Showing posts with label Neopterygii. Show all posts
Showing posts with label Neopterygii. Show all posts

Monday, August 25, 2025

[PaleoIchthyology • 2024] Diandongichthys ocellatus • A New basal ginglymodian Fish (Neopterygii: Holostei: Ginglymodi) from the Middle Triassic (Anisian) Luoping Biota, Yunnan, China


 Diandongichthys ocellatus 
Xu & Ma, 2024


Abstract
Ginglymodians (e.g. gars) are a group of holostean fishes with a rich fossil history in the Mesozoic. The resolution of interrelationships among extinct ginglymodians is central to the problem of understanding the origin of this clade. Here, a new fossil ginglymodianDiandongichthys ocellatus gen. et sp. nov., is described based on 13 well-preserved specimens from the Early-Middle Triassic (Anisian) marine deposits exposed in Luoping, eastern Yunnan, China. The discovery documents one of the oldest and smallest ginglymodians hitherto known from the Middle Triassic, with a maximum standard length of 41 mm. Diandongichthys, although displaying several synapomorphies of ginglymodians, retains some primitive states with respect to other early ginglymodians (e.g. a short snout without anterior infraorbitals, a maxilla ending below the orbit, and a median gular); consequently, it is nested at the base of the Ginglymodi in this phylogenetic study. Besides body shape, some autapomorphies on the cranial bones and caudal fin easily distinguish Diandongichthys from other members of this clade. The discovery provides new insights into the origin and early diversification of ginglymodian fishes.

China, Middle Triassic, neopterygian, osteology, phylogeny


 Diandongichthys ocellatus gen. et sp. nov., holotype (IVPP V25610).  


Systematic palaeontology

Actinopterygii Cope, 1887,
Neopterygii Regan, 1923,
Holostei Müller, 1844 (sensuGrande, 2010)
Ginglymodi Cope, 1872 (sensuGrande, 2010)

Diandongichthys gen. nov.
 
Etymology: The generic epithet ‘Diandong’, the Chinese Pingyin for the eastern Yunnan, and the Greek suffix ‘ιχθύς’, ichthys, fish.

Geographical distribution and age: Luoping, Yunnan, China; Pelsonian, Anisian, Middle Triassic.
 

Diandongichthys ocellatus sp. nov. 

Etymology: The specific epithet ‘cyclotus’ refers to the nearly rounded profile of the caudal fin.
 
Locality and horizon: Luoping, Yunnan, China; Second (Upper) Member of Guanling Formation, Pelsonian (∼244 Mya), Anisian, Middle Triassic (Zhang et al. 2009).

Diagnosis: A small-sized ginglymodian distinguished from other members of the clade by the following combination of features (autapomorphies, those unique among ginglymodians, identified with an asterisk): frontal about three times as long as parietal; parietal nearly square; large pores for supraorbital sensory canal in frontal situated very close to lateral margin of this bone (*); three supraorbitals; eight infraorbitals; three suborbitals; quadrate exposed in lateral view (uncovered by cheek bones); operclular length nearly equal to ...


 

Guang-Hui Xu and Xin-Ying Ma. 2024. A New basal ginglymodian Fish (Holostei: Neopterygii) from the Middle Triassic (Anisian) Luoping Biota, Yunnan, China. Zoological Journal of the Linnean Society. 201(3) zlad144. DOI: doi.org/10.1093/zoolinnean/zlad144 [16 October 2023] 
http://english.ivpp.cas.cn/multimedia

Monday, February 15, 2021

[PaleoIchthyology • 2021] Louwoichthys pusillus • A New Stem-neopterygian Fish from the Middle Triassic (Anisian) of Yunnan, China, with A Reassessment of the Relationships of early Neopterygian Clades


Louwoichthys pusillus Xu, 2021


Abstract
Neopterygii is a taxonomically diverse group of ray-finned fishes, including Teleostei, Holostei and their closely related fossil taxa. Here, a new small-sized stem-neopterygian with extraordinarily long teeth, Louwoichthys pusillus gen. et sp. nov., is described based on 14 well-preserved specimens from the Middle Triassic (Anisian) marine deposits of Yunnan, China. Louwoichthys is closely related to Luopingichthys from the same fossil beds and Ctenognathichthys from the Middle Triassic of the Monte San Giorgio area in Europe; the three genera are grouped into the family Louwoichthyidae fam. nov., which is recovered as sister to the ‘perleidiform’ Pseudobeaconiidae. Given that ‘Perleidiformes’ is notoriously paraphyletic, a new order, Louwoichthyiformes ord. nov., is introduced to group both families. The louwoichthyiform monophyly is strongly supported by a series of derived features, such as a relatively short maxilla, an anteriorly inclined preopercle, a subopercle with a prominent anteroventral extension, and two or three pairs of branchiostegal rays. Louwoichthys is one of the smallest louwoichthyiforms, having a largest standard length of 39 mm. It is deduced to be a scavenger that might use its long and sharp teeth to grasp and tear the prey from the substrate or to bite a piece from a larger prey item.

Keywords: fossil record, neopterygian, osteology, phylogeny, taxonomy




Specimen and reconstruction of Louwoichthys pusillus.
 A, IVPP V20424. B, reconstruction.

SYSTEMATIC PALAEONTOLOGY 

Actinopterygii Cope, 1887 
Neopterygii Regan, 1923 

Louwoichthyiformes ord. nov.

Content: Louwoichthyidae and Pseudobeaconiidae López-Arbarello & Zavattieri, 2008.

Louwoichthyidae fam. nov.

Content: Ctenognathichthys Bürgin, 1992, Luopingichthys Sun et al., 2009 and Louwoichthys.


Louwoichthys gen. nov. 

 Etymology: The generic epithet ‘Louwo’, the ancient name of Luoping County, and the Greek suffix ιχθύς, ichthys, fish. 

Geographical distribution and age: Luoping and Luxi, Yunnan, China; Pelsonian, Anisian, Middle Triassic. 


Louwoichthys pusillus sp. nov.

Etymology: The epithet is the Latin word pusillus, very little or petty, referring to the small size of the fish body.

 Holotype: IVPP V 20421, a nearly complete, laterally compressed specimen from Luoping. 

Locality and horizon: Luoping and Luxi, Yunnan, China; Second (Upper) Member of Guanling Formation, Pelsonian (~244 Mya), Anisian, Middle Triassic (Zhang et al., 2009; Huang et al., 2013). 

the phylogenetic position of Louwoichthys pusillus within the Neopterygii.

 
Guang-Hui Xu. 2021. A New Stem-neopterygian Fish from the Middle Triassic (Anisian) of Yunnan, China, with A Reassessment of the Relationships of early Neopterygian Clades. Zoological Journal of the Linnean Society. 191(2); 375–394. DOI: 10.1093/zoolinnean/zlaa053
 
    

     

Wednesday, June 12, 2019

[PaleoIchthyology • 2019] Flagellipinna rhomboides • A New Genus and Species of Pycnodontid Fish (Neopterygii, Pycnodontiformes), from the Upper Cretaceous (Cenomanian) of Lebanon, with Notes on Juvenile Form and Ecology


Flagellipinna rhomboides
Cawley & Kriwet, 2019


ABSTRACT
The Upper Cretaceous (Cenomanian) limestone quarry of Haqel, Lebanon, is home to one of the largest diversities of fossil actinopterygians in the Mesozoic, particularly of pycnodontiform fishes. Here, we describe a pycnodontiform fish, Flagellipinna rhomboides, gen. et sp. nov., from this locality based on four specimens. It is considered a member of the derived family Pycnodontidae due to the presence of a postparietal process. This taxon is distinct from other pycnodontids due to its diamond-shaped body, whip-like dorsal fin, postcloacal scales with forward-pointing spines, and acute anterior profile with a concave slope, giving it a ‘hunchback’ appearance. The prognathous snout armed with molariform teeth suggests that this pycnodont preyed on a variety of shelled animals from crevices. The smallest specimen is distinct in that it has a larger orbit size, no spines on the contour scales, poorly ossified skull roof bones, a notochord partially covered by arcocentra, and lacks whip-like filament on the dorsal fin, which suggest that it is a juvenile/subadult. The differences between the juvenile/subadult and other larger specimens suggest a change in ecological niche occupation during ontogeny, going from a generalized forager that lived in complex, reef habitats to moving into deeper waters to feed from crevices on the reef edge. These findings provide a more complete picture of the possible life history strategies that pycnodontiforms may have used in order to exploit different resources throughout their lives.

the holotype of Flagellipinna rhomboides, gen. et sp. nov. [MNHN.F.HAK2003]


SYSTEMATIC PALEONTOLOGY

Class OSTEICHTHYES Huxley, 1880 
Subclass ACTINOPTERYGII Cope, 1887 
Series NEOPTERYGII Regan, 1923 

Order PYCNODONTIFORMES Berg, 1937 
Family PYCNODONTIDAE sensu Nursall, 1996 

FLAGELLIPINNA, gen. nov.


Age— Early late Cenomanian, Late Cretaceous.

Type Species— Flagellipinna rhomboides, sp. nov.

Etymology— The name is a combination of the Latin words ‘flagellum’ (whip) and ‘pinna’ (fin), which refers to the whip-like dorsal fin present in this genus.

FIGURE 1. Specimens of Flagellipinna rhomboides, gen. et sp. nov. A, MNHN.F.HAK2003, holotype. B, MNHN.F.HAK2001, paratype, possible late juvenile/subadult stage. C, MNHN.F.HAK1972a, paratype, part. D, MNHN.F.HAK1972b, paratype, counterpart. Scale bars equal 1 cm.



FLAGELLIPINNA RHOMBOIDES, sp. nov.

Diagnosis— Small pycnodontid fish with a deep, rhomboid body shape. Anterior profile of the fish is extremely steep, being sloped at a mean 57.3° angle in relation to the vertebral column. Dorsal fin has a whip-like filament. Dorsal and anal pterygiophores inserted very deeply into the body. Dorsal and anal fins falcate anteriorly and become progressively strap-like posteriorly. Ventral apex present anterior to the insertion of anal fin. Two dentalosplenial (dentary) teeth are broad and incisiform, and the anterior (mesial) premaxillary tooth is bicuspid. Skull dorsoventrally flattened and obliquely oriented, with an elongate snout. Paired preparietal (prefrontal) bone present. Dermocranial fenestra absent in skull roof. Cleithrum narrow and elongate with just two limbs, the dorsal limb being far narrower than the ventral limb. Large, semicircular preoperculum with small exposed dermohyomandibular. Comparatively large operculum broad and club-shaped. Notochord completely surrounded by arcocentra. Ten to 15 dorsal ridge scales with three to six backward-pointing spines. Ventral ridge scales consist of 11 precloacal scales, with two backward curved spines and a single postcloacal scale. Cloaca is roofed by two comma-shaped scales. Four spines present on the postcloacal ventral ridge scale, with the first three being strongly curved and forward pointing and the most posterior spine straight and backward pointing in a posteroventral angle. Complete scales restricted to abdominal region, scale bars on rest of body.

Type Locality and Horizon—Haqel, northern Lebanon; Sannine Formation, early late Cenomanian, Upper Cretaceous.

Etymology— Latin for ‘rhomboid’ in allusion to the diamond-like body shape of the new species.

FIGURE 2. Flagellipinna rhomboides, gen. et sp. nov., reconstruction of the skeleton based on MNHN.F.HAK1972a, MNHN.F.HAK1972b, MNHN.F.HAK2001, and MNHN.F.HAK2003.
Anatomical characters based on the holotype and the paratypes; skull roof restored from the holotype, whereas the lower jaw is based on both the holotype and MNHN.F.HAK2001; pectoral girdle is intermediate between the conditions seen in the holotype and MNHN.F.HAK2001; dorsal ridge scale series based mainly on MNHN.F.HAK1972b; caudal endoskeleton based on a combination of MNHN.F.HAK1972b and specimen figured on page 93 of Gayet et al. (2012 Gayet, M., P. Abi Saad, and O. Gaudant. 2012. Les fossiles du Liban: Memoire du Temps. Éditions Desiris, Meolan-Revel, France, 184 pp. [Google Scholar] ); arcocenta based on paratype MNHN.F.HAK1972b. Reconstruction of paired fins and the caudal fin is hypothetical because they are poorly preserved in all specimens. Caudal endoskeleton that is not preserved in any specimen is represented by hypothethical bones shown here in gray. Scale bar equals 1 cm.


CONCLUSIONS: 
Flagellipinna rhomboides, gen. et sp. nov., is a recent addition to the high biodiversity of the exceptional pycnodont fauna of the Cenomanian Lebanese fossil beds (Appendix 1). Anatomical characters such as the presence of a postparietal process indicate that this taxon is a pycnodontid, which are well represented in the Cenomanian of Lebanon (Appendix 1).

The characteristics distinguishing Flagellipinna, gen. nov., from other pycnodonts is its acute anterior profile with a diamond-shaped body; a reduced operculum, which is nevertheless broader than typical pycnodont opercula and lies posterior to the dermohyomandibular and the preoperculum; a narrow and elongate cleithrum with two limbs; a posteroventral spine of the postcloacal scale, which is straight and backward pointing alongside three forward-pointing spines; a dorsoventrally flattened skull with a prognathous snout; a deep insertion of the dorsal and anal pterygiophores; and whip-like extended dorsal fin rays reminiscent of modern coral reef fishes such as Zanclus cornutus.

A combination of inferences from the specimens, the paleoenvironment of Haqel, and the invertebrate fauna that were found alongside Flagellipinna, gen. nov., suggests that it possibly inhabited reef slopes and fed from crevices on elusive armored prey such as bivalves, echinoderms, and gastropods. The interpretation of the smallest specimen of Flagellipinna, gen. nov., being a juvenile raises interesting questions regarding ontogeny and change in ecology during growth of this fish. The juvenile has an even deeper body shape than the adult along with a shift in skull position and shape, indicating that it was a more typical durophagous pycnodont that lived in shallower reef habitats and may have moved into deeper waters to feed from the crevices of the reef edge as it became older. Of course, more specimens of Flagellipinna, gen. nov., are necessary in order to confirm the validity of these morphological changes throughout its ontogeny, but this interpretation is supported by similar ontogenetic changes observed in modern taxa.

The Lebanese Cenomanian pycnodont fauna contains some of the most diversified assemblages of non-teleost actinopterygians in the Cretaceous. Such a diverse range of forms must have had a wide range of ecological requirements and life histories. Flagellipinna rhomboides, gen. et sp. nov., is not only another new species from this extraordinary assemblage, but the specimens described here also hint at how these fishes could have filled a particular niche in the Haqel ichthyofauna and how that niche may have changed during its life span.


John Joseph Cawley and Jürgen Kriwet. 2019. A New Genus and Species of Pycnodontid Fish Flagellipinna rhomboides, gen. et sp. nov. (Neopterygii, Pycnodontiformes), from the Upper Cretaceous (Cenomanian) of Lebanon, with Notes on Juvenile Form and Ecology. Journal of Vertebrate Paleontology.  DOI: 10.1080/02724634.2019.1614012   

Wednesday, February 24, 2016

[PaleoIchthyology • 2016] Venusichthys comptus • A Middle Triassic Stem-Neopterygian Fish from China shows Remarkable Secondary Sexual Characteristics



 Venusichthys comptus 
Xu & Zhao, 2016

Abstract
Secondary sexual characteristics are features that appear at sexual maturity and distinguish the two sexes of a species. They are readily observed and studied in living animals, but the phenomenon is rather more difficult to identify in fossil taxa. Here we report a new sexually dimorphic stem-neopterygian fish, Venusichthys comptus gen. et sp. nov., based on 30 exceptionally well-preserved specimens from the Middle Triassic (Pelsonian, Anisian) Luoping Lagerstätte of eastern Yunnan, China. The discovery represents the oldest known secondary sexual characteristics in Neopterygii. These characteristics, including pointed tubercles on cranial bones, scales and fins, and hook-like contact organ anterior to the anal fin, have three inferred primary functions: maintenance of body contact between the sexes during prespawning behavior or spawning; stimulation of the females during breeding; and defense of nests and territories. Lacking a specialized anal fin in the presumed males, Venusichthys would likely have a different reproductive strategy from peltopleurids and other potentially viviparous stem-neopterygians. Moreover, Venusichthys shows a unique character combination distinguished from any other stem-neopterygian families and consequently represents a new family of this clade. As such, the new finding provides an important addition for understanding the behavior, reproduction, and early diversification of Neopterygii.

Keywords: Sexual dimorphism; Breeding tubercles; Venusichthyidae; Neopterygii; Actinopterygii


Systematic paleontology

Neopterygii Regan, 1923

Venusichthyidae fam. nov.

    Venusichthys comptus gen. et sp. nov.

Etymology: The genus epithet is from Latin venus, meaning goddess of love, and ichthys, meaning fish. The species epithet is from Latin comptus, meaning ornamental.

Holotype: A nearly complete skeleton of presumed female deposited at the collection of the Institute of Vertebrate Paleontology and Paleoanthropology (IVPP), Chinese Academy of Sciences. V20010. Standard length is 31 mm.
Referred specimens: IVPP V20011–20034, 20055–20058; ZMNH (Zhejiang Museum of Natural History, Hangzhou, China) M1695.

Type locality and horizon: Luoping, Yunnan, China; second (upper) member of Guanling Formation, Pelsonian, Anisian, Middle Triassic.

Diagnosis: A new stem-neopterygian diagnosed by the following combination of features: presence of pointed anterior process of rostral; absence of supraorbitals; quadratomandibular articulation slightly anterior to middle line of orbit; maxilla notably longer than lower jaw; presence of tubercles and contact organ in presumed males; two preopercular elements on each side; two pairs of branchiostegal rays; anterior lateral line scales six times deeper than wide; dorsal fin larger than anal fin; 24 principal caudal fin rays; and squamation formula of D14/P7, A13, C31/T37.



Guang-Hui Xu and Li-Jun Zhao. 2016. A Middle Triassic Stem-Neopterygian Fish from China shows Remarkable Secondary Sexual Characteristics. Science Bulletin. 61(4); 338-344. DOI: 10.1007/s11434-016-1007-0

摘要: 第二性征是动物在性成熟所表现的、可以用来分辨物种性别的特征。第二性征比较容易在现生物种中观察到,但是它们很难在化石中识别。根据采集于云南罗平中三叠世安尼期海相地层的三十块鱼化石,本文报道了基干新鳍鱼的一个新属种:多饰维纳斯鱼 (Venusichthys comptus)。维纳斯鱼具有明显的性双型:成年雄鱼具有第二性征,包括雄鱼头部、鳞片和鳍条上的尖突,以及臀鳍前面钩状的接触器。这些第二性征可能用于增进雌、雄鱼体产卵前或产卵中的身体接触,刺激雌鱼排卵,以及保护巢穴和领地。维纳斯鱼不具有肋鳞鱼类或其它卵胎生鱼类那样特化的臀鳍,它的生殖方式可能不是卵胎生的。维纳斯鱼代表了新鳍鱼类第二性征的最早记录,它的发现为了解新鳍鱼类的行为、繁殖方式和早期分异提供了重要信息。

Neopterygian Fish with Secondary Sexual Characteristics Found from Middle Triassic of China