Showing posts with label 'Open Access'. Show all posts
Showing posts with label 'Open Access'. Show all posts

Saturday, August 1, 2026

[Herpetology • 2026] Brachytarsophrys jinxiuensis • A New Species of the genus Brachytarsophrys Tian & Hu, 1983 (Anura: Megophryidae) from Guangxi, China

 

Brachytarsophrys jinxiuensis 
Liu, Hou & Rao, 2026


Abstract
A new species of the genus Brachytarsophrys is described from Guangxi Zhuang Autonomous Region, China. The new species can be distinguished from its congeners by a combination of morphological characters: body size relatively small, dorsal skin smooth with a few large tubercles on dorsum and crotch, snout relatively long, eye relatively small, foot relatively short, pectoral glands orange, upper iris blood red and lower iris reddish brown, nuptial pad present on first finger in adult male. Phylogenetically, the new species differs from other species of the genus by a genetic divergence of 4.2–15.7% and 3.3–15.2% in COI and cytb genes, respectively. This study brings the total number of the species of Brachytarsophrys to 12, with ten occur in China and three in Guangxi.

Keywords: Brachytarsophrys, Jinxiu County, mitochondrial, morphology, new species, phylogeny, Short-Legged Toad, taxonomy

Holotype (KIZ2019035) of  Brachytarsophrys jinxiuensis sp. nov. in life.
(A) Dorsal view; (B) left view; (C) ventral view; (D) closeup view of the crotch region

Close-up views of the hand and foot of the holotype (KIZ2019035) of Brachytarsophrys jinxiuensis sp. nov. in preservative.
 (A) volar view of the left hand; (B) plantar view of the left foot

Brachytarsophrys jinxiuensis sp. nov. 


Shuo Liu, Mian Hou and Dingqi Rao. 2026. A New Species of the genus Brachytarsophrys Tian & Hu, 1983 (Anura: Megophryidae) from Guangxi, China. Amurian Zoological Journal. 18(2); 586–598. DOI: 10.33910/2686-9519-2026-18-2-586-598 [2026-07-08]

[Paleontology • 2026] Austronaga minuta • Highly aquatic marine stem Archosaur with soft tissue preservation


Austronaga minuta Wang, Lei & Li, 2023
 
in Wang, Fraser, Spiekman, Z. Li, et C. Li, 2026. 
Artwork by Gabriel Ugueto
 
Abstract
Archosauromorpha is a dominant reptile clade that primarily occupied terrestrial ecosystems with limited secondarily aquatic invasions that are poorly known. Here we report on a well-preserved Triassic reptile representing the earliest stem-archosaur to evolve unequivocal aquatic specializations. This taxon exhibits a suite of aquatic adaptations previously unknown in stem-archosaurs, such as hyperphalangy, enhanced paddle-like forelimbs, and a loss of articulation between the sacrum and pelvis, indicating an advanced aquatic lifestyle. The fossil exhibits the oldest known stomach, liver, and intestinal preservations in reptiles. Our findings provide unexpected insights into the early aquatic diversification of Archosauromorpha during the Triassic marine ecosystem recovery and highlight a conservative gastrointestinal system in an early Mesozoic vertebrate. In the absence of clear terrestrial members of the other major Mesozoic marine reptile lineages (e.g., ichthyosaurs and sauropterygians), this discovery provides an unambiguous example of such a lineage including both decidedly terrestrial and extensively marine forms, providing tantalizing evidence for the land-to-sea transition in Triassic reptiles.

Systematic paleontology
Diapsida, Osborn, 1903.
Archosauromorpha, von Huene, 1946.

Tanysauria, Spiekman et al., 2024.
Trachelosauridae, Abel 1919 (sensu Spiekman et al., 2024).

Skeleton of the holotype of Austronaga minuta (IVPP V18579). Abbreviations are in the Supplementary Materials. Scale bars, 2 cm (A) and 1 cm (B to D).

Austronaga minuta, Wang et al., 2023.

Type specimen: Institute of Vertebrate Paleontology and Paleoanthropology (IVPP) V18579, a complete articulated skeleton preserved on two slabs (Fig. 1).

Locality and horizon: Waina Village, Luoping County, Yunnan Province, China; Member II of Guanling Formation, middle Anisian (Pelsonian), Middle Triassic.

Emended diagnosis: A tanysaur with the following features: quadrate anteroposteriorly broad and plate-like in lateral view with concave posterior margin; 18 cervical, 24 dorsal vertebrae; tall axe-shaped neural spine on axis; cervical neural spines prominent, with convex dorsal margin and without anterodorsal or posterodorsal projections; chevrons of mid-caudal region hatchet-shaped, with prominent distal expansion and a notch at the midpoint of its ventral margin; forelimb distinctly longer than hindlimb with humerus to femur length ratio over two; hyperphalangy present in both manus and pes.


Reconstruction of the long-necked marine reptile Austronaga minuta.
Artwork by Gabriel Ugueto


Wei Wang, Nicholas C. Fraser, Stephan N. F. Spiekman, Zhiheng Li, Olivier Rieppel, Hong Lei, Torsten M. Scheyer and Chun Li. 2026. Highly aquatic marine stem Archosaur with soft tissue preservation. Science Advances. 12(31); DOI: doi.org/10.1126/sciadv.aeb7528 [29 Jul 2026]


[Botany • 2026] Ophiorrhiza xinchengensis (Rubiaceae) • A New Species from Guangxi, China


Ophiorrhiza xinchengensis Y.Nong & G.Y.Wei, 

in Wei, J.-Y. Li, Chen, Y. Nong, Hu, Y.-J. Li, Ji, Xu et Y.-K. Nong. 2026. 
忻城螺序草  |  DOI: doi.org/10.3897/phytokeys.278.194094

Abstract
Ophiorrhiza xinchengensis (Rubiaceae), a new species from the middle part of Guangxi, China, is described and illustrated on the basis of morphological evidence. This new species resembles Ophiorrhiza longanensis in its densely pubescent stems, linear stipules, terminal or upper axillary inflorescences, but it can be distinguished by its elliptic or oblanceolate leaf blade, base attenuate (vs. oval, ovate to broadly ovate, base cuneate), its 2–3 mm long stipules (vs. 3.8–6.5 mm long), its 3–5 mm long bracteoles (vs. 6–10 mm long) its 10–12 mm long corolla tubes (vs. 2–3 mm long) and its filaments adnate at the middle of corolla tube, styles 12–15 mm long (vs. adnate to the base of corolla tube and styles ca. 3 mm long). The new species is currently known from a single population with approximately 60–100 mature individuals. Following IUCN Criteria, it is provisionally assessed as Critically Endangered. Photographs, an illustration and a distribution map are also provided.

Key words: Karst, new species, Ophiorrhiza, Spiradiclis, taxonomy

Ophiorrhiza xinchengensis Y.Nong & G.Y.Wei.
A. Habitat; B, C. Flowering plant; D. Stem, showing the linear stipules; E. Inflorescences; F. Fruiting plant; G. Dissected brevistylous flower; H. Dissected longistylous flower; I. Hypanthium, calyx, style and stigma; J. Ovary and calyx; K. Stigma; L. Bracts; M, N. Leaf (abaxially and adaxially); O. Capsule; P. Seeds.

Ophiorrhiza xinchengensis Y.Nong & G.Y.Wei, sp. nov.
 
Chinese name. “xīn chéng luó xù cǎo” (忻城螺序草).

Diagnosis. Ophiorrhiza xinchengensis is resembles Ophiorrhiza longanensis (R.J.Wang) Razafim. & Rydin in its densely pubescent stems, linear stipules, terminal or upper axillary inflorescences, but it can be distinguished by its elliptic or oblanceolate leaf blade, base attenuate (vs. oval, ovate to broadly ovate, base cuneate), its 2–3 mm long stipules (vs. 3.8–6.5 mm long), its 3–5 mm long bracteoles (vs. 6–10 mm long), its 10–12 mm long corolla tubes (vs. 2–3 mm long) and its filaments adnate at the middle of corolla tube, styles 12–15 mm long (vs. adnate to the base of corolla tube, styles ca. 3 mm long).

Etymology. The specific epithet “xinchengensis” refers to the type location of the new species.


 Gui-Yuan Wei, Jin-Yue Li, Rong Chen, You Nong, Qi-Min Hu, Ying-Jing Li, Xing-Yun Ji, Chuan-Gui Xu, Yun-Kai Nong. 2026. Ophiorrhiza xinchengensis (Rubiaceae), A New Species from Guangxi, China. PhytoKeys. 278: 1-14.  DOI: doi.org/10.3897/phytokeys.278.194094 [24-07-2026]

Friday, July 31, 2026

[Herpetology • 2026] Bronchocela carestiai & B. mallarii • A Comprehensive, Archipelago-Wide Taxonomic Reassessment of the Genus Bronchocela (Squamata: Agamidae) in the Philippines, with Descriptions of Two New Species

 

(A) Bronchocela marmorata from Luzon,
(B, C) B. philippina from Mindanao,
 (D) Bronchocela carestiai from Mindoro, and
(E) B. mallarii from Palawan. 
 
Supsup, Pitogo, Sanguila, Hallermann, Denzer, Wood & Brown, 2026
Herpetological Monographs. 40 (1),
Photographs by Rafe M. Brown, Christian E. Supsup, and Kier Mitchel E. Pitogo.

 Abstract  
One challenge for species delimitation involves closely related species, characterized by both intra- and interspecifically variable morphologies, for which genetic information is not yet available. One such example is exhibited by agamid lizards of the genus Bronchocela. This group of conspicuously vibrant green lizards is widely distributed in Southeast Asia, with 15 recognized species. However, the geographic distributions of several named taxa have remained unclear because of the imprecise application of names in taxonomic summaries and faunal checklists. For more than a century, many authors have noted that a few species, often considered “widespread,” persist throughout nearly the entire range of the genus. This is particularly true for populations identified as Bronchocela cristatella sensu lato and, to a lesser extent, B. marmorata in the Philippines. In this study, we reassess the systematics and taxonomy of Bronchocela populations in the Philippine archipelago. Using multiple lines of evidence from molecular and morphological data, we uncover four distinct lineages of Philippine Bronchocela, all of which we interpret as being distantly related to B. cristatella sensu lato from Malaysia and Indonesia. We argue that these lineages should now be interpreted as Philippine endemic species. Given the strong congruence in molecular and morphological analyses, we now consider populations from the Luzon faunal region (including Catanduanes, Marinduque, Lubang, and Polillo Islands), Romblon (Tablas, Romblon, and Sibuyan Islands), and the West Visayas (Negros, Cebu, and Panay Islands) as B. marmorata. The nomenclaturally available name, B. philippina, is now designated to the unique lineage from the Mindanao faunal region. Additionally, we recognize two new, distinctive species from the Mindoro (B. carestiai) and Palawan (B. mallarii) faunal regions. Overall, our findings demonstrate how conspicuous and widely distributed species in Southeast Asia remain poorly understood, overlooked, and taxonomically unresolved. Hence, the taxonomic resolution of Bronchocela populations in the island archipelagos of Southeast Asia will greatly benefit from the urgent priority of determining which landmass the name “B. cristatella” applies.

KEYWORDS: Bronchocela carestiai sp. nov, Bronchocela marmorata, Bronchocela mallarii sp. nov, Bronchocela philippina, Southeast Asia, taxonomy, Widespread species

In life photographs of Bronchocela marmorata from Luzon (A), B. philippina from Mindanao (B, C),
B. carestiai from Mindoro (D), and B. mallarii from Palawan (E).
Photographs were taken by Rafe M. Brown, Christian E. Supsup, and Kier Mitchel E. Pitogo.

Bronchocela carestiai sp. nov.

 Bronchocela mallarii sp. nov. 


Christian E. Supsup, Kier Mitchel E. Pitogo, Marites B. Sanguila, Jakob Hallermann, Wolfgang Denzer, Perry L. Wood Jr. and Rafe M. Brown. 2026. A Comprehensive, Archipelago-Wide Taxonomic Reassessment of the Genus Bronchocela (Squamata: Agamidae) in the Philippines, with Descriptions of Two New Species. Herpetological Monographs. 40 (1), 1-44, (20 July 2026) DOI: doi.org/10.1655/HERPMONOGRAPHS-D-24-00003
https://bioone.org/journals/herpetological-monographs/volume-40/issue-1/HERPMONOGRAPHS-D-24-00003/A-Comprehensive-Archipelago-Wide-Taxonomic-Reassessment-of-the-Genus-Bronchocela/10.1655/HERPMONOGRAPHS-D-24-00003.full

[Botany • 2026] Ophiorrhiza saxatilis (Rubiaceae) • A New Species from Guizhou, China


Ophiorrhiza saxatilis M.T.An & G.L.Li,

in Li, An, Wu, Yu, Qiu, Liu et Tan, 2026. 
 岩生蛇根草  ||  DOI: doi.org/10.3897/phytokeys.278.197480

Abstract
Ophiorrhiza saxatilis M.T.An & G.L.Li, sp. nov., a new species of the genus Ophiorrhiza (Rubiaceae) discovered in the karst regions of Guizhou, China, and provides its taxonomic basis from a morphological perspective. The new species is morphologically similar to Ophiorrhiza lignosa, but differs from the latter by having an inflorescence in that its young branches are uniformly pubescent (vs. bifariously pubescent in O. lignosa); the abaxial leaf surface is pubescent (vs. puberulent only along the midrib and secondary veins in O. lignosa); the bracteoles are 5–6 mm long (vs. 1.5–3 mm long in O. lignosa); the petioles are 2–5.8 mm long (vs. 6–20 mm long in O. lignosa); the stamens are inserted at the base of the corolla tube (vs. inserted near the middle of the corolla tube in O. lignosa); the flowers are distylous (vs. monomorphic with pin flowers in O. lignosa), and the styles of long-styled flowers are 6–8 mm long (vs. 10–11 mm long in O. lignosa). These stable and significant morphological differences, combined with a comprehensive and detailed morphological description of the new species and a comparison of diagnostic characters with similar species, firmly support the recognition of Ophiorrhiza saxatilis as a distinct new species.

Key words: Karst, Morphology, New Taxon, Ophiorrhiza, Rubiaceae

Ophiorrhiza saxatilis.
A, B. Habitat; C. Plant; D. Flowering branch; E. Dissected flowers: long-styled flower (above) and short-styled flower (below); F. Style of long-styled flower; G. Style of short-styled flower; H. Longitudinally dissected short-styled flower; I. Longitudinally dissected long-styled flower; J. Fruit; K. Infructescence; L. Adaxial leaf surface; M. Abaxial leaf surface; N. Branchlets.

Ophiorrhiza saxatilis M.T.An & G.L.Li, sp. nov.

Diagnosis. Ophiorrhiza saxatilis is morphologically similar to O. lignosa Merr., but can be distinguished by several key characteristics (Table 2): uniformly pubescent young branches (vs. bifariously pubescent); white corolla lobes with ridges (vs. purple, without ridges); stamens inserted at the base of the corolla tube (vs. inserted near the middle of the corolla tube); flowers distylous (vs. monomorphic, with pin flowers); long-styled flowers 6–8 mm long (vs. 10–11 mm long); purple midrib on the abaxial leaf surface (vs. green); abaxial leaf surface pubescent (vs. puberulent only on the midrib and secondary veins); bracteoles 5–6 mm long (vs. 1.5–3 mm long); and petioles 2–5.8 mm long (vs. 6–20 mm long).

Etymology. The specific epithet is derived from the habitat of the new species, which occurs in a typical karst limestone environment. It mainly grows in harsh habitats such as rock crevices and stony slopes.

Local name. Simplified Chinese: 岩生蛇根草;
Chinese Pinyin: yán shēng shé gēn cǎo.


 Guang-Lin Li, Ming-Tai An, Xu Wu, Jiang-Hong Yu, Jian Qiu, Shao-Fei Liu and Cheng-jiang Tan. 2026. Ophiorrhiza saxatilis (Rubiaceae), A New Species from Guizhou, China. PhytoKeys. 278: 27-37.  DOI: doi.org/10.3897/phytokeys.278.197480 [24-07-2026]

Thursday, July 30, 2026

[Botany • 2026] Petrocosmea anoleuca (Gesneriaceae) • A New Species from limestone cliffs in Yunnan, China

 

Petrocosmea anoleuca   M.Q.Han & C.Liu, 

in Liu, Cai, Zhong, Zhao, Wang et Han, 2026.
沧源石蝴蝶  ||  DOI: doi.org/10.1007/s12225-026-10406-z
 
Summary
Petrocosmea anoleuca M.Q.Han & C.Liu (Gesneriaceae), a new species from Yunnan, China, is described and colour images and a provisional IUCN conservation assessment are provided. The new species is similar to P. cavaleriei H.Lév., but differs in having subpeltate leaf blades, a white corolla tube base lacking spots, a darker purple throat, purple abaxial lip lobes and nearly straight, sparsely puberulent filaments.

Key Words: Flora of Yunnan, Karst habitats, taxonomy

Petrocosmea anoleuca, images and SEM images.
A – B habit, in natural habit; C – D flower, front view; E flower, side view; F flower bud; G corolla, longitudinally cut; H corolla, transversely cut; J peltate leaf blade, abaxial surface; K – L SEM; K rhizomatous stem; L ovary; M ovary, transversely cut; N pollen.
photos: a – b Cheng Liu and c – k Mengqi Han.

Petrocosmea anoleuca M.Q.Han & C.Liu sp. nov. 

Recognition. Similar to Petrocosmea cavaleriei, but differing in having subpeltate leaf blades (vs petiole attached at the base in P. cavaleriei), the base of the corolla tube white and lacking spots (vs with three antepetalous spots above the base), the throat inside abaxially darker purple (vs white), the abaxial lip lobes purple (vs pale purple, with two yellow spots at the sinuses between the lateral and median lobes) and filaments almost straight and very sparsely puberulent and with scattered capitate-glandular hairs (vs geniculate near the middle, forming an angle of about 160° and densely covered with capitate-glandular hairs).

Etymology. The term anoleuca derives from Greek roots, ano- (ἄνω, "above") and -leuca (λευκός, "white"), literally meaning "white above". The epithet of the new species refers to the white, upper section of the corolla when in bloom.
vernacular name. Chinese name: cāng yuán shí hú dié (沧源石蝴蝶).


Cheng Liu, Jie Cai, Liang-Liang Zhong, Jin-Chao Zhao, Qiang Wang and Meng-Qi Han. 2026. Petrocosmea anoleuca (Gesneriaceae), A New Species from limestone cliffs in Yunnan, China.  Kew Bulletin. DOI: doi.org/10.1007/s12225-026-10406-z  [21 July 2026]

[Botany • 2026] Cryptanthus pataxoanus & C. beuckeri • Two Ornamental Species of Cryptanthus (Bromeliaceae: Bromelioideae) on the brink of Extinction: A New Species and its congener from the 19th century

 

Cryptanthus pataxoanus  Forzza & Leme,

in Leme, Fernandez, Fontana, Almeida et Forzza, 2026. 

Abstract
The authors describe and illustrate a new species of CryptanthusC. pataxoanus, found within the Monte Pascoal National and Historical Park, and present new data on its closest morphological relative, C. beuckeri, both endemic to the Atlantic Forest of the state of Bahia, Brazil, and assessed as Critically Endangered (CR). The new taxon represents one of the most ornamental discoveries in recent years due to its marbled foliage, with contrasting greenish-yellow and dark green colors, which is similar to C. beuckeri. The main differences between C. pataxoanus and its closest relative include leaf blades not petiolate or the basal ones sometimes subpetiolate, the much broader portion of the blades distinctly longer, the narrower sepals covered by brown-centered trichomes, and petals without glandulose trichomes. The discovery of the new species results from cooperative work with the Pataxó indigenous community living in Barra Velha and Barra Velha do Monte Pascoal Indigenous Lands, located within the boundaries of the Monte Pascoal National and Historical Park. It symbolizes the inexhaustible richness of the Brazilian biodiversity in general and the Atlantic Forest of southern Bahia in particular, despite its current coexistence with high levels of threat.

Monocots, Atlantic Forest, Monte Pascoal National and Historical Park, morphology, taxonomy

Cryptanthus pataxoanus (Umburanas 141):
A, B. Details of the population at the type locality. C. Habit. Photos: S. Caram (A, B); E. Leme (C).

Cryptanthus pataxoanus (Umburanas 141):
A. Elongate stem. B. Details of the marginal spines. C. Inflorescence. D. Details of the inflorescence. E–O. Perfect flower. E. Floral bracts of the basal fascicles. F. Sepals. G. Petal and stamens. H. Stigma. I. Frontal view of the anther just before anthesis. J. Abaxial view of the anther just before the anthesis. K. Basal fascicle. L. Flower. M. Basal portion of the petal and stamens. N. Details of the apex of the sepals. O. Longitudinal cross section of the ovary. P–T. Staminate flower: P. Flower of the inner portion of the inflorescence. Q. Floral bract. R. Details of the apex of the sepal. S. Sepals. T. Longitudinal cross section of the ovary.
 Photos: E. Leme. Bars: A = 2 cm; B, C, K, L, P = 1 cm; D–G, M–O, Q–T = 5 mm; H–J = 1 mm.

 Cryptanthus pataxoanus Forzza & Leme, sp. nov.  

Diagnosis:—This new species can be distinguished from its morphologically closest relative, Cryptanthus beuckeri, by the leaf blades not petiolate or the basal ones sometimes subpetiolate, with subpetioles gradually merging into the much broader distal portion (vs. always distinctly petiolate, with petioles strongly contrasting with the much broader distal portion); the much broader portion of the blades longer (20–30 cm vs. 10–20 cm long); sepals with narrower lobes (vs. 2–2.5 mm vs. 3.5–4 mm wide) covered by distinctly brown-centered trichomes (vs. trichomes white); and petals without glandulose trichomes (vs. adaxially bearing glandulose trichomes).

Etymology:—The name of this new species honors the Pataxó indigenous people. They belong to the Macro-Jê linguistic family and have a long history of resistance, facing challenges such as reclaiming their traditional lands and promoting the value of their culture since the 16th century. The Pataxó predominantly inhabit the extreme south of Bahia, which includes the area of the Monte Pascoal National and Historical Park where the Barra Velha and Barra Velha do Monte Pascoal Indigenous Lands are located. They maintain strong traditions, such as the Patxohã language, rituals (like the Awê), and the use of body paintings that serve as cultural identifiers, in addition to promoting the conservation of the environment within their traditional natural territory.

A. Watercolor by the botanical artist Paulo Ormindo, depicting Cryptanthus pataxoanus.
B. Presentation of the C. pataxoanus and the original watercolor depicting the species during the ceremony commemorating the 64th anniversary of the creation of the Monte Pascoal National and Historical Park, as well as the reopening of the Visitor Center, by the Pataxó indigenous people who participated in the discovery.

A. Watercolor by the botanical artist Paulo Ormindo, depicting Cryptanthus pataxoanus. B. Presentation of the C. pataxoanus and the original watercolor depicting the species during the ceremony commemorating the 64th anniversary of the creation of the Monte Pascoal National and Historical Park, as well as the reopening of the Visitor Center, by the Pataxó indigenous people who participated in the discovery.
C–F. Illegal selective logging and habitat degradation associated with mule trampling used for clandestine timber extraction inside the park. Photos: R.C. Forzza (B); C. Rodrigues (C, D, E, F).


ELTON M. C. LEME, EDUARDO P. FERNANDEZ, ANDRÉ P. FONTANA, PEDRO S. DE ALMEIDA and RAFAELA C. FORZZA. 2026. Two Ornamental Species of Cryptanthus (Bromeliaceae, Bromelioideae) on the brink of Extinction: A New Species and its congener from the 19th century.  Phytotaxa. 763(3); 201-218. DOI: doi.org/10.11646/phytotaxa.763.3.1  [2026-06-24]


[Botany • 2026] Mazus dabieshanensis (Mazaceae) • A New Species from eastern China


Mazus dabieshanensis  R.Tong and T.Deng, 

in Tong, Shen, Luo et Deng, 2026.

Abstract
Mazus dabieshanensis, a newly described species endemic to the Dabieshan Mountains in eastern China, is illustrated and described. Molecular phylogenetic analyses based on nuclear and chloroplast DNA sequences consistently demonstrate that this new species forms a stable clade with other Mazus species characterized by a pubescent ovary. Morphologically, the new species is readily distinguished by its hard and numerous stolons, plants with white villous, leaves attenuate into a petiole-like base, corolla upper lip bilobed, lobes without odontolobate incisions. This unique combination of characteristics effectively differentiates it from all other known Mazus species. In conclusion, both morphological evidence and molecular phylogenetic analyses support that this species belongs to Mazus and represents a previously unreported new species clearly distinct from other members of the genus.

Keywords: Dabieshan Mountains, Mazus, morphology, new species, phylogeny
 
Morphology of Mazus dabieshanensis.
 (A) Habitat: forest edge, (B) plant in April, (C) plant in August, (D) leaves, (E) stolons, (F) flower in lateral view, (G) flowers in face view, (H) pubescent ovary, (I) seeds.

Mazus dabieshanensis R.Tong and T.Deng sp. nov.  

Diagnosis: Mazus dabieshanensis differs from M. saltuarius in its pubescent ovary (versus glabrous), more than four pairs of cauline leaves (versus 2–4 pairs), and serrate leaf margin (versus coarsely serrate). It differs from M. procumbens in its forest habitat (versus cliff habitat), serrate leaf margin (versus coarsely crenate), and leaf attenuate into a petiole (versus with distinct long petiole).

Etymology: The specific epithet ‘dabieshanensis' refers to the mountains in which it occurs, the Dabieshan Mountains, eastern China.


 Rui Tong, Zhuo-Min Shen, Peng-Rui Luo, Tao Deng. 2026. Mazus dabieshanensis sp. nov. (Mazaceae) from eastern China. Nordic Journal of Botany. DOI: doi.org/10.1002/njb.05176 [23 July 2026]

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

[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.