Showing posts with label 2024. Show all posts
Showing posts with label 2024. Show all posts

Thursday, August 6, 2026

[Botany • 2024] Maxillaria andina (Orchidaceae: Maxillariinae) • A New Species from the northern Andes


Maxillaria andina Pisso-Florez, J.S.Moreno, P.A.Harding & Baquero,  

in Pisso-Florez, Moreno, Harding et Baquero, 2024.  

Abstract
Maxillaria andina, a new orchid species from high-Andean ecosystems of southwestern Colombia and northern Ecuador, is described. The new species is distinguished by having long and narrowly linear white sepals and petals with revolute margins, lip with mucronate epichile, and callus without hairs or trichomes. Distinguishing characters are provided to differentiate it from morphologically similar species, along with ecological and taxonomical notes. Additionally, Maxillaria sibundoyensis is synonymized with Maxillaria floribunda.

Keywords: Colombia, Ecuador, high-Andean ecosystems, Neotropical flora, taxonomy

Maxillaria andina Pisso-Florez, J.S.Moreno, P.A.Harding & Baquero.
A. Habit. B. Flower. C. Dissected perianth, not flattened. D. Ovary, column and lip, lateral view. E. Adaxial view of lip. F. Column, oblique, ventral, and lateral views. LCDP by G.A. Pisso-Florez and J.S. Moreno based on the holotype.

Maxillaria andina Pisso-Florez, J.S.Moreno, P.A.Harding & Baquero, sp. nov.

Diagnosis: Maxillaria andina is most similar to M. floribunda and Maxillaria caveroi D.E.Benn. & Christen-son. It is distinguished from M. floribunda by having the entirely white sepals and petals (vs. yellow, white and brownish petals), the longer and narrower sepals (6.08–6.55 × 0.26–0.57 vs. 5.3 × 1.0 cm), the smaller lip (0.78 × 1.14 vs. 1.3 × 1.8 cm), with the mid-lobe apex verrucose (vs. scabrous), and the base of the lip scabrous (vs. slightly verrucose or spiculate). The new species differs from M. caveroi by having narrower, linear sepals and petals (vs. lanceolate) and the absence of sparse trichomes on the lip.

Etymology: Named in reference to the Andean region of Colombia and Ecuador in South America, where the new species was found. The Andean region is a key area for conserving the diversity of Maxillariinae species.


 Gustavo Adolfo Pisso-Florez, Juan Sebastián Moreno, Patricia A. Harding and Luis E. Baquero. 2024. A New Species of Maxillaria (Maxillariinae) from the northern Andes and a new synonym of Maxillaria floribunda. Lankesteriana. 24(1); 79-91. DOI: doi.org/10.15517/lank.v24i1.56756 [2024-04-22]


#NuevaEspecie #PlantasColombia  
Etymology: its name refers to the Andean region between Colombia and Ecuador, where this species is distributed.

Tuesday, August 4, 2026

[Entomology • 2024] Melanabropsis formosensis & M. guizhouensis • Macropterous Species of Genus Melanabropsis Wang & Liu, 2020 (Orthoptera: Anostostomatidae: Anabropsini) from Taiwan and Guizhou


Melanabropsis formosensis   
 Chen, 2024 
    
 
Abstract
The genus Melanabropsis currently consists of four micropterous species and one macropterous species from continental Asia and west Pacific islands. Yin (2024) predicted several potential habitats suitable for Melanabropsis species including Taiwan and Guizhou. In this study two additional new species from Taiwan and Guizhou are described, confirming the distribution prediction proposed by Yin. The distribution pattern of seven Melanabropsis species is discussed.

Orthoptera, Taiwan, Melanabropsis, taxonomy, new species, tegmina, distribution


Melanabropsis formosensis & 
Melanabropsis guizhouensis


Po-Wei CHEN. 2024. Macropterous Species of Genus Melanabropsis Wang & Liu, 2020 (Orthoptera: Anostostomatidae: Anabropsini) from the localities predicted in a previous study.  Zootaxa. 5538(5); 457-464. DOI: doi.org/10.11646/zootaxa.5538.5.5 [2024-11-19]

Monday, August 3, 2026

[Botany • 2024] Meiogyne konkakinhensis (Annonaceae) • A New Species from the central highlands of Vietnam

 

Meiogyne konkakinhensis B.H.Quang & Tagane,

in Quang, Tagane, Nagahama, Fujiwara, Yoneoka, Binh et Oguri, 2024. 


Meiogyne Miquel (1865: 12; Annonaceae), with 33–39 species, are trees or shrubs characterised by distinctive corrugated grooved structure at the base of the adaxial surface of the inner petals, axillary or sometimes cauliflorous flowers and oblong multi-seeded indehiscent monocarps (van Heusden 1994, Johnson et al. 2019, Jaikhamseub et al. 2022). The species are collectively distributed in southern India, southern Central China, Southeast Asia, Australia, Melanesia and western Polynesia (van Heusden 1994, Thomas et al. 2012, POWO 2024). In Vietnam, six species of Meiogyne are known (Bân 2000, Jaikhamseub et al. 2022): M. monogyna (Merrill 1942: 163) Bân (1974: 1778), M. subsessilis (Ast 1938: 90) Sinclair (1956: 14), M. hainanensis (Merrill 1925: 131) Bân (1973: 1148), M. rubra Jaikhamseub, Damth. & Chaowasku in Jaikhamseub et al. (2022: 223), M. virgata (Blume 1825: 14) Miquel (1865: 12) and M. vietnamica Jaikhamseub, T.A.Le & Chaowasku in Jaikhamseub et al. (2022: 225), although Jaikhamseub et al. (2022) excluded M. virgata because they could not confirm any Vietnamese specimens. 

During our botanical expedition in Kon Ka Kinh National Park, Gia Lai Province, Central Highland, Vietnam, in 2022, we encountered an unknown species of Meiogyne in primary broad-leaved evergreen forests. After a careful examination of the literature of the genus in Vietnam and surrounding countries (Ast 1938, Bân 2000, van Heusden 1994, Johnson et al. 2019, Jaikhamseub et al. 2022) and herbarium specimens including digitised images from FOF, FU, HN, K, KAG, MAK, P and VNM, we concluded that it was an undescribed species, and we here describe it as new to science.

Flora, Indochina, endemic species, Magnoliales, taxonomy, plant diversity, Magnoliids


Meiogyne konkakinhensis.
A. Flowering branch, view from underneath. B. Flowering branch after anthesis. C. Flower, front view. D. Flower after anthesis, side view. E, F. Fruiting branches, with one monocarp.
Photos of Oguri et al. Q362 when it was alive, taken by B.H. Quang.

Meiogyne konkakinhensis.
 A. Flowers, front view, at early stage of anthesis (left), late stage of anthesis (right). B. Outer petals, adaxial (right) and abaxial (left) surfaces. C. Inner petals, adaxial (left) and abaxial (right). D. Flower, bottom view. E. Flower with petals removed showing sepals, stamens and stigmas. F. Sepals, abaxial (left) and adaxial (right) sides. G. Stamens, carpels. H. Stamens. I. Carpels.
Photos of Oguri et al. Q362 when it was alive, taken by B.H. Quang.

Meiogyne konkakinhensis B.H.Quang & Tagane, sp. nov. 

The new species is similar to Meiogyne rubra in its relatively small leaf size and reddish purple petals at maturity, but it is easily distinguished by yellowish brown hairy midrib on the adaxial surface of lamina (glabrous in M. rubra), smaller petals (outer petals 8.0–18.0 × 5.0–8.0 mm, inner petals 7.0–16.0 × 3.1–7.0 mm vs. 30.0–33.0 × 7.5–10.0 mm and 26.5–30.5 × 7.0–8.0 mm), and fewer and smaller stamens (76–80, 1.0–1.4 mm long vs. ca. 118, 1.5–2.2 mm long), fewer carpels (7–9 vs. 10–11) and more ovules per ovary (7–8 vs. 4).

Etymology:—Named for the Kon Ka Kinh National Park.  
Vernacular name:—Thiểu nhụy kon ka kinh (Vietnamese).


Bui Hong Quang, Shuichiro Tagane, Ai Nagahama, Tao Fujiwara, Katsuhiro Yoneoka, Tran Duc Binh and Emiko Oguri. 2024. Meiogyne konkakinhensis (Annonaceae), A New Species from the central highlands of Vietnam.  Phytotaxa. 652(1); 78-82. DOI: 10.11646/phytotaxa.652.1.7

Saturday, August 1, 2026

[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]


Thursday, July 9, 2026

[Paleontology • 2024] Cranial Osteology and Paleoneurology of Tarjadia ruthae: An erpetosuchid pseudosuchian from the Triassic Chañares Formation (late Ladinian-?early Carnian) of Argentina

 

Tarjadia ruthae Arcucci & Marsicano, 1998
 
in Desojo, von Baczko, Ezcurra, Fiorelli, Martinelli, ... et Lacerda, 2026. 
Reconstruction: Jorge Blanco
 
Abstract
Tarjadia ruthae is a quadrupedal terrestrial pseudosuchian from the Middle-early Upper Triassic of the Chañares Formation, La Rioja Province, Argentina. Originally, this species was identified as an indeterminate archosaur and later as a doswelliid archosauriform based on very fragmentary specimens characterized by the ornamentation of the skull roof and osteoderms. Additional specimens (including skulls and postcrania) recovered in the last decade show that Tarjadia is an erpetosuchid, an enigmatic pseudosuchian group composed of six species registered in Middle-Upper Triassic continental units of Tanzania, Germany, Scotland, North America, Brazil, and Argentina. Tarjadia ruthae from Argentina and Parringtonia gracilis from Tanzania are the best preserved and more abundant species. Although the monophyly of Erpetosuchidae is well supported, alternative high-level positions within Archosauria have been suggested, such as sister taxon to Crocodylomorpha, Aetosauria, or Ornithosuchidae. In order to improve the knowledge about the erpetosuchids, we performed a detailed description and paleoneurological reconstruction of the skull of Tarjadia ruthae, based on two articulated partial skulls (CRILAR-Pv 478 and CRILAR-Pv 495) and other fragmentary specimens. We analyzed the stratigraphic and geographic occurrence of historical and new specimens of Tarjadia and provided a new emended diagnosis (the same for the genus as for the species, due to monotypy) along with a comparative description of the cranial endocast. The skull of Tarjadia is robust, with a thick and strongly ornamented skull roof, triangular in dorsal view, with concave lateral margins at mid-length that form an abrupt widened posterior region. The external nares are the smallest openings of the skull. The antorbital fossa is deeply excavated and has a small heart-shaped fenestra with both lobes pointing anteriorly. The supratemporal fenestrae are as large and rounded as the orbits, and the infratemporal fenestrae are L-shaped with an extensive excavation along the jugal, quadratojugal and quadrate. The hemimandibles are low, slightly concave on the dentigerous region and strongly convex on the posterior region, conferring them a S-shaped profile in dorsal view. The external mandibular fenestra is small and elliptic, being twice longer than high. The maxillary dentition is restricted to the anterior to mid region of the rostrum. Since the braincase of both specimens is partially damaged, the dorsal surface of the brain could not be entirely reconstructed. As a result, the endocast is anteroposteriorly elongated and seemingly flat, and the cephalic flexure seems to be lower than expected for a suchian. The labyrinth is twice wider than high, the semicircular canals are remarkably straight, and the anterior canal is longer than the posterior one.

Keywords: anatomy, Archosauria, Erpetosuchidae, neuroanatomy, skull

Systematic paleontology
Archosauriformes Gauthier et al., 1988.
Archosauria Cope, 1869 sensu Gauthier & Padian, 1985.
Pseudosuchia von Zittel, 1887–1890 sensu Gauthier & Padian, 1985.

Erpetosuchidae Watson, 1917 sensu Nesbitt & Butler, 2013.

Tarjadia ruthae Arcucci & Marsicano, 1998

Life reconstruction of Tarjadia ruthae by Jorge Blanco.


J. B. Desojo, M. B. von Baczko, M. D. Ezcurra, L. E. Fiorelli, A. G. Martinelli, P. Bona, M. J. Trotteyn and M. Lacerda. 2024. Cranial Osteology and Paleoneurology of Tarjadia ruthae: An erpetosuchid pseudosuchian from the Triassic Chañares Formation (late Ladinian-?early Carnian) of Argentina. The Anatomical Record. DOI: doi.org/10.1002/ar.25382 [23 January 2024]

Monday, July 6, 2026

[Botany • 2024] Thrixspermum yei (Orchidaceae: Epidendroideae: Aeridinae) • A New Species from Xizang, China


Thrixspermum yei M. K. Li, Z. Xing & Y. Luo, 

in Li, Pang, Chen, Deng, Wang, Xing et Luo, 2024. 

Abstract
A new species Thrixspermum yei M. K. Li, Z. Xing & Y. Luo is described and illustrated from Xizang, China. It is similar to T. fantasticum and T. duplocallosum but differs from them in having a yellowish, ovate, indistinctly 3-lobed lip, disk with 4 yellow papillary front calli densely covered with yellow powder, and base with a cone-like appendage.

Keyword: Thrixspermum fantasticum, Thrixspermum duplocallosum, taxonomy, Xizang, China



Thrixspermum yei M. K. Li, Z. Xing & Y. Luo  
 A-B. plant and inflorescence; C. inflorescence; D-F. flower; G-H. split flower; IK. close-up of lip; L. lip and column. M-N. column and ovary; O-P. anther cap; Q. pollinia. (Photos: by Shen-shen Pang).

Thrixspermum yei M. K. Li, Z. Xing & Y. Luo
A. plant and inflorescence; B. inflorescence; C. flower; D. split flower; E1-E2. Column. F1-F2. close-up of lip; G. anther cap; H. pollinia.
 (Drawn by Jian-ping Deng).

Thrixspermum yei M.K.Li, Z.Xing & Y.Luo, sp. nov. 

 Type: CHINA. Xizang, Mêdog County, Dexing village, 95°14'42.89"E, 29°13'48.19"N, 1184 m, epiphytes on tree trunks in evergreen broad-leaved forest, 08 June 2022, M. K. Li 2022160 holotype: T000167542 (TAAHUC!); isotype: 022016 (XZE!). 

Diagnosis: Thrixspermum yei is morphologically similar to T. fantasticum and T. duplocallosum, but can be clearly distinguished from them by having a yellowish, ovate, indistinctly 3-lobed lip, disk with 4 yellow papillary front calli densely covered with yellow powder, and base with a cone-like appendage.
  
Etymology: The specific epithet "yei" is in honor of Mr. De-Ping YE (1977-2020), who dedicated over twenty years to the botanical surveys and conservation of wild orchids in China. 
Vernacular name: Ye Shi Bai Dian Lan, 叶氏白点兰



Meng-Kai Li, Shen-Shen Pang, Xue-Da Chen, Jian-Ping Deng, Wei Wang, Zhen Xing and Yan Luo. 2024. Thrixspermum yei (Aeridinae, Vandeae, Epidendroideae, Orchidaceae) - A New Species from Xizang, China. Taiwania. 69(2); 138-141. DOI: 10.6165/tai.2024.69.138

Saturday, May 30, 2026

[Funga • 2024] Hydnum cremeum, H. roseotangerinum, L. subalpina, ... (Agaricomycetes: Hydnaceae) • New Contributions on Species Diversity of Genus Hydnum and Lentaria s.l. in China

 

Hydnum cremeum  L.P. Tang, L.J. Su & T.J. Yu,  
H. flavosquamosum L.P. Tang & L.J. Su, 
H.roseoalbum L.P. Tang, L.J. Su & W.H. Zhang, 
H. roseotangerinum L.P. Tang & L.J. Su, 

in Su, Yu, Xue, Zhang, Xu, Xia, Li, Lei, Dong, Zhang et Tang, 2024. 
 
Abstract
Southwest China is extremely rich in fungal resources, and a large number of new taxa have been discovered in recent years. In the present study, we examined 26 specimens of the genera Hydnum and Lentaria sensu lato, most of which were obtained in Yunnan Province. Through ITS-nrLSU-tef1 phylogenetic analysis, combined with morphological studies and geographic analyses, five new species were described, viz. Hydnum cremeum, H. flavoquamosumH. roseoalbumH. roseotangerinum, and L. subalpina. Furthermore, we also supplied new information on some known species, including host plants and new distribution records. We re-examined the holotype sequences of two known taxa, H. flabellatum and H. pallidomarginatum, treating H. flabellatum as a synonym of H. pallidomarginatum. Additionally, a key to Lentaria s.l. in China was provided.

Keywords: taxonomy; species delimitation; coralloid fungi; edible mushroom; spinous fungi 

Macroscopic and microscopic features of Hydnum cremeum. (a–c) Basidiomata, (a,c) from MHKMU TJ Yu 197, Holotype; (b) from MHKMU WH Zhang 599; (d) Basidiospores; (e) Basidia and Basidioles; (f) Pileipellis. Bars (d) = 10 μm; (e) = 20 μm; (f) = 50 μm.
Macroscopic and microscopic features of Hydnum flavosquamosum from MHKMU LP Tang 3454 (Holotype). (a–c) Basidiomata; (d) Basidiospores; (e) Basidia and Basidioles; (f) Pileipellis. Bars (d) = 10 μm; (e) = 20 μm; (f) = 50 μm. 
 Macroscopic and microscopic features of Hydnum roseotangerinum from MHKMU LP Tang 3458 (Holotype). (a,b) Basidiomata; (c) Basidiospores; (d) Basidioles; (e) Basidia; (f) Pileipellis. Bars (c) = 10 μm; (d,e) = 20 μm; (f) = 50 μm.


Hydnum cremeum L.P. Tang, L.J. Su & T.J. Yu sp. nov.  
奶油齿菌

Etymology—Latin ‘cremeum’ = cream, refers to the color of basidiomata.
Diagnosis—Distinct from other species within Hydnum mainly by its small basidiomata with a warm cream to yellowish white pileus, globose to subglobose basidiospores, and occurrence in subalpine mixed forests.


Hydnum flavosquamosum L.P. Tang & L.J. Su sp. nov.  
黄鳞齿菌
Etymology—Latin ‘flavo’ = yellow, ‘squamosum’ = scaly, refers to the pileus covering with yellowish brown scales.
Diagnosis—Distinct from other species within Hydnum mainly by its light yellow to light brownish-orange pileus with slightly dark scales, context becoming pale brownish on exposure, adnexed, spines, subglobose to broadly ellipsoid (Q = 1.05–1.23) basidiospores, and erectly arranged hyphae in pileipellis.


Hydnum roseoalbum L.P. Tang, L.J. Su & W.H. Zhang sp. nov. 
粉白齿菌

Etymology—Latin ‘roseo’ = pink, ‘album’ = white, refers to the color of its spines. 
Diagnosis—Distinct from other species within Hydnum by its creamy to whitish pileus, pale pink spines, five-spored basidia, globose basidiospores, erectly arranged hyphae in pileipellis, and occurrence in subalpine broad-leaved forests.


Hydnum roseotangerinum L.P. Tang & L.J. Su sp. nov. 
粉橙齿菌

Etymology—Latin ‘roseo’ = pink, ‘tangerinum’ = orange, refers to the color of spines.
Diagnosis—Distinct from other species within Hydnum by its brownish orange pileus, pinkish orange spines, globose to subglobose, sometimes broadly ellipsoid basidiospores, and occurrence in mixed subalpine forests.


Lentaria subalpina L.P. Tang, L.J. Su & T.J. Yu sp. nov.  
亚高山木瑚菌

Etymology—The Latin ‘subalpina’ refers to this species growing in subalpine forests.
Diagnosis—Distinct from other Lentaria species mainly due to the grayish orange to brownish orange basidiomata, sometimes carbonized, black branch apices, elongated ellipsoid to cylindrical basidiospores (9.0–11.0 × 4.8–5.7 μm), and growing in dead branches of Abies or Picea in subalpine forests.


 Linjie Su, Taijie Yu, Rou Xue, Wenhao Zhang, Chang Xu, Xing Xia, Jia Li, Hanchi Lei, Yang Dong, Guoli Zhang and Liping Tang. 2024. New Contributions on Species Diversity of Genus Hydnum and Lentaria s.l. in China. J. Fungi. 10(12), 824; DOI: doi.org/10.3390/jof10120824 [27 November 2024]

Tuesday, May 5, 2026

[Crustacea • 2024] Geothelphusa amakusa & G. mutsu • The Identity of the Japanese Freshwater Crab, Geothelphusa dehaani (White, 1847) (Decapoda: Brachyura: Potamidae), with Descriptions of Two New Species from Japan


Geothelphusa mutsu
   Geothelphusa amakusa 
  
Naruse & Ng, 2024

Abstract 
This study designates a lectotype for and redescribes Thelphusa dehaani White, 1847, a Japanese primary freshwater crab species belonging to the potamid genus Geothelphusa Stimpson, 1858. Geothelphusa dehaani was described based on material exported to the Netherlands by von Siebold. Although the provenance of all his specimens is uncertain (they may be from several locations), our morphological comparison of the lectotype with fresh specimens led us to ascertain that it was almost certainly collected from Nagasaki, where von Siebold stayed. Two new Geothelphusa species are also described from Amakusa Islands and Aomori Prefecture.

Keywords: Taxonomy, primary freshwater crab, Potamoidea, von Siebold

Coloration of Geothelphusa amakusa n. sp. 
A, holotype, RUMF-ZC-8152, male, 30.3×22.5 mm; B, RUMF-ZC-8153, female, 28.8×22.7 mm;
C, D, 20161020; E, 20161020; F, ZRC 2017.0975, male, 18.9×14.8 mm.

Geothelphusa amakusa n. sp. 

Etymology The species is named after the type locality, Amakusa Island. The name is used as a noun in apposition.


Coloration of Geothelphusa mutsu n. sp.
 
A, male, ZRC 2018.0716, 19.3×15.1 mm; B, female, ZRC 2018.0716, 24.1× 18.4 mm; C, D, male, ZRC 2018.0716, 20.4 × 15.3 mm.

Geothelphusa mutsu n. sp.

Etymology The species is named after “Mutsunokuni”, a previous estate name of the type locality (Aomori Prefecture) and also a historical province name for a larger area of northern Honshu Island. The name is used as a noun in apposition.


Tohru Naruse and Peter K. L. Ng. 2024. The Identity of the Japanese Freshwater Crab, Geothelphusa dehaani (White, 1847) (Decapoda: Brachyura: Potamidae), with Descriptions of Two New Species from Japan. Crustacean Research. 53; 53-71. DOI: doi.org/10.18353/crustacea.53.0_53

Friday, April 17, 2026

[Paleontology • 2026] Isodapedon varzealis • A New hyperodapedontine rhynchosaur (Archosauromorpha: Rhynchosauria) from a Cynodont-dominated Site (Upper Triassic) of southern Brazil

 

Isodapedon varzealis  
Schiefelbein, Garcia, Doering & Müller, 2026

Artwork by Caio Fantini.
 
Abstract
We describe Isodapedon varzealis gen. et sp. nov., a new hyperodapedontine rhynchosaur from the Carnian deposits of the Candelária Sequence, southern Brazil. Phylogenetic analyses place this taxon outside known South American hyperodapedontines, including Macrocephalosaurus mariensis and ‘Hyperodapedon’ species, and support the restriction of the genus Hyperodapedon to its type species, thereby revealing greater diversity within the group than previously recognized. Isodapedon varzealis gen. et sp. nov. is characterized by symmetrical maxillary tooth bearing areas and distinctive dentary morphology, indicating divergent feeding adaptations relative to known rhynchosaurs. Stratigraphic occurrence in beds correlated with the Exaeretodon sub-zone of the Hyperodapedon Assemblage Zone, and its phylogenetic affinities with early diverging hyperodapedontines from Argentina and Scotland, imply a geographically widespread radiation of conservative morphotypes across southwestern Gondwana. This study highlights the complexity of Late Triassic rhynchosaur evolution and underscores the importance of continued palaeontological investigation in refining the taxonomy, biostratigraphy and palaeoecology of this key herbivorous clade.

Keywords: Rhynchosauria, Late Triassic, Candelária Sequence, Archosauromorpha
Subjects:palaeontology

Geological context of the Várzea do Agudo site and provenance of CAPPA/UFSM 0371. (A) Geologic map of the central region of Rio Grande do Sul (southern Brazil) showing the surface distribution of stratigraphic units of the Paraná Basin. (B) Field photograph of the Várzea do Agudo site. (C) Stratigraphic column of the Várzea do Agudo site depicting its fossiliferous content distribution. (D) Life reconstruction of CAPPA/UFSM 0371 by Caio Fantini. (E) Tridimensional model of the partial cranium of CAPPA/UFSM 0371 in right lateral view.
Abbreviations: cs, coarse-sandstone; Fm, formation; fs, fine-sandstone; g, gravel-sandstone; m, mudstone; ms, medium-sandstone. Silhouettes based on artwork by Caio Fantini and Felipe Elias.

Skull and lower jaws of Isodapedon varzealis gen. et sp. nov. (CAPPA/UFSM 0371).
(A) photographs, interpretative illustration and three-dimensional model from surface scan of the skull of CAPPA/UFSM 0371 in right lateral view. (B) Photographs, interpretative illustration and three-dimensional model from surface scan of the skull of CAPPA/UFSM 0371 in left lateral view.
Abbreviations: a, angular; aoc, anguli oris crest; d, dentary; jug, jugal; max, maxilla; mf, mental foramen; pmx l, left premaxilla; pmx r, right premaxilla; sa, surangular; sp, splenial. Black arrow points anteriorly.

Isodapedon varzealis gen. et sp. nov. craniomandibular elements.
 (A) Left skull in lateral view of Isodapedon varzealis gen. et sp. nov. (CAPPA/UFSM 0371) with emphasis on maxillary dentition area (occlusal view). (B) Left lower jaw in medial view with emphasis on lingual dentition area (oblique occlusal view).
Abbreviations: dg, diagonal gaps; lbt, labial teeth; lgt, lingual teeth; ls, longitudinal sulcus; sg, shallow groove; sms, short medial shelf. Black arrow points anteriorly.

Archosauromorpha 
Rhynchosauria  

Rhynchosauridae 
Hyperodapedontinae 

Isodapedon gen. nov.

Type and only species: Isodapedon varzealis sp. nov.

Etymology. The genus name is derived from the Ancient Greek ἴσος (ísos), meaning ‘equal’ or ‘the same’, as a reference to the equally wide tooth-bearing areas of the maxilla.


Isodapedon varzealis sp. nov.

Etymology. The species name refers to the locality of ‘Várzea do Agudo’ in which the specimen was collected.

Diagnosis. The holotype of Isodapedon varzealis is distinguished from all other known rhynchosaurids by the following unique combination of morphological traits (* asterisk denotes autapomorphies): maxilla divided into two tooth-bearing areas by a single longitudinal sulcus; equally wide maxillary lateral and medial tooth-bearing areas; same number (three) of longitudinal rows of teeth in both maxillary lateral and medial tooth-bearing areas; absence of lingual teeth in the medial surface of the maxilla; straight posterior margin of the parietal; sharp sagittal crest extending up to the posterior margin of the parietal; short and rounded ventral process of the squamosal; distinct posterior process in the squamosal; no contact between the lacrimal and palatine; ‘blunt’ and greatly reduced posteroventral process of the dentary; single dorsal blade in the dentary; medial shelf in the medial surface of the posterior portion of the dentary that does not reach half the length of the bone*; medial shelf separated from the dorsal blade of the dentary by a shallow groove; dorsal margin of the posterior portion of the dorsal blade extending markedly further dorsally than the posterior portion of the medial shelf at the level of the posteriormost lingual tooth; and single well-defined row of small, dorsally projected, closely packed lingual teeth in the dentary.

Artistic representation of a Late Triassic landscape of southern Brazil depicting individuals of Isodapedon varzealis gen. et sp. nov. in the foreground and a proterochampsid in the background.
Artwork by Caio Fantini.


 
Jeung Hee Schiefelbein; Maurício Silva Garcia; Mariana Doering and Rodrigo Temp Müller. 2026. A New hyperodapedontine rhynchosaur from a Cynodont-dominated Site (Upper Triassic) of southern Brazil. R Soc Open Sci. 13(4); 260176. DOI: doi.org/10.1098/rsos.260176 [15 Apr 2026]

Monday, March 2, 2026

[Fungi • 2024] Mooraboolomyces wintlei (Mucoromycota: Mucoraceae) • A New Genus and Species from Victoria, Australia

  

Mooraboolomyces wintlei  C.P. Hull, A.S. Urquhart & A. Idnurm, 


in HullUrquhart et Idnurm. 2024. 

Abstract
A new genus and species in the Mucoromycota, Mooraboolomyces wintlei, was isolated into culture from leaf litter from a national park in Victoria, Australia, and is described. The strain reproduced asexually to form sporangia and sporangiospores, with no production of zygospores, and sequencing of its genome and analysis supported a heterothallic mode of reproduction. Phylogenetic analyses using five DNA regions placed the strain within the Mucorales and Mucoraceae, clearly distinct from previously described genera. This represents the second genus in this phylum that has been identified from Australia and that is currently unique to this country.

biodiversity, heterothallism, Mucorales, sex locus, zygomycete, Fungi

 Physical properties of Mooraboolomyces wintlei.
A. Photograph of the location from where the species was obtained. B. Petri dish plates (9 cm diameter) from above (top) or below (bottom) after 13 days at 23 °C on PDA. C. Edge of growing culture with the fungus illuminated to show examples of sporangia and spores extending beyond the starting culture to initiate new growth to account for the images in B. D. Two sporangia. E. Scanning electron microscopy of the spores in a sporangium. F. Columella, featuring the dark structure at its base. G. Asexual spores. Scale bars: C = 1 cm, D = 40 µm, E = 6 µm, F, G = 10 µm.


CAITLIN P. Hull, ANDREW S. Urquhart and ALEXANDER Idnurm. 2024. Mooraboolomyces wintlei gen. & sp. nov. from Victoria, Australia.  Phytotaxa. 644(1); 35-41. DOI: doi.org/10.11646/phytotaxa.644.1.5 [2024-04-09]

[Botany • 2024] Salvia tainingensis (Lamiaceae) • A neglected New Species from Fujian Province, China

 

Salvia tainingensis  Y.L.Gao, D.Xie & Z.L.Ning, 

in Xie, M.-H. Zhang, Dong, Gao, D.-G. Zhang et Ning,  2024. 
 
Abstract
A species could not be known to the world of science if it not be discovered and described, considerable number of new species are neglected due to the plant itself and some other external restricted factors. On the basis of morphological and molecular evidences, a new species previously identified as Salvia scapiformis is now described and illustrated as Salvia tainingensis, named after Taining County in Fujian Province, where it was discovered. S. tainingensis does not closely resemble S. scapiformis, but is more similar to Salvia glabrifolia and Salvia daiguii, which were once identified as S. scapiformis, in terms of leaf shape, apex, base, corolla color, and connective length. However, it can be easily distinguished from the latter two by its thinly leathery leaves, serrate leaf margins, densely villous or glabrescent leaf abaxial, and the X-shaped arrangement of connective and filament.

molecular phylogeny, new taxon, Salvia, taxonomy, Eudicots, Flora of Fujian

  Image of living plants of Salvia tainingensis.
A, B, C Habitat D Individual E, F Inflorescence G-J Flower K Connective and filament L Calyx M Bract N Leaves

Salvia tainingensis Y.L.Gao, D.Xie & Z.L.Ning


DAN XIE, MENG-HUA ZHANG, SHU-PENG DONG, YUAN-LONG GAO, DAI-GUI ZHANG and ZU-LIN NING. 2024. Salvia tainingensis, A neglected New Species of Lamiaceae from Fujian Province, China. Phytotaxa. 669(2); 150-158. DOI: doi.org/10.11646/phytotaxa.669.2.7 [2024-10-22]
http://english.scib.cas.cn/news/202410/t20241029_693026.html


Thursday, February 26, 2026

[Botany • 2024] Peliosanthes yangchunensis (Asparagaceae) • A New Species from Guangdong, China

 

Peliosanthes yangchunensis  F.Z. Feng & W.B Liao,
 
in Feng, Wu, Zeng, Fan et Liao, 2024. 
 
Abstract
A new species named Peliosanthes yangchunensis are described, which is endemic to Yangchun, western Guangdong, South China. The new species is closely related to P. macrostegia, but differs from the latter in that the flowers smaller, star-like and with strongly revolute, spreading and narrowly oblong tepals, style conical, ovary hexagonal in cross section, and fruit ovoid-globose, flower period September to October. Comparisons with other closely related species are also provided.

Asparagaceae, Peliosanthes, South China, western Guangdong, Monocots

Peliosanthes yangchunensis.
A. Habit; B & D. Inflorescence; C. Inflorescence & fruits; E & F. Flower, front view; G & H. Flower, views from side; I, J, K & L. Flower, longitudinally sectioned; L. Corona with three anthers; N. Corona, viewed from below; O. Basal portion of flower, with corona cross-sectioned; P. Basal portion of flower except corona and pistil; Q. Basal portion of flower, corona and ovary cross-sectioned; R. Flower, views from side and with corona removed. The the left photo in D and F were taken by Mr. Meng De Chang, and others photos, correction and design by H. Z. Feng.

Peliosanthes yangchunensis F.Z. Feng & W.B Liao, sp. nov.


Hui-Zhe FENG, Rang-Min WU, Qiu-Gen ZENG, Qiang FAN and Wen-Bo LIAO. 2024. Peliosanthes yangchunensis (Asparagaceae), A New Species from Guangdong, China.  Phytotaxa. 650(3); 262-268. DOI: doi.org/10.11646/phytotaxa.650.3.6 [2024-05-29]