Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Cryptic species, life cycles, and the phylogeny of Clytia (Cnidaria: Hydrozoa: Campanulariidae)

View through CrossRef
Medusae and polyps of Clytia are abundantly found in coastal marine environments and one species in the genus—Clytia hemisphaerica (Linnaeus, 1767)—has become an important experimental model. Yet, only 10 species in the genus have had their life cycle investigated. Most species of Clytia are also poorly described, and detailed life cycle and morphological studies are needed for accurate species-level identifications. Here, we investigated the life cycle of Clytia elsaeoswaldae Stechow, 1914, a species described for the tropical western Atlantic and subsequently considered conspecific to the nearly-cosmopolitan species Clytia gracilis (Sars, 1850) and Clytia hemisphaerica, originally described for the temperate North Atlantic. Based on observations of mature medusae and multiple colonies from southeastern Brazil and the U. S. Virgin Islands (type locality), our results show that C. elsaeoswaldae is morphologically distinct from C. gracilis and C. hemisphaerica. The morphological results are corroborated by a multigene phylogenetic analysis of the genus Clytia, which shows that C. gracilis-like species form a polyphyletic group of several species. These results suggest that the nearly-cosmopolitan distribution attributed to some species of Clytia may be due to the non-recognition of morphologically similar species with more restricted ranges.
Title: Cryptic species, life cycles, and the phylogeny of Clytia (Cnidaria: Hydrozoa: Campanulariidae)
Description:
Medusae and polyps of Clytia are abundantly found in coastal marine environments and one species in the genus—Clytia hemisphaerica (Linnaeus, 1767)—has become an important experimental model.
Yet, only 10 species in the genus have had their life cycle investigated.
Most species of Clytia are also poorly described, and detailed life cycle and morphological studies are needed for accurate species-level identifications.
Here, we investigated the life cycle of Clytia elsaeoswaldae Stechow, 1914, a species described for the tropical western Atlantic and subsequently considered conspecific to the nearly-cosmopolitan species Clytia gracilis (Sars, 1850) and Clytia hemisphaerica, originally described for the temperate North Atlantic.
Based on observations of mature medusae and multiple colonies from southeastern Brazil and the U.
S.
Virgin Islands (type locality), our results show that C.
elsaeoswaldae is morphologically distinct from C.
gracilis and C.
hemisphaerica.
The morphological results are corroborated by a multigene phylogenetic analysis of the genus Clytia, which shows that C.
gracilis-like species form a polyphyletic group of several species.
These results suggest that the nearly-cosmopolitan distribution attributed to some species of Clytia may be due to the non-recognition of morphologically similar species with more restricted ranges.

Related Results

Comparison of cell types across life cycle stages of the hydrozoan Clytia hemisphaerica
Comparison of cell types across life cycle stages of the hydrozoan Clytia hemisphaerica
Comparaison des types de cellules entre les stades de vie de l'hydrozoaire clytia hemisphaerica L'Hydrozoaire Clytia hemisphaerica présente un cycle de vie triphasi...
Light-induced oocyte maturation in the hydrozoan clytia hemisphaerica
Light-induced oocyte maturation in the hydrozoan clytia hemisphaerica
Régulation de la maturation ovocytaire par la lumière chez l'hydrozoaire clytia hemisphaerica Un contrôle précis de la maturation ovocytaire et de la ponte sont ess...
Small Glycols Discover Cryptic Pockets on Proteins for Fragment-based Approaches
Small Glycols Discover Cryptic Pockets on Proteins for Fragment-based Approaches
Abstract Cryptic pockets are visible in ligand-bound protein structures but are occluded in unbound structures. Utilizing these pockets in fragment-based drug-desig...
The new Checklist of the Italian Fauna: Hydrozoa (Cnidaria)
The new Checklist of the Italian Fauna: Hydrozoa (Cnidaria)
The hydrozoan fauna of the Mediterranean Sea is considered as the best-known fauna of this class in the world, and the last monograph covers 457 species representing about 12% of t...
Unravel the Different Begomoviruses, DNA Satellites and Cryptic Species of Bemisia Tabaci and Their Endosymbionts in Vegetable Ecosystem
Unravel the Different Begomoviruses, DNA Satellites and Cryptic Species of Bemisia Tabaci and Their Endosymbionts in Vegetable Ecosystem
Bemisia tabaci species complex contains more than 46 cryptic species causes’ significant yield loss in many cultivated crops. The pest is also vector more than 100 species of bego...
Shallow water hydroids (Cnidaria, Hydrozoa) from the 2002 NOWRAMP cruise to the Northwestern Hawaiian Islands
Shallow water hydroids (Cnidaria, Hydrozoa) from the 2002 NOWRAMP cruise to the Northwestern Hawaiian Islands
Forty-two species of hydroids, excluding stylasterids, are reported in the present collection from the Northwestern Hawaiian Islands. Of these, four are anthoathecates and 38 are l...
Cryptic diversity impacts model selection and macroevolutionary inferences in diversification analyses
Cryptic diversity impacts model selection and macroevolutionary inferences in diversification analyses
Species persist in landscapes through ecological dynamics but proliferate at wider spatial scales through evolutionary mechanisms. Disentangling the contribution of each dynamic is...
Meiobenthic Invertebrates Community Associated with Aquatic plant Ceratophyllum demersum Salamiyat irrigation canal / north Baghdad
Meiobenthic Invertebrates Community Associated with Aquatic plant Ceratophyllum demersum Salamiyat irrigation canal / north Baghdad
The aim of the present study is to study the meiobenthic invertebrate's community associated with the aquatic plant Ceratophyllum demersum in Al-Salamiyat irrigation canal / north ...

Back to Top