.

Diagnosis. Scincella dabieshanensis sp. nov. can be diagnosed from other Scincella species by the following unique combination of characters: (1) slender body, small size, snout-vent length 24.47–40.60 mm; (2) supraciliaries 6 or 7; (3) midbody scale row counts 28–31; (4) dorsal scales smooth and slightly enlarged, paravertebral scale row counts 55–68, ventral scale row counts 55–64; (5) upper edge of lateral longitudinal stripes relatively wavy, lower edge irregular, covering 2–2.5 scale rows on the trunk; (6) black dorsolateral stripes from posterior corner of eye to lateral side of tail, six rows of dorsal scales in middle; (7) supralabials 7, infralabials 6 or 7; (8) tympanum diameters significantly smaller than palpebral disc diameters; (9) 9–12 enlarged lamellae beneath finger IV and 14–17 beneath toe IV; (10) 3–4 pairs of nuchal scales; (11) when the limbs are pressed down, toes and fingers touch or overlap.

Etymology. The specific epithet dabieshanensis is derived from the type locality, the Dabie Mountains, located at the boundary of Anhui, Henan and Hubei Provinces. We propose the English name of “Dabie Mountains Ground Skink” and the Chinese common name is “Dà Bié Shān Huá Xī (大别山滑蜥)”.


 Hailin Zhang, Feng Yi, Lulu Yang, Xinjian Wang, Shihang Xu, Zhiqiang Zhan, Xinyi Zhai, Jun Chu, Minggen Hou, Yucai Zhang, Jing Wen, Caiwen Zhang, Baowei Zhang. 2026. A new Scincella species (Squamata, Scincidae) from the Dabie Mountains, China, with Delimitation of its closely related congeners. Zoosystematics and Evolution. 102(4): 1005-1022. DOI: doi.org/10.3897/zse.102.187997 [24-07-2026]

Monday, July 27, 2026

[Herpetology • 2026] Megophrys praestes • A Comprehensive Review of the Megophrys (Brachytarsophrys) carinensis group (Amphibia: Megophryidae) reveals A New giant horned frog from Indochina and Evidence for Taxonomic Inflation in the feae Group

  

Megophrys praestes
Mahony, Phimmachak, Seateun, Sivongxay, Hoang, Le, Streicher, Rowley & Stuart, 2026
 

Abstract
The Megophrys subgenus Brachytarsophrys includes the largest species of Asian horned frogs north of the Malay Peninsula. The subgenus comprises two clades known as the feae group and carinensis group. Though the Chinese members of the feae group have been the focus of recent taxonomic studies, little is known of the two members of the carinensis group, M. carinensis and M. intermedia, from Thailand, Myanmar, Laos and Vietnam. Megophrys carinensis was long considered to be widespread in China until, relatively recently, some populations were found to represent species of the feae group, indicating that there is widespread confusion regarding the identification of M. carinensis. No sequence data have been available for M. carinensis and M. intermedia from their respective type localities to verify their genetic identities.

In this study, a near complete review of the global knowledge of the carinensis group is provided based on the literature, supplemented with multi-locus molecular phylogenetic analyses and a comprehensive morphological dataset for 35 adult specimens and five juveniles. Recently collected samples from 12 specimens of M. intermedia (including from the Langbiang Plateau) were sequenced, and a minimally destructive archival DNA Illumina protocol was used to obtain the complete mitochondrial genome for a 137-year-old ethanol preserved “topotype” of M. carinensis.

Molecular phylogenetic analyses identified two deeply divergent lineages in M. intermedia, one from the type locality of M. intermedia and a second representing all other previously sequenced populations of M. “intermedia” from outside the upper reaches of the Langbiang Plateau. The morphological data for adult frogs also strongly supported the recognition of two diagnosable taxa within M. intermedia sensu lato. Adults differed in morphometrics and qualitative characteristics, but the tadpoles differed slightly in morphometrics but not in any qualitative characteristics. Detailed taxonomic redescriptions are provided for both M. carinensis and M. intermedia, and a new species of Megophrys from the carinensis group is described. A comprehensive literature review of these three species is provided, identifications of populations are updated, and new information is given on behaviour and habitat association. A counter argument to the recent proposal to treat some of Malcolm Smith’s species epithets as nouns in apposition to the gender of the genus name is provided, clarifying the spelling of M. intermedia (and proposing to reject Alcalus pullus as the valid name for A. tasanae), and correcting the gender of M. carinensis and M. platyparieta. We highlight extensive misunderstandings in the literature regarding the identities of the type series of both M. carinensis and M. intermedia, and revise the geographic distributions of all species based on published and unpublished evidence (including online citizen science data).

Published records of M. “carinensis” from China, Laos, Vietnam, and India are individually reviewed to clarify the taxonomic identities of many of the populations. All Chinese and Vietnamese populations are suggested to represent feae group taxa, and we provide the most complete account of the distribution of this group. Fundamental errors are identified in the original descriptions of all recent feae group species (M. popei, M. orientalis, Megophrys guilinensis comb. nov., Megophrys qiannanensis comb. nov., Megophrys wenshanensis comb. nov., and Megophrys wui comb. nov.), surmising that there is currently insufficient evidence to morphologically diagnose the marginally genetically divergent named populations M. orientalis, M. guilinensis comb. nov. and M. wui comb. nov. as distinct from M. popei, and propose their synonymy. Beyond updates to the identification of populations resulting from this proposed synonymy, provisional updates are recommended for the identifications of more than 30 additional known Chinese populations.

Megophrys intermedia is now range-restricted to upper elevations on the Langbiang Plateau. Based on a review of the species’ extinction threat status, we recommend that it should potentially be considered Endangered, further highlighting the urgent need for comprehensive modern taxonomic redescriptions of historically described species in Southeast Asia.

Amphibia, Anura, Megophryinae, toad, taxonomy, systematics, nomenclature, literature review, natural history, phylogenetics, conservation, Endangered, China, Myanmar, Thailand, Laos, Vietnam




Megophrys praestes sp. nov. 

 

STEPHEN MAHONY, Somphouthone PHIMMACHAK, Sengvilay SEATEUN, Niane SIVONGXAY, Huy Duc HOANG, Duong Thi Thuy LE, Jeffrey W. STREICHER, Jodi J. L. ROWLEY and Bryan L. STUART. 2026. A Comprehensive Review of the Megophrys (Brachytarsophrys) carinensis group (Amphibia: Megophryidae) reveals A New giant horned frog from Indochina and Evidence for Taxonomic Inflation in the feae Group.  Zootaxa. 5854(1); 1-166. DOI: doi.org/10.11646/zootaxa.5854.1.1 [2026-07-24] 

  

[Paleontology • 2026] Climate-extreme-driven Genesis of A Cretaceous Dinosaur Lagerstätte

 


 in Fanti, Consorti, Muscioni, Baldassari, Dinelli, Polentarutti, ... et Chiarenza. 2026. 
Artwork by palaeoartist Davide Bonadonna

Highlights: 
• Monsoon-driven storms created a Cretaceous dinosaur Lagerstätte.
• Tidal microcouplets yield an unprecedented ∼40-year chronometry.
• Synchrotron micro-XRF/XRD maps refute seasonal varve interpretation.
• Microbial mats enabled rapid sealing and exceptional soft-tissue preservation.
• New genetic model and toolkit for climate event-driven preservation in carbonates.

Abstract
Konservat-Lagerstätten provide exceptional records of past ecosystems, yet the environmental and climatic processes governing their formation in extreme climatic regimes remain a significant, unresolved conundrum. Here we present a novel, process-based mechanism for the Villaggio del Pescatore Konservat-Lagerstätte (northeastern Italy; Late Cretaceous, 80 Ma), which preserves a diverse terrestrial and aquatic biota. Integrating high resolution synchrotron micro-analyses, bulk geochemistry, detailed taphonomy and palaeoclimate simulations we identify a dynamic, monsoon-paced tidal flat ecosystem within a carbonate coastal margin. Field and core records comprise metrescale packages of laterally persistent light–dark laminae; microstratigraphic, spectral and statistical analyses indicate a semidiurnal tidal regime with neap–spring modulation. MicroXRF/XRD mapping reveals that individual microlaminae within couplets share the same elemental inventory refuting a seasonal varve origin. Laminae chronometry, tied to the tidal interpretation, constrains net accumulation of the fossil bearing rhythmites to decadal (∼40 year) timescales. Geochemical proxies record alternating terrigenous rich, high TOC intervals and drier, better oxygenated intervals. Palaeoclimate model ensembles diagnose a vigorous, summer dominated monsoon domain at ∼29° N under greenhouse boundary conditions. We document that episodic monsoon enhanced flood and tropical cyclone pulses delivered sediment, nutrients, carcasses and plant debris to a microbially active, carbonate tidal flat; microbial mats rapidly stabilised and promoted early cementation, enabling exceptional soft tissue preservation. We propose a genetic model in which monsoon–cyclone forcing, tidal trapping and microbial sealing combine to produce decadal, daily resolved vertebrate Lagerstätten in greenhouse settings, offering predictive targets for similar deposits and deep time analogues for modern coastal change.

Keywords: Exceptional fossil preservation, Dinosauria, Crocodylomorpha, Arthropoda, Plants, Italy



“Stormbringer” — palaeoenvironmental reconstruction of Villaggio del Pescatore
The artwork shows a Tethyshadros insularis carcass and an Acynodon crocodylian on a storm-swept tropical tidal flat, beneath the monsoon clouds and a distant cyclone that the study identifies as the engine of the site’s formation.
 by palaeoartist Davide Bonadonna. 
 

Federico Fanti, Lorenzo Consorti, Marco Muscioni, Lorenzo Baldassari, Enrico Dinelli, Maurizio Polentarutti, Giorgio Bais, Alexander Farnsworth, Evelyn Kustatscher, Amalia Spina and Alfio Alessandro Chiarenza. 2026. Climate-extreme-driven Genesis of A Cretaceous Dinosaur Lagerstätte. Global and Planetary Change.  265, October 2026, 105589. DOI: doi.org/10.1016/j.gloplacha.2026.105589

[Arachnida • 2026] Tigidia singhal • A New Species of the Trapdoor Spider Genus Tigidia Simon, 1892 (Araneae: Barychelidae) from the Deccan Plateau, India


Tigidia singhal
 Tripathi, Bolde & Vanak, 2026
 
 
Abstract
A new species of trapdoor spider, Tigidia singhal sp. nov., is described from the semi-arid grasslands of the Deccan Plateau in Maharashtra, India. Detailed morphological descriptions, measurements, and illustrations of the holotype female are provided. This discovery marks the first record of the genus Tigidia from a semi-arid, open natural ecosystem, significantly expanding its known biogeographic range beyond the evergreen and deciduous forest habitats of peninsular India. Additionally, we document natural history observations, including burrow architecture and microhabitat preferences. This find highlights the underexplored diversity of Indian mygalomorph spiders and underscores the critical need for biodiversity surveys in open natural ecosystems.

KEYWORDS: burrowing behaviour, Mygalomorphae, range extension, semi-arid ecosystem, systematics

Tigidia singhal sp. nov., field photographs.
A collection locality; B holotype female; C excavated burrow showing silk lining; D schematic representation of burrow architecture.

Tigidia singhal sp. nov., holotype female.
A habitus, dorsal view; B eye group, dorsal view; C fovea, dorsal view; D cephalothorax, ventral view; E spinnerets, ventral view; F chelicera, prolateral view; G close-up of cheliceral furrow showing basomesal teeth; H leg I, prolateral view; I left leg III showing preening comb on metatarsus, ventral view; J same, leg IV. Scale bars = 5 mm (A), 1 mm (B–C, E–F, I–J), 2 mm (D, H), 0.2 mm (G).

Barychelidae Simon, 1889a
Tigidia Simon, 1892
Type species: Tigidia mauriciana Simon, 1892.
Diagnosis: For description and diagnosis of the genus see Mirza (2023).

Distribution: India, Madagascar, and Mauritius Islands (Mirza 2023; World Spider Catalog 2026).

Tigidia singhal sp. nov.  

Diagnosis: Females of Tigidia singhal sp. nov. are similar to T. fasciata Mirza, 2023, T. jalgaonensis Mirza, 2023, and T. tangerina Mirza, 2023 in possessing elongate, widely separated spermathecae. However, they can be differentiated by a unique combination of characters: in T. singhal the spermathecal stalks arise from the middle of the spermathecae (v. arising from the apex in T. jalgaonensis, at bottom in T. tangerina, and ...

Etymology: The species is named in honor of Sandeep Singhal for his contributions to grassland conservation in India, including this work; the species was collected from semi-arid grassland habitats, highlighting the ecological importance of these ecosystems.


Rishikesh Tripathi, Prasad Bolde, Abi Tamim Vanak. 2026. A New Species of the Trapdoor Spider Genus Tigidia Simon, 1892 (Araneae: Barychelidae) from the Deccan Plateau, India. Arachnology. 20(5); 749-752. DOI: doi.org/10.13156/arac.2026.20.5.15 [8 July 2026]

Saturday, July 25, 2026

[Ichthyology • 2026] Nanosphronemus gemma • A remarkable New Genus and Species of miniature osphronemid (Anabantoidei: Osphronemidae) from Vietnam


Nanosphronemus gemma
 Britz, Tan & Rüber, 2026

Raffles. Bull. Zool. 74

Abstract
 A new genus and species of miniature labyrinth fish of the family Osphronemidae, Nanosphronemus gemma, is described from Vietnam. It differs from all other genera of anabantoids by a unique dorsal- and anal-fin ray count, a unique colour pattern and a number of unique or highly unusual skeletal characters. Our molecular phylogenetic analysis indicates that Nanosphronemus is the sister group of the genus Trichopsis, the croaking gouramis. 

Key words. Anabantoidei, labyrinth fishes, miniaturisation, gourami

Nanosphronemus gemma, live colouration, not preserved, all ca. 16 mm SL in lateral view.
a, putative female above, note absence of red stripe in dorsal half; b, putative male in normal colouration, note presence of red stripe above and darker pigmentation below midlateral stripe; c, putative male in breeding colouration, note overall darker colouration of body and also fins, presence of bright red stripe and highly iridescent scales in mid-lateral stripe and below on head and body.

Nanosphronemus gemma, not preserved, all ca. 18 mm SL.
a, mature female with eggs; b, in breeding colouration and typical oblique courtship position, c, approaching bubble nest under plant leaf; d, adding air bubbles and embedding eggs into bubble nest.

Nanosphronemus, new genus  

Diagnosis. Nanosphronemus differs from all other genera in the suborder Anabantoidei by its unique count of XIX– XXI+2–3 dorsal-fin rays (vs. I–XVIII+ 4–14, rarely XIX in some specimens of Macropodus ocellatus) and XX– XXIV+4–5 anal-fin rays (vs. I–XVII+8–38, rarely XX–XXII in some specimens of Macropodus spp.), the presence (vs. absence) of a series of anteroventrally directed processes off the distal part of caudal haemal arches, Baudelot’s ligament ...

Etymology. The new genus name is derived from the Ancient Greek word, νάνος, meaning dwarf, combined with the name Osphronemus, the type genus of the family Osphronemidae, to which this new genus belongs. Gender: masculine. The name alludes to the tiny size of this new fish, which makes it one of the smallest anabantoids known to date.

Nanosphronemus gemma, new species 

 Suggested common name. Jewel Gourami.

Distribution. Unclear at present: reported from undisclosed area near Huế in Central Vietnam. 

Etymology. The species name is derived from the Latin word for jewel, ‘gemma’, alluding to the stunning colouration of sexually mature males. A noun in apposition.


 
Ralf BRITZ, Heok Hui TAN and Lukas RÜBER. 2026. Nanosphronemus gemma, A remarkable New Genus and Species of miniature osphronemid from Vietnam (Teleostei: Anabantoidei: Osphronemidae). Raffles. Bull. Zool. 74; 606–623. 
 

[Ichthyology • 2026] Molecular Phylogenetics and A New Taxonomy of the Neotropical Electric Fishes (Actinopterygii: Otophysi: Gymnotiformes)

 


Representatives of the six gymnotiform families Apteronotidae (A), Sternopygidae (S), Gymnotidae (G), Electrophoridae (E), Hypopomidae (H), and Rhamphichthyidae (R). 
Top to bottom, and left to right, are: Rhamphichthys rostratus (R), Archolaemus janeae (S), Sternarchorhamphus muelleri (A), Eigenmannia magoi (S), Gymnotus carapo (G), Sternarchorhynchus sp. (A), Apteronotus galvisi (A), Orthosternarchus tamandua (A), “Apteronotus” (Genus B) cuchillejo (A), Apteronotus eschmeyeri (A), Apteronotus cf. albifrons (A), Gymnorhamphichthys sp. (R), Sternarchorhynchus marreroi (A), Sternopygus aequilabiatus (S), Adontosternarchus devenanzii (A), Steatogenys duidae (R), Brachyhypopomus occidentalis (H), Hypopomus artedi (H), and Electrophorus multivalvulus (E). 
in Janzen, Sabaj, Crampton et Lovejoy, 2026.
Photos by M. Sabaj.
  
Highlights: 
• New 9 gene molecular tree for 202 species of Neotropical electric knifefishes (order Gymnotiformes)
• A new taxonomy is proposed, based on the most extensive phylogenetic analysis to date.
• Strong phylogenetic support for 6 families, including the Electrophoridae (electric eels)
• Two main groups of species defined by either pulse or wave-type electric signals.
• Two new suborders: Pulseoidei for pulse-type species and Sinusoidei for wave-type species.

Abstract
The order Gymnotiformes—Neotropical electric eels and knifefishes—comprise a distinctive lineage of freshwater fishes characterized by electrogenesis and electroreception. Despite their ecological, evolutionary, and neurobiological significance, phylogenetic relationships within the order remain incompletely resolved. We present the most taxonomically inclusive molecular phylogeny of Gymnotiformes to date, based on two mitochondrial and seven nuclear genes from 202 species representing 31 of 36 extant genera. Maximum likelihood and Bayesian inference analyses provide strong support for a concordant species-level phylogenetic arrangement that we use to propose a revised classification of Gymnotiformes, including new suprageneric names and reassignments of some taxa and species. We found support for six monophyletic families, including Electrophoridae (electric eels). We propose two new suborders corresponding to electric signal type: Pulseoidei (pulse-type) and Sinusoidei (wave-type), an arrangement that does not allow determination of whether a pulse or wave-type signal was ancestral. In Apteronotidae, the subfamilies Sternarchorhamphinae and Apteronotinae are supported; within Apteronotinae, we establish the tribe Steatogenini to include Porotergus, Sternarchella, and close relatives. We resolve the non-monophyly of Apteronotus with generic reassignments. For Sternopygidae, we support the monophyletic subfamilies Sternopyginae and Eigenmanniinae and resolve polyphyly in Rhabdolichops and Eigenmannia via generic reassignments. Within Gymnotus, we support six species groups. We confirm the sister-group relationship between Hypopomidae and Rhamphichthyidae and clarify their internal structure, including support for six species groups within the diverse genus Brachyhypopomus. Our study provides a robust phylogenetic framework for Gymnotiformes and establishes a foundation for future work on systematics, biogeography, trait evolution, and comparative neurobiology.
 
Keywords: Neotropical, Systematics, Electric eel, Knifefish, Electric organ discharges


Sinusoidei subord. nov. changed from “Sinusoidea” of Albert 2001

Pulseoidei subord. nov. changed from “Pulseoidea” of Alda et al. 2018

Representatives of the six gymnotiform families Apteronotidae (A), Sternopygidae (S), Gymnotidae (G), Electrophoridae (E), Hypopomidae (H), and Rhamphichthyidae (R). 
Top to bottom, and left to right, are: Rhamphichthys rostratus (R), Archolaemus janeae (S), Sternarchorhamphus muelleri (A), Eigenmannia magoi (S), Gymnotus carapo (G), Sternarchorhynchus sp. (A), Apteronotus galvisi (A), Orthosternarchus tamandua (A), “Apteronotus” (Genus B) cuchillejo (A), Apteronotus eschmeyeri (A), Apteronotus cf. albifrons (A), Gymnorhamphichthys sp. (R), Sternarchorhynchus marreroi (A), Sternopygus aequilabiatus (S), Adontosternarchus devenanzii (A), Steatogenys duidae (R), Brachyhypopomus occidentalis (H), Hypopomus artedi (H), and Electrophorus multivalvulus (E). 
Photos by M. Sabaj.
  
 

 Francesco H. Janzen, Mark H. Sabaj, William G.R. Crampton, Nathan R. Lovejoy, 2026. Molecular Phylogenetics and A New Taxonomy of the Neotropical Electric Fishes (Actinopterygii: Otophysi: Gymnotiformes). Molecular Phylogenetics and Evolution. In Press, 108678. DOI: doi.org/10.1016/j.ympev.2026.108678 [10 July 2026]

Friday, July 24, 2026

[Ichthyology • 2026] Acrossocheilus zhangjiajiensis • Integrative Taxonomy reveals A New Species of Acrossocheilus (Cypriniformes: Cyprinidae) from Hunan Province, China


Acrossocheilus zhangjiajiensis

in Cao, Deng, Xiang, Xie, Wang, Li, Hu, Wei et Jiang, 2026.
张家界光唇鱼  ||  DOI: doi.org/10.3897/zse.102.195486

Abstract
The genus Acrossocheilus (Cyprinidae), which occurs in Southeast Asia and southern China, is of significant ecological and economic importance. A new species, Acrossocheilus zhangjiajiensis sp. nov., is described from the upper Lishui River Basin, a tributary of the Yangtze River, in Sangzhi County, Zhangjiajie City, Hunan Province, China. The description is based on an integrative taxonomic approach combining morphological examination, DNA barcoding, and mitogenomic analyses. This new species is distinguished from all congeners by the following combination of characters: a maxillary barbel extending to the midline of the eye; a slightly hardened last unbranched dorsal-fin ray with a smooth posterior margin; dorsal-fin membranes with black stripes; the second primary vertical bar (PVB2) positioned anterior to the origin of the dorsal fin; juveniles and adults possessing six distinct vertical black bars on the flank; and fewer than 40 lateral line scales. Notably, it further differs from its sister species, A. jishouensis, in several morphometric traits, as well as the texture of the last unbranched dorsal-fin ray and the persistence of vertical flank bars throughout all life stages. The complete mitogenome of A. zhangjiajiensis sp. nov. is 16,592 bp in length. Phylogenetic analyses based on the mitochondrial COI gene and the 13 protein-coding genes (PCGs) support a sister-species relationship between A. zhangjiajiensis sp. nov. and A. jishouensis, with genetic distances of 3.1%​ (COI) and 3.3% (13 PCGs). A COI-based haplotype network and species delimitation analyses further support the distinctiveness of the new species. This discovery increases the total number of valid Acrossocheilus species to 25 and provides critical data for the systematics, evolution, and conservation of this genus.

Key Words: Cyprinid, integrative taxonomy, morphology, mitogenome, Yangtze River

Live specimens of Acrossocheilus zhangjiajiensis sp. nov.
A. Lateral view of body; B. Lateral view of head; C. Ventral view of head; D. Dorsal view of head.
 
Acrossocheilus zhangjiajiensis sp. nov.

Etymology. The specific epithet zhangjiajiensis is derived from Zhangjiajie City, where the type locality of this species is located. Currently, this taxon is known only from this type locality, and its Chinese name is “Zhāng jiā jiè guāng chún yú (张家界光唇鱼)”.


 Jianhan Cao, Zhiyong Deng, Hongmei Xiang, Yixing Xie, Cheng Wang, Hong Li, Yang Hu, Ying Wei and Wansheng Jiang. 2026. Integrative Taxonomy reveals A New Species of Acrossocheilus (Cypriniformes, Cyprinidae) from Hunan Province, China. Zoosystematics and Evolution. 102(3): 869-883. DOI: doi.org/10.3897/zse.102.195486 [25-06-2026]


[Paleontology • 2026] Tametara mirim • Exceptional Brain and Ecological Diversity in the earliest Snakes

 

Tametara mirim
Simões, Sobral, Macrì, Ebel, Fachini, Martinelli, Nava, Paixão, Chiappe, Di-Poï & Hsiou, 2026


Abstract
Understanding the ecological origin of snakes has remained a century-old challenge, hindered by an extremely sparse early fossil record and conflicting interpretations of fossil ecologies. Here we describe an exceptionally preserved Cretaceous fossil snake, Tametara mirim gen. et sp. nov., from Brazil, representing one of the earliest-diverging stem snakes. High-resolution micro-CT scans reveal unprecedented details of cranial nerves, inner ear and brain anatomy, enabling the most integrated reconstruction of stem snake neuroanatomy to date. Quantitative and qualitative endocast analyses demonstrate that Tametara had a brain morphology distinct from both other stem and extant snakes, revealing substantial early neuroanatomical disparity—and probably sensory functions—in snake evolution. Independent evidence from telencephalon shape and bone microstructure converges on a fossorial lifestyle for Tametara and non-fossorial for another stem snake: Dinilysia. These results indicate that major ecological transitions occurred early in snake evolution, and that known stem species do not represent the ancestral condition of crown snakes. Early snake evolution thus involved complex shifts in habitat use and sensory ecology, revealing greater ecological and neuroanatomical diversity than previously thought.
 
Systematic palaeontology
Squamata Oppel, 1811
Serpentes Linnaeus, 1758

Holotype (MPM 420) of Tametara mirim
 a, Photograph of the whole specimen with the articulated skull and postcranium in dorsal view. Ant, anterior; Bl, block number; Ce.V., cervical vertebrae; Do.V., dorsal vertebrae; Post, posterior; Sk, skull. b,c, Photographs of the skull in lateral (b) and dorsal (c) view. CB, compound bone; F, frontal; Oto, otoccipital; P, parietal; PFr, postfrontal; Pro, prootic; Ptg, pterygoid; Q, quadrate; Soc, supraoccipital; St, supratemporal. d–g, 3D renderings of an anterior precloacal (‘cervical’) vertebra in lateral (d) and anterolateral (e) views, and mid-precloacal (‘dorsal’) vertebra in dorsal (f) and left lateral (g) views. h–j, 3D renderings of the skull in the right lateral view (h) and with exposed brain endocasts in the right lateral (i) and dorsal (j) views. Mes., mesencephalon; Rho., rhombencephalon; Tel., telencephalon. Scale bars, 100 mm (a), 5 mm (b,c,h–j) and 1 mm (d–g). Specimen photos were taken by A.S.H.

Tametara mirim gen. et sp. nov.

Diagnosis. Tametara mirim can be distinguished from all other snakes based on the following combination of characters: postfrontal present but parietal (posterior) process absent*; parietal with posteromedial process present*; supraoccipital with sagittal crest, posterolaterally projecting nuchal crests*, well-developed anterolateral processes* and strongly overlapped by the parietal dorsally; otoccipitals not contacting each other medially (separated by posterior process of supraoccipital); quadrates with quadrate conch, suprastapedial process and pterygoid lappet; posterior surangular foramen present; precloacal vertebrae with well-developed and ventrolaterally oriented ...

Etymology. Tametara, meaning ‘adorned’ (referring to the pronounced sagittal crest of the holotype); mirim, meaning small-sized, in the native Brazilian, Tupí-Guaraní language.

Holotype. MPM 420 (Museu de Paleontologia de Marília, Marília, State of São Paulo, Brazil). Posterior half of a 3D-preserved skull and mandibles articulated with the anterior portion of the postcranium, including 103 presacral vertebrae.

Locality and age. The fossil was discovered by W.R.N. and G.M.X.P. in 2020, in William’s Quarry 2 at Sítio Paleontológico ‘José Martin Suárez’ (Presidente Prudente municipality, State of São Paulo, Brazil); Adamantina Formation, Bauru Group, Bauru Basin, late Santonian to early Campanian age (approximately 85–75 million years ago (Ma))22.


 
Tiago R. Simões, Gabriela Sobral, Simone Macrì, Roy Ebel, Thiago S. Fachini, Agustín G. Martinelli, William R. Nava, Giovanna M. X. Paixão, Luis M. Chiappe, Nicolas Di-Poï and Annie S. Hsiou. 2026. Exceptional Brain and Ecological Diversity in the earliest Snakes. Nature. DOI: doi.org/10.1038/s41586-026-10809-9 [22 July 2026]


Wednesday, July 22, 2026

[Herpetology • 2026] Gekko qiannanensis • A New Karst-adapted Gecko (Squamata: Gekkonidae) from southern Guizhou, China


Gekko (Japonigekko) qiannanensis Huang, Ma, Jiang & Wu,   

in Huang, Ma, Xiao, Zhang, Pu, Ran, Zhu, Jiang et Wu, 2026. 
黔南壁虎  ||  DOI: doi.org/10.3897/zse.102.189932

Abstract
Karst landscapes, which are characterized by their complex terrain, foster exceptionally high species diversity. During recent field surveys in Qiannan Buyi and Miao Autonomous Prefecture, Guizhou Province, China, a new karst-adapted gecko species was discovered. Using an integrative approach combining molecular and morphological analyses, it is described here as Gekko qiannanensis sp. nov. Phylogenetically, it clusters within a well-supported clade of the subgenus Japonigekko that includes the karst-adapted G. fengshanensis, G. liboensis, G. kwangsiensis, G. paucituberculatus, and the dry-hot valley species G. tesselatus. Morphologically, it can be distinguished from all known species in Japonigekko by a combination of the following traits: moderate body size, with snout–vent length 65.4–82.9 mm in adult males and 77.7–91.7 mm in adult females; two enlarged postmentals; nares in contact with the rostral, internasal absent; subdigital lamellae: fourth fingers 14–16, first toes 9–11, and fourth toes 14–17; moderately developed toe webbing, originating proximal to subdigital lamellae; interorbitals 28–38; midbody scale rows 134–155; ventral scale rows 42–49; precloacal pores 10–11 in males; a single postcloacal tubercle on each side; dorsum earth gray, with six dirty-white bands between the nape and sacrum. Notably, the new species can be distinguished from its karst-adapted congeners by its moderately developed toe webbing. The discovery of G. qiannanensis brings the number of recognized species in Japonigekko to 42 globally, of which 28 are now recorded from China. This finding highlights the role of karst habitat fragmentation in driving allopatric speciation and underscores the rich but still incompletely documented herpetofaunal diversity of South China’s karst regions.

Key Words: herpetofauna, integrative taxonomy, new species, phylogeny, toe webbing

Holotype (JSU-HJ2025024, adult male) of Gekko qiannanensis sp. nov. after euthanasia.
 A. Dorsal view of body. B. Ventral view of body. C. Dorsal view of head. D. Ventral view of head. E. Right lateral view of the head. F. Ventral view of right hand. G. Ventral view of left hand. H. Ventral view of right foot. I. Ventral view of left foot. J. Ventral view of precloacal region. K. Right lateral view of basal tail.
Photos by Jie Huang and Yang Xiao. Scale bars: 10 mm.

Egg hatching of Gekko qiannanensis sp. nov.  
A. Discovery of gecko eggs at the corner of the wall, with 14 eggs already hatched and two remaining unhatched. B. Two hatching gecko eggs with attached wall plaster. C. One gecko egg in the process of hatching, side view. D. One gecko egg in the process of hatching, top view. E. The gecko juvenile 13 days after hatching.
Photos by Jie Huang. Scale bar: 10 mm.

Gekko qiannanensis Huang, Ma, Jiang & Wu, sp. nov.
 
Diagnosis. Gekko qiannanensis sp. nov. is assigned to the subgenus Japonigekko according to phylogenetic analysis. It can be distinguished from other congeners in Japonigekko by the following characters: moderate body size: SVL 65.4–82.9 mm in adult males, 77.7–91.7 mm in adult females; two enlarged postmentals; nares in contact with the rostral, internasal absent; subdigital lamellae: fourth fingers 14–16, first toes 9–11, fourth toes 14–17; moderately developed toe webbing, originating proximal to subdigital lamellae; interorbitals 28–38; Midbody scale rows 134–155; ventral scale rows 42–49; precloacal pores 10–11 in males; a single postcloacal tubercle on each side; dorsum earth gray, with six dirty-white bands between nape and sacrum.

Etymology and suggested Chinese and English name. The specific epithet, qiannanensis, is derived from the Chinese pinyin of its type locality in Qiannan Buyi and Miao Autonomous Prefecture. The Chinese name for the new species is suggested as “黔南壁虎” (pinyin: qián nán bì hǔ), and the English is suggested as “Qiannan Gecko.”


 Jie Huang, Shun Ma, Yang Xiao, Fangpeng Zhang, Zhongzhu Pu, Jingcheng Ran, Jingyi Zhu, Wansheng Jiang and Jianpu Wu. 2026. Gekko (Japonigekko) qiannanensis, A New Karst-adapted Gecko (Squamata, Gekkonidae) from southern Guizhou, China. Zoosystematics and Evolution. 102(4): 973-987. DOI: doi.org/10.3897/zse.102.189932 [20-07-2026]

Tuesday, July 21, 2026

[Ichthyology • 2026] The prolonged Reemergence of Megapredatory Pelagic Fishes

  

the diversification of living large-bodied (> 2 m) marine predatory fishes such as tunas and mackerels (Scombridae)

in Brownstein, Alencar, Kindsvater, Thacker, Wainwright, Near et Harrington, 2026. 
 
Abstract
The assembly of modern ocean ecosystems was fundamentally affected by the Cretaceous–Palaeogene (K-Pg) mass extinction. Among the casualties of this event were many extinct clades of large pelagic predatory fishes. The extinction of these lineages is thought to have created ecological opportunity that spurred the diversification of living large-bodied (> 2 m) marine predatory fishes such as tunas and mackerels (Scombridae). However, it remains unclear whether a large, endothermic body plan evolved in tunas and mackerels directly after the K-Pg boundary or in a stepwise manner throughout the Cenozoic. Here, we demonstrate that Scombridae, which includes half of living endothermic ray-finned fish species, evolved endothermy and large body sizes long after the initial radiation of the clade at the K-Pg boundary. Our time-calibrated phylogeny also reveals that the origins of endothermy, large body size and increased longevity in true tunas are staggered over evolutionary time. These findings indicate that the evolution of large endothermic scombrids was not triggered by the K-Pg extinction and substantiate the protracted development of the endothermic predatory body plans of tunas and relatives over more than 50 million years of evolutionary history.

Keywords: Scombridae, tunas, phylogenomics, K-Pg mass extinction, endothermy



Origin of large body sizes in Scombridae. The phylogeny is coloured according to the ancestral state reconstruction for log-transformed standard length. Warmer colours indicate body sizes approaching 4 m. Body size increases over 2 m are denoted by Roman numerals. The innermost dashed circle indicates the K-Pg boundary. Illustrations of scombrids are by Julie Johnson (lifesciencestudios.com).

Tempo of trait shifts in Scombridae. Inferred histories of significant trait optima shifts across Scombridae plotted on the time-calibrated phylogeny of this clade. Shifts inferred with over 30% posterior probability are included. The full bayou outputs are in the electronic supplementary material associated with this article. Illustrations of scombrids are by Julie Johnson (lifesciencestudios.com).



Chase D. Brownstein; Laura R. V. Alencar; Holly K. Kindsvater; Christine E. Thacker; Dylan K. Wainwright; Thomas J. Near and Richard C. Harrington. 2026. The prolonged Reemergence of Megapredatory Pelagic Fishes.  Proc Biol Sci. 293 (2074): 20261257. DOI: doi.org/10.1098/rspb.2026.1257 [08 Jul 2026]