Showing posts with label Journal: Zoosystematics and Evolution. Show all posts
Showing posts with label Journal: Zoosystematics and Evolution. Show all posts

Friday, August 28, 2026

[Herpetology • 2026] Leptobrachella jinzhongshanensis • A New Species of Leptobrachella (Anura: Megophryidae) from Jinzhongshan National Nature Reserve, Guangxi, China


Leptobrachella jinzhongshanensis
Chen, Su, Yang & Pan, 2026

金钟山掌突蟾 | DOI: doi.org/10.3897/zse.102.195575 

Abstract
Integrative morphological and molecular evidence supports the recognition of Leptobrachella jinzhongshanensis sp. nov. from Longlin County, Guangxi, China. The new species is distinguished by a combination of characters, including medium body size (snout-vent length 30.4–32.5 mm in males and 40.3–42.8 mm in females), narrow lateral fringes on the toes, absence of toe webbing, continuous dermal ridges beneath the toes, heels that do not meet when the thighs are held at right angles to the body axis, irregular black flank spots, a bicoloured iris and interwoven creamy-white and light-grey markings on the venter. Phylogenetic analyses of mitochondrial 16S rRNA sequences recovered the Jinzhongshan specimens as a strongly supported lineage sister to L. dorsospina, from which they differed by an uncorrected p-distance of 1.4%. Leptobrachella jinzhongshanensis sp. nov. is currently known only from montane evergreen broadleaf forest at 1,700–1,800 m elevation. Within the Reserve, L. ventripunctata was recorded along streams below 1,000 m, indicating ecological and elevational separation between the two species.

Key Words: Integrative taxonomy, leaf-litter frog, morphology, phylogeny

Leptobrachella jinzhongshanensis sp. nov. 
 A–F. Holotype (NNU 001478): A. Dorsal view; B. Ventral view; C, D. Dorsolateral views; E. Ventral view of hand; F. Ventral view of foot.
G, H. Paratype NNU 001479: G. Dorsal view; H. Ventral view.
photographs by Wei-Cai Chen.

Variation in Leptobrachella jinzhongshanensis sp. nov.
 A1, A2. NNU 001323; B1, B2. NNU 001324;
C1, C2. NNU 001480; D1, D2. NNU 001481;
E1, E2. NNU 001482; F1, F2. NNU 001483;
G1, G2 NNU 001484; H1, H2 NNU 001485.
photographs by Wei-Cai Chen.

Leptobrachella jinzhongshanensis sp. nov.

Etymology. The specific epithet jinzhongshanensis refers to the type locality, Mt Jinzhongshan. We propose “Jinzhongshan Leaf-litter Frog” as the English common name and Jīn Zhōng Shān Zhǎng Tū Chán (金钟山掌突蟾) as the Chinese common name.

Diagnosis. Leptobrachella jinzhongshanensis sp. nov. is distinguished from congeners by the following combination of characters: (1) medium body size (SVL 30.4–32.5 mm in males and 40.3–42.8 mm in females); (2) narrow lateral fringes on the toes; (3) absence of toe webbing; (4) continuous dermal ridges beneath the toes; (5) relative finger lengths IV < II ≈ I < III; (6) tibiotarsal articulation reaching the posterior corner of the eye; (7) heels not meeting when the thighs are held at right angles to the body axis; (8) irregular black spots on the flanks; (9) iris copper above and silver below; and (10) interwoven creamy-white and light-grey markings on the venter.


 Wei-Cai Chen, Tong-Ping Su, Hai-Ju Yang and Mei-Ye Pan. 2026. A New Species of Leptobrachella (Anura, Megophryidae) from Jinzhongshan National Nature Reserve, Guangxi, China. Zoosystematics and Evolution. 102(4): 1089-1105. DOI: doi.org/10.3897/zse.102.195575  [27 Aug 2026]

Saturday, August 22, 2026

[Ichthyology • 2026] Laimosemion laranja • A New killifish of the Genus Laimosemion (Cyprinodontiformes: Rivulidae) from Rio Cajari in the Brazilian Amazon


Laimosemion laranja 
Abrantes, Lima, Nielsen, de Lira, da Silva & Berbel-Filho, 2026
 

Abstract
Based on morphological and molecular evidence, this study describes a new species of rivulid of the genus Laimosemion from the lower Rio Amazonas Basin in the south of the state of Amapá in northern Brazil. The new species, Laimosemion laranja sp. nov., exhibits a color pattern characteristic of the L. geayi species group, consisting of longitudinal rows of spots on the anterior portion of flank and oblique chevron-shaped bars on the posterior portion of flank. It can be distinguished from its congeners by unique combination of characters, including position of dorsal-fin origin relative to anal-fin rays, frontal squamation pattern of head, counts of transverse and longitudinal scale series, fin-ray counts, vertebral count, osteology of caudal fin, and number of neuromasts in infraorbital series. Partial sequences of the mitochondrial cytochrome c oxidase subunit I (cox1) gene indicates that the new species diverges genetically by 5.3% from its closest relatives, L. agilae and L. strigatus, by 9.2% from L. dibaphus, and 12.3% from L. geayi. We further discuss the systematic relationships within the L. geayi species group and the conservation status of the new species based on IUCN criteria, including recommendations for its conservation.

Key Words: Amapá State, Amazonas Estuary and Coastal Drainages Ecoregion, Amazonian ichthyofauna, conservation

Laimosemion laranja new species
 Holotype [INPA–ICT 062600], male, 26.8 mm SL; 
 Paratype [INPA–ICT 062601], female, 20.1 mm SL 
Brazil, Amapá, Laranjal do Jari, Rio Cajari, Amazonas Basin.
photos: Y. Abrantes. 
 
Laimosemion laranja sp. nov.

Diagnosis. Laimosemion laranja differs from the six congeners of the L. geayi group by having eight scales in transverse series (vs.7 in L. dibaphus and L. strigatus, 9 in L. geayi, 9–10 in L. agilae and L. cladophorus, and 9–11 in L. mabura). It can be distinguished from all other congeners of the L. geayi group, except L. agilae and L. cladophorus, by dorsal-fin origin positioned on transversal plane through bases of 4th–6th anal-fin rays in both sexes (vs. of 7th–8th anal-fin rays). It differs from L. agilae by frontal squamation pattern of head (E squamation vs. F squamation) and from ...

Etymology. The specific epithet ‘laranja’ is a name with a dual allusion. It refers to the bright orange color pattern on males of the new species (‘laranja’ means the color, as it also means the fruit in Portuguese), and is also an homage to the municipality of Laranjal do Jari, founded on December 17, 1987, in the south of Amapá State, Brazil, from where the species is currently only found. A noun in apposition.

Sampling localities of Laimosemion laranja new species.
 Localities one and two (A, B), and the type locality (C). Brazil, Amapá, Laranjal do Jari, Rio Cajari, Amazonas Basin.
 Photos: W.M. Berbel-Filho.



Yuri Gomes Abrantes, Sergio Maia Queiroz Lima, Dalton Tavares Bressane Nielsen, Fabio Origuela de Lira, Márcio Joaquim da Silva, Waldir Miron Berbel-Filho. 2026. A New killifish of the Genus Laimosemion (Cyprinodontiformes, Rivulidae) from Rio Cajari in the Brazilian Amazon. Zoosystematics and Evolution. 102(4): 1079-1088. DOI: doi.org/10.3897/zse.102.187659 [20 Aug 2026]

Wednesday, August 12, 2026

[Herpetology • 2026] Scincella gigasA mountain giant: Description of The Largest known Species of the Genus Scincella Mittleman, 1950 (Squamata: Scincidae) from Yunnan Province, China


Scincella gigas Xu, Deng, Qi, Ma, Zhang, Cai, Nguyen, Poyarkov & Peng, 

in Xu, Deng, Qi, Ma, Zhang, Cai, Wang, Sun, Nguyen, Poyarkov et Peng, 2026.  
Giant Ground Skink | 巨滑蜥  ||  DOI: doi.org/10.3897/zse.102.204139 
 
Abstract
A remarkable new species of skink, Scincella gigas sp. nov., is described from Yunnan Province, China, based on integrative morphological and molecular evidence. The new species represents the largest known member of the genus Scincella, with the adult female holotype attaining a snout-vent length of 125 mm and a total length exceeding 316 mm despite possessing a partially regenerated tail. Scincella gigas sp. nov. can be distinguished from all congeners by a unique combination of morphological characters, including three prefrontal scales, relatively short limbs that fail to meet when adpressed, the third pair of chin shields separated by four small scales, 28 midbody scale rows, 80 paravertebral scale rows, and broad dorsolateral stripes with distinctly serrated margins. Phylogenetic analyses based on concatenated mitochondrial gene fragments (12S, 16S, CO1, and Cyt b) recovered the new taxon as a distinct lineage within Scincella, although its precise phylogenetic relationships remain unresolved. The new species exhibits substantial genetic divergence from all examined congeners (≥ 4.4% in 16S and ≥ 14.2% in CO1). Scincella gigas sp. nov. is currently known only from montane mixed forests and associated alpine meadows in Fengyi Town, Dali Bai Autonomous Prefecture, Yunnan Province, China, at an elevation of 2,790 m a.s.l. The discovery of such a conspicuous and exceptionally large species suggests that the diversity of montane Scincella in southwestern China remains insufficiently documented.

Key Words: Integrative taxonomy, molecular phylogeny, morphology, Scincella gigas sp. nov., S. potanini–S. monticola complex, southwestern China

Holotype of Scincella gigas sp. nov. in life (QHU R2026003, adult female).
Photographs by J.D. Deng.

Head scalation of Scincella gigas sp. nov. (holotype, QHU R2026003, adult female).
A. Dorsal view; B. Lateral view; C. Ventral view.
Dorsal (A), lateral (B), and ventral (C) views of the body; 
D. Ventral view of the left hand; E. Ventral view of the left foot of  the holotype in preservation. 
Photographs by Y.H. Xu. Scale bars: 20 mm (A–C); 5 mm (D, E).
Notes: CS: chin shield; F: frontal; FrN: frontonasal; FrP: frontoparietal; IL: infralabials; IP: interparietal; L: loreals; LST: lower secondary temporal; M: mental; NU: nuchals; P: parietal; PF: prefrontal; PM: postmental; PT: primary temporal; R: rostral; SC: superciliaries; SL: supralabials; SO: supraoculars; UST: upper secondary temporal; * indicates the gulars separating the chin shields.
Photographs and drawings by Y.H. Xu. Scale bar: 5 mm.

Scincella gigas Xu, Deng, Qi, Ma, Zhang, Cai, Nguyen, Poyarkov & Peng, sp. nov.

Diagnosis. Scincella gigas sp. nov. represents the largest known member of the genus Scincella, with the adult female holotype attaining an SVL of 125 mm and TL exceeding 316 mm. The new species can be distinguished from all other congeners by the following combination of characters: (1) exceptionally large body size, with the adult female holotype attaining an SVL of 125 mm; (2) three prefrontal scales; (3) six supraciliaries; (4) seven supralabials, separated from the eye by a row of small scales; (5) six infralabials; (6) tympanum deeply recessed and lacking lobules, with the tympanum diameter exceeding that of the palpebral disc (TD/PDD ratio 1.45); (7) three pairs of chin shields, with the third pair separated medially by four small scales; (8) 28 midbody scale rows; (9) total ventral + gular scale rows numbering 81; (10) 80 paravertebral scale rows; (11) relatively short limbs, with toes not in contact with fingers when the limbs are adpressed (FLL+HLL/AGD ratio 0.57); (12) 9–10 enlarged subdigital lamellae beneath Finger IV and 13 beneath Toe IV; and (13) in life, dorsum brown, with relatively broad dorsolateral stripes bearing distinctly serrated margins.

Etymology. The specific epithet “gigas” is derived from the Latinized form of the Greek noun γῐ́γᾱς (gígas), meaning “giant.” The name refers to the exceptional size of the new species, which represents the largest known member of the genus Scincella
In reference to this remarkable characteristic, “Giant Ground Skink” is proposed as the English common name, “гигантский малый сцинк” (gigantskiy malyi stsink) as the Russian common name, and “巨滑蜥” (Pinyin: jù huá xī) as the Chinese common name for the new species.

Habitat and field observations of Scincella gigas sp. nov.
 A. Microhabitat at Fengyi, Dali, Dali BAP, Yunnan, China; B. General habitat of the type locality; C. Holotype (QHU R2026003) found trapped in an artificial water reservoir.
Photographs by J.D. Deng (A, B) and H.Q. Wang (C).


 Yuhao Xu, Jundong Deng, Shuo Qi, Shun Ma, Tierui Zhang, Bo Cai, Haoquan Wang, Fanyue Sun, Tan Van Nguyen, Nikolay A. Poyarkov and Lifang Peng. 2026. A mountain giant: Description of The Largest known Species of the Genus Scincella Mittleman, 1950 (Squamata, Scincidae) from Yunnan Province, China. Zoosystematics and Evolution. 102(4): 1047-1063. DOI: doi.org/10.3897/zse.102.204139 [2026-07-29]

Wednesday, August 5, 2026

[Herpetology • 2026] Gracixalus damingshanensis • A New Species of Gracixalus (Anura: Rhacophoridae) from Damingshan National Nature Reserve, Guangxi, China

 

 Gracixalus damingshanensis 
Chen & Li, 2026  

大明山纤树蛙  ||  DOI: doi.org/10.3897/zse.102.186426 
 Photographs by Wei-Cai Chen.

Abstract
A new species of Gracixalus is described from central Guangxi, China. Gracixalus damingshanensis sp. nov. resembles G. jinxiuensis, G. huaping, and G. liusanjieae, but differs from all known congeners by a combination of morphological, molecular, and acoustic characters. Diagnostic characters include SVL 27.3–32.3 mm in males (n = 4) and 32.4–40.1 mm in females (n = 3); rough dorsal skin with scattered tubercles; grayish ventral surfaces with light brown spotting; fingers without webbing; white tubercles along the margins of the upper and lower jaws and on the limbs; absence of vomerine teeth; tibiotarsal articulation reaching the middle of the eye; granular skin on the throat, chest, and belly; heels not meeting when the thighs are held at right angles to the body; a distinct nuptial pad on Finger I; a single internal subgular vocal sac with paired oval openings bordered by gray rims; a golden-brown iris; and advertisement calls containing 2–5 notes. Phylogenetic analyses of mitochondrial 16S rRNA sequences recovered the new species as a distinct lineage sister to the clade comprising G. jinxiuensis and G. huaping. The species is currently known only from evergreen and bamboo forests above 900 m a.s.l. in Damingshan National Nature Reserve.

Key Words: Bioacoustics, morphology, phylogeny, shrub frogs, taxonomy
 
Holotype (NNU202103010) of Gracixalus damingshanensis sp. nov.
 A. Dorsal view; B. Dorsolateral view; C. Ventral view; D. Ventral view of right hand; E. Nuptial pad on Finger I; F. Ventral view of left foot. Photographs by Wei-Cai Chen.

Color variation among paratypes of Gracixalus damingshanensis sp. nov. 
 A1, A2. Dorsal and ventral views of male NNU202103008;
B1, B2. Dorsal and ventral views of male NNU202103009;
C1, C2. Dorsal and ventral views of male NNU202103011;
D1, D2. Dorsal and ventral views of female NNU202103007.
 Photographs by Wei-Cai Chen.

Gracixalus damingshanensis sp. nov. 

Diagnosis. Gracixalus damingshanensis sp. nov. can be distinguished from its congeners by the following combination of characters: (1) SVL 27.3–32.3 mm in males (n = 4) and 32.4–40.1 mm in females (n = 3); (2) dorsal surface rough, with scattered tubercles; (3) throat, chest, and ventral surface grayish with light brown spotting; (4) fingers without webbing; (5) white tubercles along the margins of the upper and lower jaws and on limb surfaces; (6) vomerine teeth absent; (7) tibiotarsal articulation reaching the middle of the eye; (8) skin of throat, chest, and ...

Etymology. The specific epithet ‘damingshanensis’ refers to Damingshan National Nature Reserve in Nanning, Guangxi, China, where the species was discovered. We propose “Damingshan Tree Frog” as the English common name and “Dà Míng Shān Xiān Shù Wā“ (大明山纤树蛙) as the Chinese common name.


Wei-Cai Chen and Peng Li. 2026. A New Species of Gracixalus (Anura, Rhacophoridae) from Damingshan National Nature Reserve, Guangxi, China. Zoosystematics and Evolution. 102(4): 989-1003. DOI: doi.org/10.3897/zse.102.186426 

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]

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]


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]

Sunday, June 28, 2026

[Ichthyology • 2026] Brachygobius jennie • A New bumblebee goby (Gobiiformes: Oxudercidae) from Hengqin Island, Guangdong Province, China


Brachygobius jennie  
 Tian, Wu, Lan, Lavoué & Huang, 2026. 


Abstract
A new species of bumblebee goby, Brachygobius jennie sp. nov. (Teleostei, Oxudercidae), is described based on 31 specimens collected from the Hengqin Island, Guangdong Province, China. This new species is distinguished from all other valid species of Brachygobius by its extreme small size (SL < 9 mm) and distinctive number, position, size and shape of its black bars. It possesses four complete (forming ring) or nearly complete post-cephalic, relatively narrow bars, two of which are located posterior to the base of the anal fin. The first bar behind the head extends pigmentation to the first dorsal fin but does not reach the midventral line. The second bar, chevron-shaped and located below the second dorsal fin, extends pigmentation onto that fin and ventrally reaches the midventral line and the anal fin. Cytochrome oxidase subunit I-based analyses, including six out of the eight valid species of Brachygobius, show Brachygobius jennie sp. nov. to be more than 10% genetically divergent from other species, supporting the morphological diagnosis and confirming its distinct taxonomic status. With a maximum size of less than 9 mm SL (based on observations of 106 specimens), the new species is not only the smallest species of Brachygobius, but also one of the smallest known gobioid fishes.

Key Words: Fish, Gobioidei, integrative taxonomy, new species, miniature vertebrates

Diagnostic marking pattern comparison among all species of Brachygobius having four post-cephalic black bands, the last two located posterior to the base of the anal fin. Left column: schematic drawings highlighting diagnostic marking patterns based on information from type material and original descriptions; from top to bottom: 
Brachygobius jennie sp. nov. based on its description (this study); B. aggregatus, based on a drawing of a type specimen (plate 4 in Herre 1940); B. kabiliensis, based on the drawing of the holotype (fig. 19 in Inger 1958); and B. nunus, based on the drawing of a specimen of Gobius alcockii Annandale, 1906 (fig. 1 in Annandale 1906), a junior synonym of B. nunus, and the description of B. nunus by Hamilton (1822). Red arrowheads indicate diagnostic differences. Right column: photographs of live non-type specimens illustrating the corresponding left schematic patterns (all photos from the authors).

Live photographs of four paratypes of Brachygobius jennie sp. nov., illustrating intra-specific marking pattern.
Photographed by Mr. Haocong Yang and Mr. Danyang Zhou.

Brachygobius jennie sp. nov. 


 Jiangyan Tian, Jianyong Wu, Chunliu Lan, Sébastien Lavoué and Jianrong Huang. 2026. Brachygobius jennie, A New bumblebee goby (Teleostei, Oxudercidae) from Hengqin Island, Guangdong Province, China. Zoosystematics and Evolution. 102(3): 853-863.  DOI: doi.org/10.3897/zse.102.184142 [17 Jun 2026]

Friday, May 15, 2026

[Ichthyology • 2026] Oreonectes weii • A New endemic Species (Cypriniformes: Nemacheilidae) within the Yangtze River Basin and its Monsoon-driven Evolutionary Diversification


Oreonectes weii
Luo, Ling, Cao, Zhou & Huang, 2026
 
魏氏岭鳅  ||  DOI: doi.org/10.3897/zse.102.186155 

Abstract
A new species Oreonectes weii sp. nov., is described that was collected from Shanggao County, Jiangxi Province, China, located at the upper reaches of the Yangtze River Delta. This naming honors the globally distinguished conservation biologist Fu-Wen Wei for his exceptional and pioneering contributions to biodiversity conservation and research. Morphologically, the new species can be distinguished from its congeners by a combination of meristic and morphological characters, including fin-ray counts, body coloration, eye normal, number of lateral-line pores, and gill-raker counts. Genetically, it forms a distinct lineage in the mitochondrial Cyt b-based phylogeny and exhibits a genetic distance of 6.3% from its sister species, O. polystigmus. We further estimated divergence time within the genus Oreonectes, which indicates an origin in the Late Oligocene (~27.06 Ma) and a most recent common ancestor at ~13.91 Ma. Our biogeographic analyses suggest that the Guijiang-Hejiang River Basin likely served as a source area for the genus’ dispersal into adjacent basins, and that the new species probably originated from a dispersal event of its ancestral population from the Pearl River Basin to the Yangtze River Basin during the Late Miocene (~6.78 Ma). Lineage-divergence dynamics indicate that cladogenesis began around 28 Ma, accelerated markedly at ~18 Ma, peaked at ~6 Ma, and subsequently showed a gradual decline. The current diversity pattern of Oreonectes may have been shaped primarily by dispersal mediated by enhanced precipitation under the East Asian monsoon climate, with subsequent erosion-induced geographical isolation likely promoting speciation and diversification within the genus.

Key Words: Biogeography, cryptic species, morphology, taxonomy, phylogeny, Yangtze River

Ecological photographs and habitats.
A, B. Oreonectes weii sp. nov.; C. O. guidongensis; D. O. polystigmus;
E. Outside the cave; F. Inside the cave.

Oreonectes weii sp. nov.

Diagnosis. Oreonectes weii sp. nov. can be distinguished from all other congeners by the following combination of characters: (1) coloration pattern present and irregular black spots scattered on the lateral body surface and caudal fin; (2) eyes normal; (3) well-developed posterior chamber of air-bladder; (4) cephalic lateral-line system with 4 + 10 infraorbital canal pores and six preoperculo-mandibular canal pores; (5) 9–10 branched pectoral-fin rays, length 16.0–24.3% SL; (6) tip of pelvic fin not reaching the anus; (7) caudal fin truncated, with 14 branched caudal-fin rays; (8) 10 inner gill rakers on the first gill arch; (9) tip of maxillary barbel not reaching the posterior margin of the operculum.

Etymology. The specific epithet “weii” is a genitive noun derived from the surname of Academician Fu-Wen Wei (魏辅文), an eminent conservation biologist. The name is given in honor of his outstanding contributions to the study and conservation of biodiversity in China. We suggest the English common name for this species is the “Wei’s Mountain Loach”, and its Chinese name is “Wèi Shì Lǐng Qiū” (魏氏岭鳅).


 Tao Luo, Wen-Qing Ling, Hai-Lin Cao, Jiang Zhou and Guang-Ping Huang. 2026. A New endemic Species Oreonectes weii sp. nov. (Cypriniformes, Nemacheilidae) within the Yangtze River Basin and its Monsoon-driven Evolutionary Diversification. Zoosystematics and Evolution. 102(3): 751-765. DOI: doi.org/10.3897/zse.102.186155 [14 May 2026]

Wednesday, May 6, 2026

[Herpetology • 2026] Calamaria incredibilisAn unexpected Discovery of Hidden Diversity: A New Species of the Genus Calamaria (Serpentes: Calamariidae) from Guangxi, China

 

Calamaria incredibilis 
Qi, Nguyen, J. Wang, Zeng, Shi, Xu, Song, Zhong Huang, Mo, Poyarkov & Y.-Y. Wang, 2026

Guangxi Reed Snake | 广西两头蛇  ||  DOI: doi.org/10.3897/zse.102.188045

Abstract
As part of our investigations into the systematics of the Calamaria pavimentata species complex, we describe a new species of the genus Calamaria from Chongzuo and Guilin Cities, Guangxi, China, based on a combination of morphological and molecular evidence. Morphologically, Calamaria incredibilis sp. nov. is distinguished from other congeners by the following combination of morphological characters: nine enlarged maxillary teeth; rostral higher than wide; prefrontal shorter than frontal and contacting the first two supralabials; mental not in contact with anterior chin shields; dorsal scales in 13–13–13 rows, smooth throughout; a single preocular and postocular; four supralabials, with the 2nd and 3rd ones contacting the eye; five infralabials; six scales surrounding the paraparietal; 170–182 ventrals in males; 21–23 paired subcaudals in males; a relatively short tail (8.2–8.4% of total length in males), thick and nearly cylindrical, gradually tapering to an obtuse point; dorsal coloration brown, seven longitudinal series of interrupted dark brown stripes are visible along the body, extending from behind the pale-colored collar to the tip of the tail; the margins of the dorsal scales are heavily suffused with black pigment, forming an almost reticulate pattern; the ventral surface yellowish white, with dark brown blotches along the outermost lateral margins; the absence of light spots on the dorsal tail. Phylogenetic analyses based on mitochondrial cytochrome b sequences recover Calamaria incredibilis sp. nov. as a well-supported independent lineage, forming a sister relationship with a subclade comprising C. andersoni Yang & Zheng, C. synergis Zhang, Xu, Nguyen, Poyarkov, Vogel, Wang & Huang, and C. yunnanensis Chernov. The new species is separated from its closest relatives by substantial mitochondrial genetic divergence (p-distance 12.67% based on cytochrome b gene). The discovery of Calamaria incredibilis sp. nov. further highlights the underestimated diversity within the C. pavimentata species complex and underscores the importance of integrative taxonomic approaches for resolving cryptic diversity in morphologically conservative, semi-fossorial snake lineages from southern China, with Guangxi emerging as an important hotspot of cryptic diversification.

Key Words: Calamaria incredibilis sp. nov., C. pavimentata, morphology, mtDNA, taxonomy

Calamaria incredibilis sp. nov., adult male (SYS r002596, holotype) in preservative.
A. Dorsal view of body; B. Ventral view of body; C. Dorsal view of head; D. Ventral view of head; E. Lateral view of head, right side; F. Dorsal view of tail (posterior body).
 Photographs by Shuo QI.

Calamaria incredibilis sp. nov.

Diagnosis. Calamaria incredibilis sp. nov. can be distinguished from all other congeners by the combination of the following morphological characters: nine enlarged maxillary teeth; rostral higher than wide; prefrontal shorter than frontal and contacting the first two supralabials; mental not in contact with anterior chin shields; dorsal scales in 13–13–13 rows, smooth throughout; a single preocular and postocular; four supralabials, with the ...

Calamaria incredibilis sp. nov., adult male (GEP r093, paratype) in life.
Photograph by Jian WANG.

Etymology. The specific epithet incredibilis is a Latin adjective meaning “unbelievable” or “extraordinary,” referring to the unexpectedly high level of cryptic diversity revealed by the discovery of this species, particularly in relation to closely allied taxa within the C. pavimentata species complex and their close geographic proximity. Based on the type locality, we propose the following common names: “Guangxi Reed Snake” (English), 广西两头蛇 (guǎng xī liǎng tóu shé, Chinese), “Rắn mai gầm quảng tây” (Vietnamese), and Гуанси́йская карликовая змея (Guansiyskaya karlikovaya zmeya, Russian).


 Shuo Qi, Tan Van Nguyen, Jian Wang, Zhao-Chi Zeng, Jing-Song Shi, Yu-Hao Xu, Han-Ming Song, Zhong Huang, Yun-Ming Mo, Nikolay A. Poyarkov and Ying-Yong Wang. 2026. An unexpected Discovery of Hidden Diversity: A New Species of the Genus Calamaria H. Boie in F. Boie, 1827 (Squamata, Calamariidae) from Guangxi, China. Zoosystematics and Evolution. 102(2): 701-718.  DOI: doi.org/10.3897/zse.102.188045 [27 Apr 2026]


Monday, May 4, 2026

[Herpetology • 2026] Gekko wuzhengjuni • A New Species of Karst-adapted Gecko (Squamata: Gekkonidae: Gekko) from Guangxi, China


Gekko wuzhengjuni  Yu & Chen, 

in Yu, H.-L. Chen, Y.-B. Li, Y.-H. Li et Z.-Ni. Chen, 2026. 

Abstract
The genus Gekko comprises a diverse group of nocturnal lizards that are widely distributed across the plains and plateaus of temperate and tropical Asia, as well as the western islands of the Pacific Ocean. In this study, mitochondrial DNA and morphological data were integrated to diagnose and describe a novel species, Gekko wuzhengjuni sp. nov., from Guilin, Guangxi Zhuang Autonomous Region, China. Phylogenetic analyses indicate that this species forms a monophyletic lineage that is sister to Gfengshanensis within the Japonigekko subgenus, as determined by mitochondrial 16S rRNA (16S) and NADH dehydrogenase subunit 2 gene (ND2) sequences. The uncorrected genetic distances for mitochondrial 16S rRNA sequence divergence range from 9.85% (G. liboensis) to 19.11% (G. subpalmatus), whereas ND2 divergence ranges from 14.62% (G. fengshanensis) to 32.84% (G. liui) relative to other congeners. Morphologically, Gekko wuzhengjuni sp. nov. can be distinguished from its congeners in the region by a specific combination of characteristics: (1) nares that contact the rostral scale, with the absence of an internasal scale; (2) the presence of two enlarged postmental scales; (3) enlarged tubercles extending from the area posterior to the eyes along the neck to the base of the tail, arranged in eight or nine rows at midbody; (4) a total of 140–143 midbody scale rows; (5) precloacal pores continuous, numbering 10 in males and absent in females; and (6) a single postcloacal tubercle present on each side.

Key Words: Gekko wuzhengjuni sp. nov., integrative taxonomy, molecular phylogeny, morphology

Type specimens of Gekko wuzhengjuni sp. nov. in life.
A, B. Holotype GXNU 2025090902, adult male;
C, D. Paratype GXNU 2025090901, adult female. Photos by Shi-Jun He.

Gekko wuzhengjuni Yu & Chen, sp. nov.


Jia-Yi Yu, Hui-Ling Chen, You-Bang Li, Yu-Hui Li and Ze-Ning Chen. 2026. A New Species of Karst-adapted Gecko (Squamata, Gekkonidae, Gekko) from Guangxi, China. Zoosystematics and Evolution. 102(2): 719-729. DOI: doi.org/10.3897/zse.102.185568 [30 Apr 2026]

Tuesday, April 21, 2026

[Herpetology • 2026] Tylototriton guilinensis • A New Species of Genus Tylototriton (Caudata: Salamandridae) from northeastern Guangxi, China


 Tylototriton guilinensis 
Xiao, Chen, Wu, Pan, Chen, Yu & Huang, 2026

桂林疣螈 | Guilin Crocodile Newt  ||  DOI: doi.org/10.3897/zse.102.184792
 photos by Yuanqiang Pan

Abstract
Currently, the genus Tylototriton comprises 44 species, of which 24 occur in China, and only one is formally recorded in Guangxi, China. In this study, based on evidence from molecular and morphological comparisons, we describe a new species of the genus TylototritonTylototriton guilinensis sp. nov., from Quanzhou County, Guilin City, Guangxi Zhuang Autonomous Region, China. Phylogenetic analysis based on mitochondrial 16S rRNA and ND2 genes strongly supported that this new species belongs to the T. asperrimus species group and is sister to the clade of T. dabienicus and T. gaowangjienensis. This new taxon can be distinguished from all other known congeners by the following morphological characteristics: (1) medium body size (117.86 ± 9.46 mm); (2) rib nodules flattened, indistinct, not separated, and almost in continuous longitudinal rows, forming a dorsolateral fold; (3) orange coloration of the rib nodules absent; (4) orange markings on the parotoid absent; (5) head wider than long (HDL/HDW = 0.92–0.99); (6) finger tips extending beyond the snout when forelimbs are stretched forward; (7) tips of forelimbs and hindlimbs reaching and overlapping when folded towards the body; (8) snout truncate, nearly square-shaped in dorsal view; (9) gular fold present; (10) adult males possessing cloacal papillae within the fissure; (11) peripheral area of cloaca orange; (12) the orange coloration at the ventral edge of the tail contacting the orange coloration around the cloaca. In addition, we find that T. asperrimus from Baise, Guangxi, actually belongs to T. sini.

Key Words: morphology, phylogeny, taxonomy, Tylototriton asperrimusTylototriton guilinensis sp. nov.
 
The holotype of Tylototriton guilinensis sp. nov. (GXNU YU001042) in life.
Dorsolateral (A), dorsal (B), and ventral (C) views.
  (Photo by Yuanqiang Pan).
 
Tylototriton guilinensis sp. nov.

Diagnosis. Tylototriton guilinensis sp. nov. can be distinguished from all other congeners by the following combination of morphological characteristics: (1) medium body size (117.9 ± 9.5 mm); (2) rib nodules flatten, indistinct, not separated, and almost in continuous longitudinal rows forming a dorsolateral fold; (3) orange coloration of the rib nodules absent; (4) orange markings on the parotoid absent; (5) head wider (HDW) than long (HDL) (HDL/HDW = 0.92‒0.99); (6) finger tips extending beyond the snout when forelimbs stretched forward; (7) tips of forelimbs and hindlimbs reaching and overlapping when folded towards the body; (8) snout truncate, nearly square shaped in dorsal view; (9) gular fold present; (10) adult males possessing cloacal papillae within the fissure; (11) peripheral area of cloaca orange; and (12) the orange coloration at the ventral edge of tail contacted with the orange coloration around the cloaca.

Etymology. The new species is named after its type locality, Guilin City in the Guangxi Zhuang Autonomous Region. We propose the Chinese name as “桂林疣螈” (Guì Lín Yóu Yuán) and the English common name as “Guilin Crocodile Newt.”


 Wei Xiao, Xinbin Chen, Xiangjian Wu, Yuanqiang Pan, Ju Chen, Guohua Yu and Huayuan Huang. 2026. A New Species of Genus Tylototriton (Caudata, Salamandridae) from northeastern Guangxi, China. Zoosystematics and Evolution. 102(2): 671-686. DOI: doi.org/10.3897/zse.102.184792