Showing posts with label Hexacorallia. Show all posts
Showing posts with label Hexacorallia. Show all posts

Sunday, December 21, 2025

[Cnidaria • 2025] Endolobactis simoesii (Cnidaria: Actiniaria) • A New Species of Sea Anemone from the Yucatán Peninsula, Mexico


Endolobactis simoesii
 González-Muñoz, Rodríguez, Durán-Fuentes & Acuña, 2025


Abstract
A new genus and species of sea anemone belonging to the family Actiniidae, Endolobactis simoesii gen. et sp. nov., is described. A comprehensive description is provided, including information on its external and internal anatomical features, cnidome, and size ranges and distribution of cnidae, accompanied by images of live specimens and their histological characteristics. The most distinctive feature of E. simoesii gen. et sp. nov. is the frond-like marginal projections located on exclusively endocoelic lobes. This contrasts with other genera in Actiniidae that exhibit similar marginal projections, which are commonly referred to as a “marginal ruff.” In addition, E. simoesii gen. et sp. nov. has more mesenteries proximally than distally. These and other differences between E. simoesii gen. et sp. nov. and other genera within Actiniidae with similar features are discussed in detail. With the inclusion of E. simoesii gen. et sp. nov., the number of documented sea anemone species along the Mexican Atlantic coast increases to 24.
 
Coelenterata, Actiniidae, sea anemone, Endolobactis simoesii


 Endolobactis simoesii gen. et sp. nov.


Ricardo GONZÁLEZ-MUÑOZ, Estefanía RODRÍGUEZ, Jefersón DURÁN-FUENTES and Fabián H. ACUÑA. 2025. Endolobactis simoesii gen. et sp. nov. (Cnidaria: Actiniaria), A New Species of Sea Anemone from the Yucatán Peninsula, Mexico.  Zootaxa. 5722(3); 391-407. DOI: doi.org/10.11646/zootaxa.5722.3.5 [2025-11-20]

Tuesday, December 16, 2025

[Cnidaria • 2025] Pavona giannii • A New Reef-dwelling Coral (Hexacorallia: Scleractinia: Agariciidae), with an overview of the skeletal morphology of the type specimens of the genus Pavona

 

Pavona giannii  
Benzoni, 2025 
 

Abstract
Hard coral species in the agariciid genus Pavona are common in shallow and mesophotic coral reef communities across the Indo-Pacific, but their taxonomy has long been overlooked. Pavona giannii sp. nov. is here described based on newly collected material across the Indian Ocean, and historical museum specimens. In vivo and skeletal morphological features are described, diagnostic characters measured, and comparison with congeners performed. The new species forms an encrusting corallum devoid of raised ridges on its surface. Its corallites are flush with the surface, not inclined, and less than half a corallite diameter apart. Corallites arrangement is thamnasteroid and series can form locally. Where they occur, the radial elements run over the shared walls to the adjacent series’ corallites creating a ladder-like arrangement similar to that observed over the ridges in congeners like Pavona varians and Pavona chiriquiensis. Despite the lack of ridges, P. giannii sp. nov. has morphological affinities with these two species. However, based on previously published morphometrics and meristics, P. giannii sp. nov. corallites are larger and more crowded, and the primary septa are longer and more numerous. In vivo, the new species is distinguished by fully extended white to beige tentacles during the daytime, giving it a white-bearded appearance. Despite the ecological relevance of Pavona corals, a taxonomic revision of the genus is overdue, and the existing molecular studies indicate that it is polyphyletic. Here, the proposed placement of P. giannii sp. nov. in the genus is based on morphological evidence alone and phylogenomic analyses are currently in progress.

Key words: Morphometrics, museum collections, reef-building coral, skeletal morphology, taxonomy

Holotype of Pavona giannii sp. nov. MNHN-IK-2012-14233
A. the whole colony in situ at Hyllanyia Island, Bir Ali, Yemen, prior to sampling and B. corallum of the sampled fragment. C. Top view of the corallum showing corallite arrangement and the position of some of the corallite series boundaries (dashed pink lines) marked by the presence of parallel radial elements running over and across them, and D. side view showing its even surface given by equally high and flat top margins of S1 and S2 septa, and the deep-seated fossae. Scale bars: 1 cm (B); 5 mm (C, D).

Pavona giannii sp. nov. in situ.
A. Typically white extended tentacles in the colony, from which specimen UNIMIB BAL252 was collected, encrusting a submassive Porites (living portion at the top right-hand side) at Balhaf, Yemen; B. Colony of UF 17957, Mirbat, Oman; C. Fully extended white tentacles covering the whole surface of the colony of UNIMIB SO078 at Socotra Island, Yemen; D. Colony with partially retracted tentacles allowing the polyps’ white oral disks to show, Mahé Island, Seychelles; E. Colony of UNIMIB MY069 at Mayotte Island; F. Colony with white tentacles and grey oral disks Balhaf, Yemen; G. Close-up of the polyps of colony UNIMIB BU049 with beige tentacles and white oral disks at Burum, Yemen.


 Francesca Benzoni. 2025. A New Reef-dwelling Coral, Pavona giannii sp. nov. (Scleractinia, Agariciidae), with an overview of the skeletal morphology of the type specimens of the genus PavonaZooKeys. 1260: 123-147. DOI: doi.org/10.3897/zookeys.1260.167263

Thursday, September 5, 2024

[Cnidaria • 2024] Umimayanthus mirnangga, U. jebarra, U. raksasa, etc. • Museum Collections as Untapped Sources of Undescribed Diversity of Sponge-zoantharian Associations with the Description of Six New Species of Umimayanthus (Zoantharia: Parazoanthidae) from Western Australia and eastern Indonesia

 
Umimayanthus cf. aruensis (Pax, 1911) 

in Montenegro, Fromont, Richards, Kise, Gomez, Hoeksema et Reimer, 2024. 
 
Abstract
The zoantharian genus Umimayanthus consists largely of species that live in obligate symbioses with sponges. Although zoantharians have often been overlooked in field collecting campaigns and in research, sponges are usually well-collected, and many natural history museums harbor numerous sponge specimens. Thus, these sponge collections may also include previously overlooked zoantharian species. Such is the case in this research, in which we examined sponge specimens in museum collections from Western Australia and eastern Indonesia. Based on our morphological and molecular analyses, we herein describe six species of Umimayanthus new to science, and redescribe another species described over a century ago. These species can be distinguished by their sponge associations, gross polyp and colony morphology, and depth ranges. Based on these findings, it appears that the Central Indo-Pacific region of Western Australia and Indonesia can be considered a hotspot for sponge-associated zoantharian diversity. We provide a key for the identification of all formally described species in the genus, but caution that there are likely more Umimayanthus species awaiting discovery.

Keywords: Anthozoa; biodiversity; coral reefs; Porifera; species descriptions

Phylum Cnidaria Hatschek, 1888 
Subphylum Anthozoa Ehrenberg, 1831 

Class Hexacorallia Haeckel, 1896 
Order Zoantharia Rafinesque, 1815 

Family Parazoanthidae Delage & Hérouard, 1901 

Genus Umimayanthus Montenegro, Sinniger and Reimer 2015


Umimayanthus cf. aruensis (Pax, 1911) 

Umimayanthus mirnangga sp. nov. WAM Z88824 (holotype)

Umimayanthus mirnangga sp. nov. Montenegro, Kise & Reimer

Etymology. The specific epithet “mirnangga” is derived from the phoneme used to refer to a young single woman in the Wunambal language. This in reference to the fact that the colonies of U. mirnangga sp. nov. are exclusively composed of solitary polyps. “mɨrnangga binya” n., B-class young woman. Syn: munangga. See Bengmoro et al. (1971) and Boona (2022).


Umimayanthus jebarra sp. nov. Montenegro, Kise & Reimer

Etymology. The specific epithet “jebarra” is derived from the phoneme used to refer to the emu in Wunambal language. This in reference to the elongated shape of the polyps in U. jebarra sp. nov., which resemble the neck of an emu. As well, the name can act as a memorial to all the emus killed during the Great Emu Wars of 1932 in Western Australia. “jebarra anya” n., A-class. emu. Dromaius novaehollandiae. Syn: garnanganyja; jeebarra. See Mangglamarra (1991) and Karadada et al. (2011).


Umimayanthus wunanggu sp. nov. 

Umimayanthus wunanggu sp. nov. Montenegro, Kise & Reimer

Etymology. The specific epithet “wunanggu” is derived from the phoneme used to refer to the hill white gum tree in Wunambal language. This in reference to U. wunanggu sp. nov. forming colonies of white polyps connected by a thin coenenchyma that extends on a linear branching pattern over the sponge surface. “wunanggu winya” n., W-class. /wunaŋgu/. hill white gum, tropical red box, Eucalyptus brachyandra von Mueller, 1859. See Capell (1941) and Karadada (2011).

Umimayanthus discolor sp. nov. Montenegro, Kise & Reimer

Etymology. The specific epithet “discolor” means multiple colors in Latin. This is in reference to U. discolor sp. nov. forming colonies of polyps with contrasting colorations between the oral disk and the column, stolon, and coenenchyma.


Umimayanthus lynherensis sp. nov. Montenegro, Kise & Reimer  

 Etymology. The specific epithet “lynherensis” is derived from the locality where the type specimen was collected, the Lynher Bank sea country north Kimberley, Western Australia, Australia.  


Umimayanthus raksasa sp. nov. Montenegro, Kise & Reimer

Etymology. The specific epithet “raksasa”, which means “giant” or “gigantic” in Indonesian, refers to the large size of the polyps of this species in comparison to the other members of its genus.

 
 Javier Montenegro, Jane Fromont, Zoe Richards, Hiroki Kise, Oliver Gomez, Bert W. Hoeksema and James Davis Reimer. 2024. Museum Collections as Untapped Sources of Undescribed Diversity of Sponge-zoantharian Associations with the Description of Six New Species of Umimayanthus (Zoantharia: Parazoanthidae) from Western Australia and eastern Indonesia.  Contributions to Zoology. DOI: doi.org/10.1163/18759866-bja10069

Wednesday, January 31, 2024

[Mollusca • 2024] Phestilla arnoldi Parasites or Predators? Gastropod Ectoparasites (Nudibranchia: Trinchesiidae) and their scleractinian host Corals at Koh Tao, Gulf of Thailand, with the Description of A New Species


Phestilla arnoldi Mehrotra & Caballer, 

in Mehrotra, Caballer, Kaullysing, Jualaong & Hoeksema, 2024.

Abstract
Recent years have seen a rapid increase in the study of coral-associated gastropods. In particular, the description of several new species in conjunction with their host specificity or dietary variability, has raised questions pertaining to their impact on reef health. These corallivores have been labelled as both ‘parasite’ and ‘predator’ by different studies, due to the tendency of some species to entirely consume their ‘host’ corals. Here we present new findings of corallivory and parasitism based on surveys conducted on the reefs of Koh Tao, Gulf of Thailand. A total of 6566 corals were assessed for their tendency to host gastropods of the nudibranch genus Phestilla and the caenogastropod family Epitoniidae. Thirteen gastropod species were found to be associated with 20 scleractinian coral species, including six that do not match the original description of previously known taxa. Herein we describe one of them, the first nudibranch proven to be associated with corals of the scleractinian genus Acropora and discuss conservation implications of these coral/gastropod relationships. Additionally, we explore the complex topic of defining these relationships as parasitic versus predatory and the merits of using these labels to better understand the ecology of these relationships.
 
Keywords: Acropora, Coral-associated gastropods, Corallivory, Epitoniidae, Phestilla, Predation

Phestilla arnoldi Mehrotra & Caballer sp. nov.
A–C: Pigmentation differences as mediated by recent feeding and the relative presence of endosymbiotic Symbiodiniaceae.
 D–F: Specimens in situ on their Acropora host, egg bundles indicated by black arrow. G: Right-anterior of a specimen under light microscopy with living Symbiodiniaceae cells along lateral digestive ducts, with an eye visible in the top right.
 Scale bars: A, B = 1 mm; C = 2 mm; D, E = 4 mm; F = 2 mm; G = 0.1 mm

Order Nudibranchia Cuvier, 1817

Superfamily Fionoidea Gray, 1857
Family Trinchesiidae Nordsieck, 1972

Genus Phestilla Bergh, 1874

Phestilla arnoldi Mehrotra & Caballer sp. nov.

 Etymology: Phestilla arnoldi Mehrotra & Caballer sp. nov. is named in honour of Mr. Spencer Arnold for his discovery of this highly cryptic species at Koh Tao, alongside contributing significantly to ectoparasite observations and records at Koh Tao during the survey period. In addition, Mr. Arnold has supported marine biology education and research, and has played an important role in biodiversity monitoring at Koh Tao and elsewhere.


 Rahul Mehrotra, Manuel Caballer, Deepeeka Kaullysing, Suthep Jualaong and Bert W. Hoeksema. 2024. Parasites or Predators? Gastropod Ectoparasites and their scleractinian host Corals at Koh Tao, Gulf of Thailand, with the Description of A New Species. Symbiosis. DOI: 10.1007/s13199-023-00967-z

Sunday, July 10, 2022

[Cnidaria • 2021] Tubastraea megacorallita • A New Species of the Sun Coral Genus Tubastraea (Hexacorallia: Scleractinia: Dendrophylliidae) from Hong Kong


 Tubastraea megacorallita
Yiu, Chung & Qiu, 2021


Abstract
Tubastraea, commonly known as sun coral, is a genus of brightly coloured azooxanthellate corals in the family Dendrophylliidae. The diversity of this genus is low, with only seven recognized species. Herein, we describe Tubastraea megacorallita sp. nov. from Hong Kong based on morphological and molecular analyses. This new species exhibits several characteristics of the genus including being colonial, having a rough texture of corallum and no epitheca. It can be distinguished from its congenerics by bigger corallites, and the Pourtalès plan arrangement of its septa. The rDNA gene sequences (consisting of ITS1, 5.8S, ITS2, 18S and 28S) showed 2.45–5.18% divergence from those of its closest relatives, T. coccinea and T. micranthus.

Keywords: Coelenterata, scleractinian coral, azooxanthellate, ahermatypic coral, dendrophylliid, South China Sea

 Tubastraea megacorallita sp. nov.:
 A living specimen in the field; B: Skeleton of a specimen with tissues removed (TMBC030850); C: a corallite (TMBC030853); D: Fossa (TMBC030853); E: Costae (c) and Intercostal striae (i.s.) (TMBC030853).
Scale bar: A-B: 1 cm; C: 5 mm; D-E: 1 mm.

 Possible predators of  Tubastraea megacorallita sp. nov.:
A: an individual of Phestilla melanobrachia feeding on T. coccinea; also shown are egg masses (yellow) of the nudibranch; B: an individual of Coralliophila costularis feeding on a colony of T. megacorallita sp. nov.;
C: three individuals of Coralliophila costularis feeding on a colony of Tubastraea diaphana. D: an individual of Epidendrium sp. feeding on a colony of T. coccinea.


Tubastraea megacorallita sp. nov. 


Sam King Fung Yiu, Sheena Suet-Wah Chung and Jianwen Qiu. 2021. A New Species of the Sun Coral Genus Tubastraea (Scleractinia: Dendrophylliidae) from Hong Kong. Zootaxa. 5047(1); 1-16. DOI: 10.11646/zootaxa.5047.1.1
 research.hkbu.edu.hk/news/hkbu-biologists-discover-new-coral-and-nudibranch-species

Tuesday, January 12, 2021

[Cnidaria • 2017] Zoantharians (Hexacorallia: Zoantharia) Associated with Cold-Water Corals in the Azores Region: New Species and Associations in the Deep Sea


Epizoanthus martinsae 
Carreiro-Silva, Ocaña, Stanković, Sampaio, Porteiro, Fabri & Stefanni, 2017 

 
Zoantharians are a group of cnidarians that are often found in association with marine invertebrates, including corals, in shallow and deep-sea environments. However, little is known about deep-sea zoantharian taxonomy, specificity and nature of their associations with their coral hosts. In this study, analyses of molecular data (mtDNA COI, 16S, and 12S rDNA) coupled with ecological and morphological characteristics were used to examine zoantharian specimens associated with cold-water corals (CWC) at depths between 110 and 800 m from seamounts and island slopes in the Azores region. The zoantharians examined were found living in association with stylasterids, antipatharians and octocorals. From the collected specimens, four new species were identified: (1) Epizoanthus martinsae sp. n. associated with the antipatharian Leiopathes sp.; (2) Parazoanthus aliceae sp. n. associated with the stylasterid Errina dabneyi (Pourtalès, 1871); (3) Zibrowius alberti sp. n. associated with octocorals of the family Primnoidae [Paracalyptrophora josephinae (Lindström, 1877)] and the family Plexauridae (Dentomuricea aff. meteor Grasshoff, 1977); (4) Hurlizoanthus hirondelleae sp. n. associated with the primnoid octocoral Candidella imbricata (Johnson, 1862). In addition, based on newly collected material, morphological and molecular data and phylogenic reconstruction, the zoantharian Isozoanthus primnoidus Carreiro-Silva, Braga-Henriques, Sampaio, de Matos, Porteiro & Ocaña, 2011, associated with the primnoid octocoral Callogorgia verticillata (Pallas, 1766), was reclassified as Zibrowius primnoidus comb. nov. The zoantharians, Z. primnoidus comb. nov., Z. alberti sp. n., and H. hirondelleae sp. n. associated with octocorals showed evidence of a parasitic relationship, where the zoantharian progressively eliminates gorgonian tissue and uses the gorgonian axis for structure and support, and coral sclerites for protection. In contrast, the zoantharian P. aliceae sp. n. associated with the stylasterid E. dabneyi and the zoantharian E. martinsae sp. n. associated with the antipatharian Leiopathes sp., appear to use the coral host only as support with no visible damage to the host. The monophyly of octocoral-associated zoantharians suggests that substrate specificity is tightly linked to the evolution of zoantharians.

Keywords: antipatharians, gorgonians, molecular taxonomy, parasitic, phylogeny, stylasterids, Zoantharia

Systematics 
Phylum Cnidaria Hatschek, 1888 
Class Anthozoa Ehrenberg, 1831 
Subclass Hexacorallia Haeckel, 1896 
Order Zoantharia Gray, 1832 
Suborder Macrocnemina Haddon and Shackleton, 1891 
 
Family Parazoanthidae Delage and Hérouard, 1901 
 
Genus Zibrowius Sinniger, Ocaña & Baco, 2013

Zibrowius primnoidus comb. nov.

Zibrowius alberti sp. n. 

Etymology: This species name is dedicated to Prince Albert I of Monaco for his promotion of the oceanographic sciences in the late 19th to early 20th centuries, and for his oceanographic campaigns in the Azores which contributed to the increased knowledge of CWCs and associated fauna in the region.


Genus Hurlizoanthus Sinniger, Ocaña & Baco, 2013 

Hurlizoanthus hirondelleae sp. n.  

Etymology This species name is dedicated to the research yacht Hirondelle used by Prince Albert I of Monaco during his oceanographic campaigns in the Azores.

Genus Parazoanthus Haddon and Shackleton, 1891
 
Parazoanthus aliceae sp.n.  

Etymology This species name is dedicated to another research yacht of Prince Albert I of Monaco, Princess Alice, used during his oceanographic campaigns in the Azores, and during which the homonymous seamount was discovered.

 
associated zoantharian Epizoanthus martinsae sp. n.
Specimen DOP-3609 (Holotype). 

Family Epizoanthidae Delage and Hérouard, 1901

Genus Epizoanthus Gray, 1867
 
Epizoanthus martinsae sp. n.   

Etymology
The name of this species is dedicated to Dr. Helen Martins, researcher at the Department of Oceanography and Fisheries of the University of the Azores for her contribution to the advancement of marine science in the Azores through her research and dedication to the Azorean scientific journal Arquipélago.


Marina Carreiro-Silva, Oscar Ocaña, David Stanković, Íris Sampaio, Filipe M. Porteiro\, Marie-Claire Fabri and Sergio Stefanni. 2017. Zoantharians (Hexacorallia: Zoantharia) Associated with Cold-Water Corals in the Azores Region: New Species and Associations in the Deep Sea. Front. Mar. Sci.  4:88. DOI:  10.3389/fmars.2017.00088 

Wednesday, August 19, 2020

[Cnidaria • 2020] Blastopathes medusa • A New Genus and Species of Black Coral (Anthozoa: Hexacorallia: Antipatharia: Antipathidae) from Papua New Guinea


Blastopathes medusa 
Horowitz, Brugler, Bridge & Cowman, 2020


Abstract
Blastopathes medusa gen. nov., sp. nov., is described from Kimbe Bay, Papua New Guinea, based on morphological and molecular data. Blastopathes, assigned to the Antipathidae, is a large, mythology-inspiring black coral characterized by clusters of elongate stem-like branches that extend out at their base and then curve upward. Colonies are not pinnulate and contain single branches, which could represent new branch cluster formations. Morphological and molecular (mitochondrial DNA and targeted capture of nuclear loci) evidence supporting the establishment of a new genus is discussed. This is the first study to utilize the target capture of ultraconserved elements (UCEs) and exonic loci to elucidate phylogenetic relationships among black corals and to identify and place a new genus and species.

Keywords: taxonomy, systematics, ultraconserved elements, targeted capture, igrN, phylogeny, Kimbe Bay

FIGURE 2. Comparison A-B, branching characteristics of Allopathes denhartogi and Blastopathes medusa (A from A. denhartogi holotype RMNH Coel. 31293, B from Blastopathes medusa holotype MTQ G74904); comparison C-D, spine characteristics of A. denhartogi and B. medusa (C from A. denhartogi schizoholotype USNM 1014577, D from B. medusa holotype MTQ G74904).



FIGURE 5. Blastopathes medusa holotype (MTQ G74904):
A, branch cluster on stem; B, branch cluster on branch; C, branchlet on branch.

FIGURE 8. Blastopathes medusa paratypes:
A-C, in-situ images of colonies showing branch clusters (A from paratype MTQ G74911; B from paratype NMAG 1893; C from paratype MTQ G74913); D, paratype (MTQ G74912): section of terminal branch showing eight rows of compressed spines; E, paratype (NMAG 1893): section of branch showing polyp density and tentacle lengths.

 


Jeremy Horowitz, Mercer R. Brugler, Tom C.L. Bridge and Peter F. Cowman. 2020. Morphological and Molecular Description of A New Genus and Species of Black Coral (Cnidaria: Anthozoa: Hexacorallia: Antipatharia: Antipathidae: Blastopathes) from Papua New Guinea. Zootaxa. 4821(3); 553–569. DOI: 10.11646/zootaxa.4821.3.7


Monday, August 10, 2020

[Cnidaria • 2020] Shallow-water Black Corals (Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar


 Arachnopathes ericoides (Pallas, 1766)  
Cirrhipathes anguina (Dana, 1846) 
Antipathes lentipinna Brook, 1889

in Terrana, Bo, Opresko & Eeckhaut, 2020. 


Abstract

Antipatharians, also known as black corals, represent a small group of anthozoan hexacorallians found in all oceans of the world. They are generally considered a deep-water taxon; however, some of the most diverse communities are known from tropical shallow waters. With a few poorly detailed exceptions, shallow-water black corals from the Indian Ocean and especially those from Madagascar are mostly unknown. In this study, we report for the first time a highly diverse black coral assemblage of the Western Indian Ocean thriving in shallow waters and upper mesophotic depths (10–52 m depth) along the SW coast of Madagascar. A total of 22 species belonging to six genera (Antipathes, Arachnopathes, Cirrhipathes, Cupressopathes, Myriopathes and Stichopathes) and two families (Antipathidae and Myriopathidae) are described, of which 20 are found in the northern pass of the Great Reef of Toliara, thus representing the most diverse site of the areas investigated. Most of the shallow-water species from the Indian Ocean were originally described more than a century ago, sometimes without being reported again until now. All the descriptions herein rely solely on morphology and include detailed in situ pictures and scanning electron microscope images, in addition to range expansions for many species.

Keywords: Animalia, Antipathidae, Myriopathidae, Indian Ocean, taxonomy, Toliara 


Antipathes lentipinna Brook, 1889 specimen INV.131337. (a) Entire colony in situ. (b) Detailed view of the branching pattern in situ. (c) Detailed view of the contracted and expanded polyps in situ.
Antipathes cf. pseudodichotoma Silberfeld, 1909 specimen INV.131364. (a, b) Entire colony measuring about 25 cm in height.
Antipathes cf. virgata sensu Esper, 1788 specimen INV.131349. (a) Entire colony. (b­–c) Close-up views of the branching pattern and the polyps.



Family Antipathidae Ehrenberg, 1834

Genus Antipathes Pallas, 1766

Antipathes flabellum Pallas, 1766
Antipathes hypnoides (Brook, 1889)
Antipathes cf. pseudodichotoma Silberfeld, 1909
Antipathes cf. virgata Esper, 1788 

Genus Arachnopathes Milne Edwards, 1857 

Arachnopathes ericoides (Pallas, 1766) 

Genus Cirrhipathes de Blainville, 1834

Cirrhipathes anguina (Dana, 1846)
Cirrhipathes densiflora Silberfeld, 1909
Cirrhipathes cf. indica Summers, 1910
Cirrhipathes rumphii van Pesch, 1910
Cirrhipathes cf. spiralis (Linnaeus, 1758) 

Genus Stichopathes Brook, 1889

Stichopathes cf. diversa (Brook, 1889)
Stichopathes cf. maldivensis Forster Cooper, 1903 


 Arachnopathes ericoides (Pallas, 1766) specimen INV.131342. (a) In situ colony in lateral view. (b) The same colony seen from above. (c) Close-up view of the branchlets on a distal branch.
Cirrhipathes anguina (Dana, 1846) (a–h) In situ pictures showing the wide range of phenotypes that the species can present (a—INV.131378; b—INV.131369; c—INV.131373; d—INV.131379; e—INV.131360; f—INV.131359; g— INV.131362; h—INV.131363). All these phenotypes have the same spine morphology.
Myriopathes cf. stechowi (Pax, 1932) INV.131335. (a) Entire colony in situ. (b) Close-up view of the branching pattern in situ. (c) Detailed view of the pinnulation.


Family Myriopathidae Opresko, 2001

Genus Myriopathes Opresko, 2001 

Myriopathes cf. myriophylla (Pallas, 1766) 
Myriopathes cf. stechowi (Pax, 1932) 
Myriopathes cf. ulex (Ellis & Solander, 1786) 

Genus Cupressopathes Opresko, 2001 

Cupressopathes abies (Linnaeus, 1758)
Cupressopathes cf. pumila (Brook, 1889) 


Lucas Terrana, Marzia Bo, Dennis M. Opresko and Igor Eeckhaut. 2020. Shallow-water Black Corals (Cnidaria: Anthozoa: Hexacorallia: Antipatharia) from SW Madagascar. Zootaxa. 4826(1); 1-62. DOI: 10.11646/zootaxa.4826.1.1


Monday, August 3, 2020

[Cnidaria • 2020] Distichopathes hickersonae • A New Species of Black Coral (Anthozoa: Hexacorallia: Aphanipathidae: Distichopathes) from Elvers Bank, north-western Gulf of Mexico


Distichopathes hickersonae Opresko & Brugler

in Opresko, Goldman, Johnson, ... et Brugler, 2020. 

Abstract
The continental shelf edge of the NW Gulf of Mexico supports dozens of reefs and banks, including the West and East Flower Garden Banks (FGB) and Stetson Bank that comprise the Flower Garden Banks National Marine Sanctuary (FGBNMS). Discovered by fishermen in the early 1900s, the FGBs are named after the colourful corals, sponges and algae that dominate the region. The reefs and banks are the surface expression of underlying salt domes and provide important habitat for mesophotic coral ecosystems (MCE) and deep coral communities to 300 m depth. Since 2001, FGBNMS research teams have utilized remotely operated vehicles (e.g. ‘Phantom S2’, ‘Mohawk’, ‘Yogi’) to survey and characterize benthic habitats of this region. In 2016, a Draft Environmental Impact Statement proposed the expansion of the current sanctuary boundaries to incorporate an additional 15 reefs and banks, including Elvers Bank. Antipatharians (black corals) were collected within the proposed expansion sites and analysed using morphological and molecular methods. A new species, Distichopathes hickersonae, collected at 172 m depth on Elvers Bank, is described within the family Aphanipathidae. This brings the total number of black coral species in and around the sanctuary to 14.

Keywords: Distichopathes, DNA barcoding, Flower Garden Banks National Marine Sanctuary, mesophotic coral ecosystem, scanning electron microscopytaxonomy

Fig. 2. Distichopathes hickersonae sp. nov., colony photographed in situ, at 172 m on Elvers Bank (specimen not collected).

Systematics
Order ANTIPATHARIA Milne-Edwards & Haime, 1857

Family APHANIPATHIDAE Opresko, 2004

Diagnosis: Corallum sparsely to densely branched (i.e. bramble-like, bushy, broom-like or fan-shaped), or pinnulated with simple pinnules arranged in two or more rows. Spines conical; usually covered to varying degrees with conical tubercles, but may be smooth; apex of spines simple (acute or rounded), occasionally bifurcated. Polyps 0.6–3 mm in transverse diameter.


Genus Distichopathes Opresko, 2004
Antipathes, de Pourtalès, 1867: 112, 1871: 54, 1880: 118 (in part); van Pesch, 1914: 85 (in part, as subgenus Aphanipathes).
Aphanipathes Brook, 1889: 121 (in part); Opresko, 1972: 993 (in part).
Distichopathes Opresko, 2004: 235–237.

Diagnosis: Corallum monopodial, unbranched, or sparsely to densely branched; tending to be planar with overlapping branches. Stem and branches pinnulate. Pinnules simple, not subpinnulate; arranged primarily in two lateral rows, but with simple short pinnules occurring very rarely on the abpolypar side of the axis. Pinnules also arranged alternately along the stem and branches.

Type species: Distichopathes disticha Opresko, 2004.

Species assigned to DistichopathesThree species are currently assigned to the genus, D. filix (de Pourtalès, 1867), D. disticha Opresko, 2004, and D. hickersonae sp. nov.

Distribution: Species of Distichopathes are known only from the North-western Atlantic.


Fig. 3. Distichopathes hickersonae sp. nov.
 
(A) In-situ photo of holotype (USNM 1517703); (B) laboratory photo of holotype;
 (C) In-situ photo of paratype (USNM 1548274); (D) laboratory photo of paratype; (E) upper section of two branches of the paratype.

Distichopathes hickersonae sp. nov. Opresko & Brugler

Diagnosis: Corallum densely branched, branches tending to lie in one plane. Stem and branches with simple bilateral pinnules. Pinnules up to 2 cm long and 0.3 mm in diameter at their base; arranged in two very regular bilateral rows, with pinnules in each row alternating with those in opposite row. Small simple pinnules occurring very rarely on the abpolypar side of the axis. Spines anisomorphic: circumpolypar spines 0.26–0.35 mm tall, interpolypar spines 0.2–0.25 mm, the hypostomal spines 0.1–0.14 mm, and the abpolypar spines 0.1–0.18 mm. Polyps small, 0.65–0.8 mm in transverse diameter and are placed in a single series on one side of the pinnules, with 8–10 polyps per cm.

Etymology: Named in recognition of Emma L. Hickerson (NOAA's FGBNMS Research Coordinator). Since 2005, Emma has generously been inviting co-authors DMO and MRB, as well as underrepresented minority undergraduates from CUNY, to the FGBNMS to survey and collect black corals. These research cruises aboard the MV ‘Spree’ and RV ‘Manta’ have resulted in the discovery of a number of new species of antipatharian corals.

Distribution: Known only from the north-western Gulf of Mexico at 172 m depth.


Dennis M. Opresko, Samantha L. Goldman, Raven Johnson, Katherine Parra, Marissa Nuttall, G.P. Schmahl and Mercer R. Brugler. 2020. Morphological and Molecular Characterization of A New Species of Black Coral from Elvers Bank, north-western Gulf of Mexico (Cnidaria: Anthozoa: Hexacorallia: Antipatharia: Aphanipathidae: Distichopathes). Journal of the Marine Biological Association of the United Kingdom. 100(4); 559-566. DOI: 10.1017/S002531542000051X 


Monday, December 23, 2019

[Cnidaria • 2019] A Molecular Phylogeny of Carcinoecium-forming Epizoanthus (Hexacorallia: Zoantharia) from the Western Pacific Ocean with Descriptions of Three New Species; Epizoanthus xenomorphoideus, E. australis & E. gorgonus


 Epizoanthus xenomorphoideus
Kise, Montenegro, Ekins, et al., 2019. 


Abstract
Many cnidarians have been reported in association with hermit crabs from shallow waters to the deep sea. Some of these actiniarians and zoantharians produce a carcinoecium, a chitin-like pseudo-shell. Many studies have been conducted on hermit crab–actiniarian symbioses, while hermit crab–zoantharian symbioses have received less attention due to the difficulty of specimen collection as they are exclusively found in the deep sea. In this study, 11 carcinoecium-forming specimens associated with hermit crabs of several genera were collected from the western Pacific Ocean. We formally described the collected specimens as Epizoanthus xenomorphoideus sp. nov., E. australis sp. nov., and E. gorgonus sp. nov. based on results of molecular phylogenetic analyses (COI, mt 12S-rDNA, mt 16S-rDNA, 18S-rDNA, ITS-rDNA) and morphological observations. Our phylogenetic results showed that there are two different subclades within a carcinoecium clade, and these subclades have different external morphologies. Further studies with more taxon sampling will enable a more comprehensive evaluation of the evolution and phylogenetic relationships of carcinoecium-forming zoantharian species.


Key words: deep sea, diversity, hermit crab, pseudo-shell, sea anemone, zoantharian

Systematics: 
Order Zoantharia Rafinesque, 1815
Suborder Macrocnemina Haddon & Shackleton, 1891
Family Epizoanthidae Delage & H erouard, 1901

Genus Epizoanthus Gray, 1867

Type species: Dysidea papillosa Johnston, 1842, by monotypy 
(see also Opinion 1689, ICZN 1992).

  Epizoanthus xenomorphoideus sp. nov. (holotype: NSMT-Co 1688),
A carcinoecium colony inhabited by a Parapaguridae hermit crab.

Epizoanthus xenomorphoideus sp. nov. (holotype: NSMT-Co 1688).
(1) living carcinoecium colony from the dorsal side, (2) living carcinoecium colony from the marginal side, (3) living carcinoecium colony from the ventral side.
 DP, dorsal polyp; MP, marginal polyp; VP, ventral polyp.
 Scale: (1-3) 20 mm.

Epizoanthus xenomorphoideus sp. nov. 

Etymology: The new species is named after a fictional alien xenomorph creature in the famous 1979 movie Alien, as this species resembles the ‘face hugger’ xenomorph. ‘Xenomorph’ is combined with the Latin word ‘oideus’ meaning ‘resembling’. 
Japanese common name: Yadokari-sunaginchaku


Epizoanthus australis sp. nov.

Etymology: 'Australis' is the Latin word 'southern', as this species was first discovered in waters off New South Wales, off south-eastern Australia. 
Japanese common name: Kanmuri-yadokari-sunaginchaku


Epizoanthus gorgonus sp. nov.

Etymology: From the Greek word 'gorgon', the monster Medusa with multiple snake heads, as the marginal polyps and their colouration are reminiscent of vipers. 
Japanese common name: Beni-yadokari-sunaginchaku 


Hiroki Kise, Javier Montenegro, Merrick Ekins, Takeya Moritaki and James Davis Reimer. 2019. A Molecular Phylogeny of Carcinoecium-forming Epizoanthus (Hexacorallia: Zoantharia) from the Western Pacific Ocean with Descriptions of Three New Species. Systematics and Biodiversity.  DOI: 10.1080/14772000.2019.1693439
Researchgate.net/publication/337932019_A_molecular_phylogeny_of_Epizoanthus

Zoantharia coral raised at west Japan aquarium recognized as new species - The Mainichi mainichi.jp/english/articles/20191220/p2a/00m/0na/027000c