Showing posts with label 2008. Show all posts
Showing posts with label 2008. Show all posts

Monday, September 23, 2024

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

 

Acynodon adriaticus Delfino, Martin & Buffetaut, 2008

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

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

Keywords: Acynodon, Cretaceous, durophagy, Hylaeochampsidae, paleobiology

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

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

Acynodon Buscalioni et al., 1997.

Acynodon adriaticus Delfino et al., 2008.



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


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

Friday, October 30, 2020

[Arachnida • 2020] A Systematic Revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara


Draculoides anachoretus (Harvey, Berry, Edward & Humphreys, 2008)

in Abrams, Huey, Hillyer, ... et Harvey, 2020. 

Abstract
The schizomid fauna of mainland Australia currently comprises 60 species within seven named genera, of which five are endemic to the continent: Attenuizomus Harvey, 2000, Brignolizomus Harvey, 2000, Draculoides Harvey, 1992, Julattenius Harvey, 1992, Notozomus Harvey, 2000. Most Australian schizomids have been described from eastern and northern Australia, but there is also a significant subterranean fauna that has been found in hypogean habitats in the semi-arid Pilbara region of Western Australia. The vast majority of these species can be assigned to the genus Draculoides and this study is the first in a proposed series to revise this highly diverse genus. We treat the species found in the western Pilbara region, which includes 13 new species and 13 previously named species, using morphological characters and multi-locus sequence data. We also incorporate a molecular “mini-barcode” approach for COI, 12S and ITS2 to diagnose the new species. The new species are named: Draculoides akashae Abrams and Harvey, n. sp., D. belalugosii Abrams and Harvey, n. sp., D. carmillae Abrams and Harvey, n. sp., D. christopherleei Abrams and Harvey, n. sp., D. claudiae Abrams and Harvey, n. sp., D. immortalis Abrams and Harvey, n. sp., D. karenbassettae Abrams and Harvey, n. sp., D. mckechnieorum Abrams and Harvey, n. sp., D. minae Abrams and Harvey, n. sp., D. noctigrassator Abrams and Harvey, n. sp., D. nosferatu Abrams and Harvey, n. sp., D. piscivultus Abrams and Harvey, n. sp. and D. warramboo Abrams and Harvey, n. sp. We also provide the first descriptions of males of D. anachoretus (Harvey, Berry, Edward and Humphreys, 2008) and D. gnophicola (Harvey, Berry, Edward and Humphreys, 2008). All of the new species are subterranean-dwelling, short-range endemic species that occur in regions subject to mining activities, rendering them of high conservation significance.

Keywords: Arachnida, subterranean, taxonomy, systematics, molecular taxonomy, new species




Kym M. Abrams, Joel A. Huey, Mia J. Hillyer, Raphael K. Didham and Mark S. Harvey. 2020. A Systematic Revision of Draculoides (Schizomida: Hubbardiidae) of the Pilbara, Western Australia, Part I: the Western Pilbara. Zootaxa. 4864(1); 1-75. DOI: 10.11646/zootaxa.4864.1.1


Abstract: We used molecular and morphological techniques to study troglobitic schizomids inhabiting a variety of subterranean landforms in semiarid Western Australia. The study was designed to explore the taxonomic and phylogenetic status of newly discovered populations of subterranean schizomids. Molecular sequences of the mitochondrial DNA (mtDNA) cytochrome oxidase subunit 1 (COI) and small subunit rRNA (12S) were obtained from a total of 73 schizomid specimens. Populations sampled from boreholes within mesa landforms in the Robe Valley were highly genetically distinct from species of Draculoides Harvey, 1992 found elsewhere in the Pilbara (Cape Range and Barrow Island). Pronounced genetic structuring was also evident at a fine spatial scale within the Robe Valley, with populations from each of the mesas examined exhibiting unique and highly divergent mtDNA lineages. These molecular data were generally supported by small but significant morphological features, usually in the secondary male structures, but some species were represented only by female specimens that possessed more conservative morphologies. The molecular data defined two major in-group clades, which were supported by morphological differences. One clade was widespread and included the type species of Draculoides, D. vinei (Harvey), along with D. bramstokeri Harvey & Humphreys, D. brooksi Harvey, D. julianneae Harvey, D. mesozeirus, sp. nov. and D. neoanthropus, sp. nov. The second clade was restricted to the Robe Valley and deemed to represent a new genus, Paradraculoides, which included four new species P. anachoretus, sp. nov., P. bythius, sp. nov., P. gnophicola, sp. nov. and P. kryptus, sp. nov. (type species).

Mark S. Harvey A D , Oliver Berry B , Karen L. Edward A and Garth Humphreys C. 2008. Molecular and morphological systematics of hypogean schizomids (Schizomida : Hubbardiidae) in semiarid Australia. Invertebrate Systematics. 22(2); 167-194. DOI: 10.1071/IS07026

Saturday, January 13, 2018

[Paleontology • 2018] Sibirotitan astrosacralis • A New Sauropod dinosaur from the Lower Cretaceous Ilek Formation, Western Siberia, Russia


Sibirotitan astrosacralis
Averianov, Ivantsov, Skutschas, Faingertz & Leshchinskiy, 2018

Сибиротитан звездокрестцовый  DOI: 10.1016/j.geobios.2017.12.004

Abstract
Sibirotitan astrosacralis nov. gen., nov. sp., is described based on isolated but possibly associated cervical and dorsal vertebrae, sacrum, and previously published pedal elements from the Lower Cretaceous (Barremian?) Ilek Formation at Shestakovo 1 locality (Kemerovo Province, Western Siberia, Russia). Some isolated sauropod teeth from the Shestakovo 1 locality are referred to the same taxon. The phylogenetic parsimony analyses place Sibirotitan astrosacralis nov. gen., nov. sp., as a non-titanosaurian somphospondyl titanosauriform. The new taxon exhibits four titanosauriform and one somphospondylan synapomorphies, and one autapomorphy – a hyposphene ridge that extends between the neural canal and the postzygapophyses. It differs from all other Somphospondyli by having only five sacral vertebrae. The new taxon shares with Euhelopus and Epachtosaurus sacral ribs that converge towards the middle of the sacrum in dorsal view. Sibirotitan astrosacralis nov. gen., nov. sp., is only the second sauropod taxon from Russia and one of the oldest titanosauriform described so far in Asia.

Keywords: Sibirotitan astrosacralis nov. gen., nov. sp.; Titanosauriformes; Sauropoda; Phylogenetic parsimony analysis; Early Cretaceous; Siberia; Asia



Dinosauria Owen, 1842
Saurischia Seeley, 1887

Sauropoda Marsh, 1878
Titanosauriformes Salgado et al., 1997

Genus Sibirotitan nov. gen.

Derivation of the name: from Siberia and Greek Tιτάν (titan), a member of the second order of divine beings, descended from the primordial deities and preceding the Olympian deities in Greek mythology.

Type and only species: Sibirotitan astrosacralis nov. gen., nov. sp.

Derivation of the name: from Greek αστρον (star) and Latin os sacrum (“sacred bone”), an allusion to the unusual configuration of sacral ribs which radiate, in dorsal view, from the middle of the sacrum as the rays of a star.


 S.V. Ivantsov digging out the posterior cervical vertebra PM TGU 120/8-Sh1-3 from the Malyi Yar outcrop in 2008 (Kemerovo Province, Russia). Photo by S.V. Leshchinskiy.

  

  


 Alexander Averianov, Stepan Ivantsov, Pavel Skutschas, Alexey Faingertz and Sergey Leshchinskiy. 2018. A New Sauropod dinosaur from the Lower Cretaceous Ilek Formation, Western Siberia, Russia. Geobios. In Press.  DOI: 10.1016/j.geobios.2017.12.004



Averianov, A.O., Voronkevich, A.V., Maschenko, E.N., Leshchinskiy, S.V., and Fayngertz, A.V. 2002. A sauropod foot from the Early Cretaceous of Western Siberia, Russia. Acta Palaeontologica Polonica. 47 (1): 117–124.  DOI: 10.1.1.492.1575 


Познакомьтесь с новым сибирским динозавром https://metkere.com/2018/01/sibirotitan.html via @metkere
Новый род найденных в Кузбассе динозавров назвали сибиротитаном https://mediakuzbass.ru/news/obshhestvo/94522.html 


Thursday, July 6, 2017

[Herpetology • 2008] Scriptosaura catimbau • A New Genus and Species of Eyelid-less and Limb Reduced Gymnophthalmid Lizard (Squamata, Gymnophthalmidae) from northeastern Brazil


Scriptosaura catimbau 
Rodrigues & Maranhão dos Santos, 2008 

Abstract

 Scriptosaura catimbau, a new genus and species of elongate, fossorial, sand swimming eyelid-less gymnophthalmid lizard is described on the basis of specimens obtained at Fazenda Porto Seguro, municipality of Buíque, State of Pernambuco, in the Caatingas of northeastern Brazil. The type locality is entirely included within the area of the recently created Parque Nacional do Catimbau. The new lizard lacks external forelimbs, has rudimentary styliform hindlimbs and is further characterized by the absence of prefrontal, frontal, frontoparietal and supraocular scales, and by having one pair of chin shields. A member of the Gymnophthalmini radiation, the new genus is considered to be sister to Calyptommatus from which it differs externally by the absence of an ocular scale and absence of an enlarged temporal scale.


Key words: Scriptosaura catimbau, new genus, Gymnophthalmidae, taxonomy, Catimbau Nacional Park, Pernambuco State, Brazil, Caatingas


FIGURE 3. Living specimen of Scriptosaura catimbau from Parque Nacional do Catimbau. 

Scriptosaura, gen. nov.

Definition: An elongate and short tailed gymnophthalmid lacking an ear opening and eyelid. Forelimbs absent, hindlimbs rudimentary, styliform, ending in a short apical scale; nail absent. Frontonasal single; prefrontals, frontal, frontoparietals, supraoculars, and loreal absent. Parietals longer than wide, contacting frontal. Nostril in the center of nasal. Collar fold absent. One pair of chin shields. Dorsal scales cycloid anteriorly, posteriorly smooth, hexagonal, keeled and slightly mucronate, in regular transverse series; lateral scales enlarged, smooth. Ventral scales smooth, in four regular transverse series, the external ones wider. Males with four preanal pores, absent in females.

Etymology: From the Latin “scriptor” = writer, and “saura” = lizard in reference to the sand tracks left by this sand swimming species. The tracks are in the origin of its popular name (escrivão = public writer) which is also attributed to other similar sand swimming lizards like those of the related genera Calyptommatus and Nothobachia.


Scriptosaura catimbau, sp. nov.

Etymology: A noun in apposition, in reference to the type locality, Parque Nacional do Catimbau.

FIGURE 5. General aspect of the eroded border of the sandstone Silurian Devonian plateau at Parque Nacional do Catimbau, type locality of Scriptosaura catimbau (A); typical sandy habitat of Scriptosaura catimbau, note the abundance of the “caroá” (Neoglaziovia sp.), the thin bromeliad (B); track of Scriptosaura catimbau (C). 

Scriptosaura catimbau Rodrigues & Maranhão dos Santos, 2008

Resumo: Scriptosaura catimbau, um novo gênero e espécie arenícola de lagarto gimnoftalmídeo fossorial com corpo alongado e sem pálpebra é descrito com base em espécimes obtidos na Fazenda Porto Seguro, município de Buíque, estado de Pernambuco, nas Caatingas do nordeste brasileiro. A localidade tipo está inteiramente incluída no recentemente criado Parque Nacional do Catimbau. O novo lagarto, sem membros anteriores e com membros posteriores reduzidos a apêndices estiliformes caracteriza-se pela ausência de prefrontal, frontal, frontoparietal e supraocular e por apresentar um único par de escudos pós-mentais. O novo gênero pertence à tribo Gymnophthalmini e é considerado irmão de Calyptommatus do qual difere externamente pela ausência de escama ocular e de uma escama temporal muito aumentada, características do último gênero.

 Palavras chave: Scriptosaura catimbau, gênero novo, Gymnophthalmidae, taxonomia, Parque Nacional do Catimbau, Estado de Pernambuco, Brasil, Caatingas


Miguel Trefaut Rodrigues and Ednilza Maranhão Dos Santos. 2008. A New Genus and Species of Eyelid-less and Limb Reduced Gymnophthalmid Lizard from northeastern Brazil (Squamata, Gymnophthalmidae). Zootaxa. 1873; 50–60. 

Sunday, October 30, 2016

[Ichthyology • 2008] Symphurus thermophilus • A New Western Pacific Tonguefish (Pleuronectiformes: Cynoglossidae): The First Pleuronectiform discovered at active Hydrothermal Vents


Symphurus thermophilus  
  Munroe & Hashimoto, 2008

Abstract

Symphurus thermophilus n. sp., described from 16 specimens collected by submersibles, ROV, epibenthic sled and dredge, occurs on a variety of substrata at several active hydrothermal sites located at 239–733 m between 21°N and 35°S in the western Pacific Ocean. Symphurus thermophilus, the only pleuronectiform fish known to inhabit hydrothermal vent areas, is characterized by the combination of a 1–2–2–2–2 pattern of interdigitation of dorsal proximal pterygiophores and neural spines, 14 caudal-fin rays, 5 hypurals, 9 abdominal vertebrae, 47–51 total vertebrae, 88–94 dorsal-fin rays, 74–80 anal-fin rays, 100–112 scales in longitudinal series, ocular-side pigmentation pattern featuring 5–8, black, mostly incomplete crossbands, uniformly white blind side, and black peritoneum. Of specimens examined, seven including the holotype, were collected on Kaikata Seamount off southern Japan; one specimen was collected at the Kasuga-2 hydrothermal vent, Marianas Islands; and six were collected at sites on the Kermadec Ridge. In addition to specimens captured, many other S. thermophilus were observed from submersibles and ROVs at hydrothermal sites in the western Pacific including those in the Marianas Islands, at Nikko Seamount near Minami-Iohjima Island, and at Minami-Ensei Knoll, Mid-Okinawa Trough. Many of the specimens examined have skeletal anomalies including fused bones in the caudal skeleton, and missing or partially developed and/or misshapen fin rays.

Key words: flatfish, Symphurus, hydrothermal vents


Symphurus thermophilus    Munroe & Hashimoto, 2008 

FIGURE 3. Photographs of the hydrothermal vent tonguefish, Symphurus thermophilus
AIn situ photograph of S. thermophilus observed at Rumble 3 site, western Pacific, an area where this species occurs in high abundance. B. In situ photograph of S. thermophilus (most individuals <10 cm TL) observed at Daikoku Seamount, western Pacific, an area where this species occurs in high abundance. C. Photo of recently captured juvenile S. thermophilus taken at the Barnacle Boulders site at Kasuga-2, Mariana Islands. 


Figures 3A–C provided courtesy of NOAA’s Ocean Exploration Program and available from oceanexplorer.NOAA.gov  and oceanexplorer.NOAA.gov/explorations (Accessed 3 June 2008)


Thomas A. Munroe and Jun Hashimoto. 2008. A New Western Pacific Tonguefish (Pleuronectiformes: Cynoglossidae): The First Pleuronectiform discovered at active Hydrothermal Vents.  Zootaxa. 1839; 43–59.

Friday, August 19, 2016

[Ichthyology • 2008] Three New Pygmy Seahorse Species (Syngnathidae: Hippocampus) from Indonesia; Hippocampus pontohi, H. severnsi & satomiae


FIGURE 4. Live specimens of new species of pygmy seahorses from Indonesia.
  
AHippocampus pontohi: Bunaken, Sulawesi, M. Boyer; Bunaken, Sulawesi, M. Aw; Raja Ampat, West Papua, L. Tackett. BHippocampus severnsi: Bunaken, Sulawesi, S. Wong & T. Uno; Bunaken, Sulawesi, M. Severns (type specimens); Raja Ampat, West Papua, L. Tackett. CHippocampus satomiae: Derawan Kalimantan, S. Wong & T. Uno; Derawan, Kalimantan, J–S. Chen; Derawan, Indonesia, S. Onishi (type specimen).  

Abstract
Three new species of pygmy seahorse are described from Indonesia: Hippocampus pontohi and H. severnsi from Bunaken Island, off Sulawesi, and H. satomiae from Derawan Island, off Kalimantan. They are considered to be closely related to each other and to Hippocampus colemani. All three species are morphologically distinguished from the larger species of seahorses by the following combination of characters: 12 trunk rings, low number of tail rings (26–29), the placement of brooded young within the trunk region of males, and extremely small size (<15 mm HT, <17 mm SL). They can be separated from the previously described species of pygmy seahorses (H. bargibantiH. deniseH. colemani and H. minotaur) based on meristics, proportions, colour and body ornamentation. All three new species have a single gill opening as does H. colemani. Hippocampus pontohi and H. severnsi also share distinctive fleshy appendages with H. colemani but can be separated from the latter based on their body shape, raised angular coronet, larger orbit diameter, narrower trunk, fewer tail rings, smaller overall size and in the case of H. severnsi also colour. Diagnostic features of H. satomiae include 9 pectoral fin rays, 13 dorsal fin rays, spinous exterior, and distinct raised coronet with laterally expanded anterior and posterior flanges.

Key words: Hippocampus pontohiHippocampus severnsiHippocampus satomiae, new species, taxonomy, Indo-Pacific, marine


FIGURE 4. Live specimens of new species of pygmy seahorses from Indonesia.
AHippocampus pontohi: Bunaken, Sulawesi, M. Boyer; Bunaken, Sulawesi, M. Aw; Raja Ampat, West Papua, L. Tackett. BHippocampus severnsi: Bunaken, Sulawesi, S. Wong & T. Uno; Bunaken, Sulawesi, M. Severns (type specimens); Raja Ampat, West Papua, L. Tackett. CHippocampus satomiae: Derawan Kalimantan, S. Wong & T. Uno; Derawan, Kalimantan, J–S. Chen; Derawan, Indonesia, S. Onishi (type specimen). 

Hippocampus pontohi sp. nov.  

Etymology. This species is named in honour of Hence Pontoh, the Indonesian dive guide who first brought these pygmy seahorses to our attention. 

Distribution and ecology. Hippocampus pontohi has been observed on the coralline algae Halimeda, as well as on the hydroid Aglaephenia cupressina (Müller and Severns, pers. comm.). Severns noted it particularly in areas where Halimeda is growing on reef walls. It has been recorded at a number of areas in Indonesia (Bunaken, Cape Sri, Sorong, Wakatobi, Lembeh Straits), at depths of between 11–25 m particularly on vertical walls or in rock fissures (Müller, pers. comm.). See figure 5A for map. 
Hippocampus pontohi is commonly found in pairs and, like H. denise, is relatively active (Müller, pers. comm.). Two of the specimens examined were pregnant (MZB 13593 and MZB 13596) and each contained approximately 11 embryos. Both were collected in July. 


Hippocampus severnsi sp. nov.

Etymology. Hippocampus severnsi is named in honour of Mike Severns who, with Hence Pontoh, collected the first specimens. 

Distribution and ecology. Hippocampus severnsi is known from Indonesia (Bunaken, Wakatobi, Raja Ampat Islands, Kawe Island), Japan (Ryukyu Islands), Papua New Guinea (Milne Bay, Madang), Solomon Islands (Mborokua) and Fiji at depths of 8–20 m. See figure 5B for map. It has been observed both during the day and the night but is apparently more active in the morning and late afternoon when it is not in direct sunlight (Müller, pers. comm.). In Indonesia it has been recorded in association with a yellow coloured bryozoan, Catenicella sp., on different kinds of hydrozoans including Lytocarpus phoeniceaAntennellopsis integerrima and Halicordyle disticha (Müller, perscomm.) as well as in sheltered spots on a reef wall in association with Halimeda (Brett, perscomm.). It is also recorded from fissures on current–swept walls where it will tend to occur on the side of the fissure that faces away from the current, but in all cases where there is some upward current (Müller, pers. comm.) and has been seen swimming over a fungiid coral (Hardt, pers. comm.). In Papua New Guinea it has been observed in a healthy reef passage with a regular current of up to two knots on a gorgonian of the genus Muricella at 12 m depth (Halstead, pers. comm.) and in Fiji it was found on gorgonian species, possibly Menella sp.? (Tackett, pers. comm.) 
The holotype of H. severnsi, collected in June, had approximately 11 embryos within its pouch


Hippocampus satomiae

Etymology. This species is named in honour of Miss Satomi Onishi, the dive guide who collected the type specimens. 

Distribution and ecology. Hippocampus satomiae is known from scattered localities in Indonesia, including Derawan (type locality), and Lembeh Strait (northern Sulawesi), as well as northern Borneo, Malaysia. See figure 5C for map. It congregates at night in groups of 3–5 individuals on small seafans, at depths of 15–20 m depth on the bottom below reef overhangs. Photographed individuals (in Boyer, 2007) from the Togean Islands, Indonesia on a species of Nepthea Auduoin, 1826 on the reef front in water as shallow as 5 m are tentatively identified as H. satomiae.
 During the day H. satomiae are difficult to find, even in areas where they are known to occur. At dawn individuals become active. Birth has been observed on a number of occasions and also photographed. At birth, the young are jet–black, about 3 mm in height and shaped similarly to the adults. They settle on the bottom near to their place of birth (Onishi, pers. comm.). 
The holotype, collected in October, was pregnant and carrying approximately eight young.  


Sara A. Lourie and Rudie H. Kuiter. 2008. Three New Pygmy Seahorse Species from Indonesia (Teleostei: Syngnathidae: Hippocampus). Zootaxa. 1963: 54–68. 

Thursday, August 18, 2016

[PaleoIchthyology • 2008] Materpiscis attenboroughi • Live Birth in the Devonian Period: Placoderm Fish from the Gogo Area of north-west Western Australia


Materpiscis attenboroughi  Long, Trinajstic, Young & Senden, 2008 

Artist’s reconstruction of Materpiscis gen. nov. giving birth.
by B. Choo. DOI:  10.1038/nature06966 

Materpiscis attenboroughi  
Long, Trinajstic, Young & Senden, 2008

   a, Diagram showing position of embryo and yolk sac within the mother. b, Artist’s reconstruction of Materpiscis gen. nov. giving birth (by B. Choo).

The extinct placoderm fishes were the dominant group of vertebrates throughout the Middle Palaeozoic era, yet controversy about their relationships within the gnathostomes (jawed vertebrates) is partly due to different interpretations of their reproductive biology. Here we document the oldest record of a live-bearing vertebrate in a new ptyctodontid placoderm, Materpiscis attenboroughi gen. et sp. nov., from the Late Devonian Gogo Formation of Australia (approximately 380 million years ago). The new specimen, remarkably preserved in three dimensions, contains a single, intra-uterine embryo connected by a permineralized umbilical cord. An amorphous crystalline mass near the umbilical cord possibly represents the recrystallized yolk sac. Another ptyctodont from the Gogo Formation, Austroptyctodus gardineri, also shows three small embryos inside it in the same position. Ptyctodontids have already provided the oldest definite evidence for vertebrate copulation8, and the new specimens confirm that some placoderms had a remarkably advanced reproductive biology, comparable to that of some modern sharks and rays. The new discovery points to internal fertilization and viviparity in vertebrates as originating earliest within placoderms.


Placodermi McCoy, 1848
Ptyctodontida Gross, 1932

Materpiscis attenboroughi gen. et sp. nov.

Etymology. Generic name from the Latin meaning ‘mother fish’; species name in honour of Sir David Attenborough, who first drew attention to the Gogo fish sites in his 1979 series Life on Earth.

Holotype. WAM 07.12.1 (Western Australian Museum, Perth).

Age and locality. From the Stromatoporoid camp locality, Gogo Station, near Fitzroy Crossing, Western Australia (Late Devonian, early Frasnian).

Diagnosis. A small aspinothoracid ptyctodontid fish having an anteriorly pointed nuchal plate that participates in the posterior margin of the skull roof, broad roughly triangular-shaped preorbitals that meet mesially; the marginal plate has a large postorbital region with parallel rows of tubercles adorning it; the submarginal is strap-like and strongly curved mesially; robust triturating tooth plates that meet only at anterior tips, superognathals with moderately high anterior dorsal process. The body is scaleless.


Dr John Long of Museum Victoria in Melbourne holds a model of a placoderm fish fossil that was was found in the Gogo area of north-west Western Australia and was named Materpiscis attenboroughi.
 Photograph: William West/AFP/Getty Images 



John A. Long, Kate Trinajstic, Gavin C. Young and Tim Senden. 2008. Live Birth in the Devonian Period. Nature. 453; 650-652. DOI:  10.1038/nature06966 

Oldest Live-Birth Fossil Found; Fish Had Umbilical Cord

Friday, July 8, 2016

[Ichthyology • 2008] Amazonspinther dalmata • A New Genus and Species of Characid Fish from the Amazon Basin - the Recognition of A Relictual Lineage of Characid Fishes (Cheirodontinae: Cheirodontini)


Amazonspinther dalmata 
Bührnheim, Carvalho, Malabarba & Weitzman, 2008 

ABSTRACT

Amazonspinther dalmata, a new miniature characid from the streams of rio Purus and rio Madeira, right bank tributaries of the rio Amazonas, is described as a new genus and species of the subfamily Cheirodontinae. The unique characters of the new genus and species are the three remarkable black blotches on the base of the dorsal, anal, and caudal fins, the anteriormost proximal radial of the anal fin with an anteriorly extended lamina entering the abdominal cavity, and the extremely elongate caudal peduncle. The reduced number of ventral procurrent caudal-fin rays (7-9), and the hemal spines of only posterior one, two, or sometimes three caudal vertebrae directly articulating with the ventral procurrent caudal-fin rays further diagnoses the new taxon from remaining genera of the tribe Cheirodontini. The results of a phylogenetic analysis strongly support a close relationship between A. dalmata and Spintherobolus in the tribe Cheirodontini on the basis of fifteen unambiguous synapomorphies. Ten of these characters, previously hypothesized as exclusive synapomorphies for Spintherobolus, were now also identified in Amazonspinther, such as the pattern of exposed neuromasts on the head, the presence of a second pseudotympanum anterior to the first pleural rib, and the nearly discoidal coracoid bone. A discussion about the phylogenetic position of the closely related fossil †Megacheirodon to Spintherobolus and Amazonspinther is also provided. Convergent characters shared between Amazonspinther and the characid Priocharax are discussed in relation to miniaturization. Biogeographical implications of the diversification of Amazonspinther, Spintherobolus, and Megacheirodon lineages are discussed.

Key words: Phylogeny, Biogeography, Miniaturization, Spintherobolus, Priocharax.



Amazonspinther, new genus

Diagnosis. Amazonspinther is diagnosed among all characid species by the autapomorphic presence of three conspicuous black blotches on the base of the dorsal, anal, and caudal fins (ch. 43; Fig. 1).

Amazonspinther is diagnosed among all genera of the Cheirodontinae by two uniquely derived characters, the anteriormost proximal radial of the anal fin with an anteriorly extended lamina entering the abdominal cavity, between the distal portions of the 12th to 14th pleural ribs (ch. 44; Fig. 2) (vs. short anteriorly extended lamina, not entering the abdominal cavity and not between pleural ribs), and by the extremely elongate caudal peduncle, corresponding to 27.3-30.2% of SL. Caudal peduncle length is comparatively short in cheirodontines, ranging from 11.0 to 19.6% of SL. Spintherobolus papilliferus has an elongate caudal peduncle (21.3-27.0% of SL), but shorter than that observed for Amazonspinther.

Among all genera of the tribe Cheirodontini, Amazonspinther is diagnosed by two features: a small number of ventral procurrent caudal-fin rays (7-9 vs. 11-28; Malabarba, 1998:205-207, 209, ch. 42; Weitzman & Malabarba, 1999:8-9, ch. 5; 11-16 in Spintherobolus species) (Fig. 3); and hemal spines of one, two, or sometimes three posterior caudal vertebrae directly articulating with the ventral procurrent caudal-fin rays (Fig. 3; vs. hemal spines of at least the four posterior caudal vertebrae directly articulating with the ventral procurrent caudal-fin rays).

Etymology. Amazon, in reference to the Amazon basin, and spinther from the Greek spinther, masculine, meaning sparks, fire, in reference to both the closely related genus Spintherobolus and to the appearance of the yellow neuromasts of the head, also observed in Spintherobolus (Fig. 4).



Amazonspinther dalmata, new species

Etymology. The epithet refers to the Portuguese word "dalmata", in allusion to the color pattern of the skin of the dogs of the Dalmatian breed which resembles the color of A. dalmata. The origin of this word is linked to the Dalmatia region currently in Croatia, where the dog breed was possibly developed. A noun in apposition.

Distribution. Amazonspinther dalmata is known from small streams of middle rio Purus (rio Açuá) and middle and lower rio Madeira basins, State of Amazonas, Brazil (Fig. 8).

Ecological notes. The holotype of Amazonspinther dalmata was collected syntopically with several characid species, such as Axelrodia lindeae, Iguanodectes spp., Microschemobrycon geisleri, Tyttocharax madeirae, Gnathocharax steindachneri, Phenacogaster beni, Hemigrammus sp., Knodus sp., and with the crenuchids Odontocharacidium aphanes, Elachocharax pulcher, Ammocryptocharax elegans, and Microcharacidium sp. The type locality was characterized by possessing slow current, muddy substratum, and silty, turbid water. There was abundant riparian vegetation, and the maximum depth was 1.3 m (Fig. 9). The site of collection in the tributary of rio Purus (MCP 37572) had perceptible current, some submerged vegetation, transparent water, sandy and muddy substratum, riparian vegetation, and a maximum depth of 1 m.


Cristina M. Bührnheim, Tiago P. Carvalho, Luiz R. Malabarba and Stanley H. Weitzman. 2008. A New Genus and Species of Characid Fish from the Amazon Basin - the Recognition of A Relictual Lineage of Characid Fishes (Ostariophysi: Cheirodontinae: Cheirodontini). Neotrop. ichthyol. 6(4);  DOI: 10.1590/S1679-62252008000400016

RESUMO: Amazonspinther dalmata, um novo caracídeo miniatura de igarapés dos rios Purus e Madeira, afluentes da margem direita do rio Amazonas, é descrito como um novo gênero e nova espécie da subfamília Cheirodontinae. Os caracteres únicos ao novo gênero são as manchas pretas conspícuas na base das nadadeiras dorsal, anal e caudal, o radial proximal mais anterior da nadadeira anal com uma lâmina estendida anteriormente entrando na cavidade abdominal e o pedúnculo caudal extremamente alongado. Caracteres adicionais que diagnosticam o novo táxon dos demais gêneros da tribo Cheirodontini incluem o número reduzido de raios procorrentes caudais (7-9) e os espinhos hemais de somente uma, duas, ou às vezes três das vértebras caudais, diretamente articulados com os raios procorrentes caudais ventrais. Os resultados de uma análise filogenética suportam fortemente uma relação de proximidade entre A. dalmata e Spintherobolus na tribo Cheirodontini com base em quinze sinapomorfias não ambíguas. Dez destes caracteres foram previamente propostos como sinapomorfias exclusivas de Spintherobolus, mas agora são reconhecidos também em Amazonspinther, e.g. o padrão de distribuição de neuromastos expostos na cabeça, o segundo pseudotímpano anterior à primeira costela pleural e o coracóide aproximadamente discóide. Uma discussão a respeito da posição filogenética do fóssil †Megacheirodon, proximamente relacionado a Spintherobolus e Amazonspinther, também é fornecida. Caracteres convergentes entre Amazonspinther e o caracídeo Priocharax são discutidos com relação à miniaturização. Implicações biogeográficas da diversificação das linhagens Amazonspinther, Spintherobolus e Megacheirodon são discutidas.



Saturday, May 28, 2016

[Herpetology • 2008] Excidobates captivus • Spotted Poison Frogs: Rediscovery of A Lost Species and A New Genus (Anura: Dendrobatidae) from northwestern Peru


Excidobates captivus from type locality, mouth of the Río Santiago, Departamento Amazonas, Peru.
Twomey & Brown, 2008. DOI: 10.1655/07-009.1 dendrobates.org

The Santiago poison frog, Adelphobates captivus, a species not seen in life since 1929, was recently rediscovered on an expedition to its type locality in northwestern Peru. The colors of this species, previously unknown, consist of a black dorsum with bright red-orange spots and yellow spots ventrally. We provide amendments to the original description as well as the first accounts of tadpole morphology, vocalization, and natural history. A Bayesian phylogenetic analysis suggests Adelphobates captivus and a species originally described as Dendrobates mysteriosus are sister species that form a monophyletic clade sister to Ranitomeya. We propose to clarify the taxonomic status of D. mysteriosus incertae sedis by erecting a new genus, Excidobates, to include mysteriosus and its sister taxon captivus. Members of this genus are distinguished from Ranitomeya by 11 site substitutions in their rrnS and rrnL sequences, well-developed first fingers, and pale spots on the ventral surfaces of the thighs.

Keywords: Dendrobatidae, Dendrobatoidea, Excidobates captivus comb. nov, Excidobates gen. nov, Emysteriosus comb. nov, Peru, Poison frogs, Systematics, Taxonomy




Excidobates captivus (Myers, 1982) 
Photo by E. Twomey: dendrobates.org/captivus.html

Evan Twomey and Jason L. Brown. 2008. Spotted Poison Frogs: Rediscovery of A Lost Species and A New Genus (Anura: Dendrobatidae) from northwestern Peru.
 Herpetologica. 64(1); 121-137. DOI: 10.1655/07-009.1

Sunday, April 3, 2016

[PaleoOrnithology • 2008] Pengornis houi • Insight into Diversity, Body Size and Morphological Evolution from the Largest Early Cretaceous Enantiornithine Bird


Pengornis houi
Zhou, Clarke & Zhang, 2008 DOI:  10.1111/j.1469-7580.2008.00880.x

Abstract
Most of Mesozoic bird diversity comprises species that are part of one of two major lineages, namely Ornithurae, including living birds, and Enantiornithes, a major radiation traditionally referred to as ‘opposite birds’. Here we report the largest Early Cretaceous enantiornithine bird from north-east China, which provides evidence that basal members of Enantiornithes share more morphologies with ornithurine birds than previously recognized. Morphological evolution in these two groups has been thought to be largely parallel, with derived members of Enantiornithes convergent on the ‘advanced’ flight capabilities of ornithurine birds. The presence of an array of morphologies previously thought to be derived within ornithurine and enantiornithine birds in a basal enantiornithine species provides evidence of the complex character evolution in these two major lineages. The cranial morphology of the new specimen is among the best preserved for Mesozoic avians. The new species extends the size range known for Early Cretaceous Enantiornithes significantly and provides evidence of forelimb to hind limb proportions distinct from all other known members of the clade. As such, it sheds new light on avian body size evolution and diversity, and allows a re-evaluation of a previously proposed hypothesis of competitive exclusion among Early Cretaceous avian clades.

Keywords: bird evolution; China; Early Cretaceous; Enantiornithes


Aves Linnaeus, 1758 
Enantiornithes Walker, 1981 

Pengornis houi gen. et sp. nov

Holotype: IVPP (Institute of Vertebrate Paleontology and Paleoanthropology, Beijing, China). V15336 comprises a nearly complete skeleton preserved in partial articulation (Figs 1–3) lacking only sternum and pelvic bones and parts of the distalmost left forelimb.

Figure 1. Holotype of Pengornis houi gen. nov., sp. nov. (IVPP V15336). (A) Skeleton. (B) Line drawing.
Anatomical abbreviations: cav, caudal vertebra; cv, cervical vertebra; dr, dorsal rib; dv, dorsal vertebra; fu, furcula; ga, gastralia; hy, hypocleidium; lco, left coracoid; lfe, left femur; lfi, left fibula; lhu, left humerus; lil, left ilium; lpu, left pubis; lra, left radius; lsc, left scapula; lti, left tibiotarsus; ltm, left tarsometatarsus; lul, left ulna; ma, mandible; mcII, major metacarpal; mcIII, minor metacarpal; mtI, metatarsal I; phII-1, first phalanx of the major manual digit; py, pygostyle; rad, radiale; rco, right coracoid; rfe, right femur; rhu, right humerus; rpf, right pubic foot; rra, right radius; rsc, right scapula; rti, right tibiotarsus; rtm, right tarsometatarsus; rul, right ulna; sk, skull; sy, synsacrum; uln, ulnare; un, ungual.

Etymology: Peng’ refers to a Chinese mythological bird, ‘ornis’ is Greek for bird, and ‘houi’ is in honours of Lianhai Hou, a pioneering palaeo-ornithologist.

Locality and horizon: Dapingfang, Chaoyang, Liaoning China; Jiufotang Formation, Early Cretaceous (He et al. 2004).

Diagnosis: Four characters are unambiguously optimized as local autapomorphies of the new species in the phylogenetic analysis: premaxillae unfused throughout their length, hooked scapular acromion, a globose humeral head that projects further proximally than the deltopectoral crest (Characters 1:0, 105:1, 107:1, 108:1; Appendices 1 and 2).


Zhonghe Zhou, Julia Clarke and Fucheng Zhang. 2008. Insight into Diversity, Body Size and Morphological Evolution from the Largest Early Cretaceous Enantiornithine Bird. Journal of Anatomy. 212(5); 565–577. DOI:  10.1111/j.1469-7580.2008.00880.x

HU Han, ZHOU Zhong-He and Jingmai K. O’CONNOR. 2014. A subadult specimen of Pengornis and character evolution in Enantiornithes. VERTEBRATA PALASIATICA. 2014(1); 77-97