Results 201 to 210 of about 21,297 (256)
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Digital light microscopy to characterize the scales of two goatfishes (Perciformes; Mullidae)

Microscopy research and technique (Print), 2020
The normal and lateral line scales from above the head and four flank regions were investigated in two goatfishes by using light microscopy to evaluate the microscopic characteristics of scale surface ornamentation from different body parts of these ...
N. Sabbah, A. Teimori, M. Hesni
semanticscholar   +1 more source

Comparative pathological description of nocardiosis in largemouth bass (Micropterus salmoides) and other Perciformes

, 2020
As a major cultured species of Perciformes, Micropterus salmoides has become an important commercial fish in China. However, Nocardia sp. has struck the M. salmoides production and caused the morbidity of more than 70%.
Xiaoli Huang   +10 more
semanticscholar   +1 more source

Morphological and molecular study of Neorhadinorhynchus nudus (Harada, 1938) (Acanthocephala: Cavisomidae) from Auxis thazard Lacepede (Perciformes: Scombridae) in the South China Sea

Acta Parasitologica, 2018
In the present study, Neorhadinorhynchus nudus (Harada, 1938) is reported from the frigate tuna Auxis thazard (Lacepède) (Perciformes: Scombridae), in the South China Sea for the first time. The detailed morphology of N. nudus was studied using light and
Liang Li, Hui-Xia Chen, Yue Yang
semanticscholar   +1 more source

Iron in the Enameloid of Perciform Fish

Journal of Dental Research, 1992
It is known that a high concentration of iron is deposited in the enameloid of some teleostean fish. Previously, Suga et al. (1989) pointed out that the iron concentration in the enameloid is related to the phylogeny of fish rather than to the feeding habits, according to the results of quantitative iron analyses on the teeth of marine teleost fish of ...
S, Suga, Y, Taki, M, Ogawa
openaire   +2 more sources

Vitellogenin diversity in the perciformes

Journal of Experimental Zoology, 1992
AbstractVitellogenin variation was studied in 11 species of Perciformes encompassing the families Cichlidae, Serranidae, Lutjanidae, Centropomidae, and Eleotrididae. Despite the enormous morphological and ecological diversity that characterizes this order of teleosts, northern blot analysis revealed that the Oreochromis aureus vitellogenin gene probe ...
K. B. H. Lee   +3 more
openaire   +1 more source

Phylogenetic position of the family Trichodontidae (Teleostei: Perciformes), with a revised classification of the perciform suborder Cottoidei

Ichthyological Research, 2005
The phylogenetic relationships of the family Trichodontidae and suborder Cottoidei (and zoarcoid Bathymasteridae) are reconstructed morphologically. The monophyly of the Trichodontidae, Cottoidei, and Zoarcoidei is unambiguously supported by 14 synapomorphies, including 1 newly recognized (and also 4 synapomorphies when ACCTRAN is accepted).
Hisashi Imamura   +2 more
openaire   +1 more source

Cytotaxonomical consideration of the genusBlennius (pisces-perciformes)

Experientia, 1975
E stato descritto il cariotipo di 7 specie di Blennidi Mediterranei appartenenti al generaBlennius L.:B. sanguinolentus, B. pavo, B. sphinx, B. trigloides, B. canevae, B. fluviatilis eB. incognitus. Il numero diploide di tutte le specie e 2n=48 tuttavia la morfologia del cariotipo presenta alcune differenze tra le specie;Blennius trigloides si ...
S, Cataudella, M V, Civitelli
openaire   +2 more sources

A revision of the Emmelichthyidae (Pisces : Perciformes)

Australian Journal of Marine and Freshwater Research, 1977
The marine fish family Emmelichthyidae is redefined to include only the genera Emmelichthys (four species), Erythrocles (four species) and Plagiogeneion (two species). Two new species of Emmelichthys from the Pacific Ocean are described. Emmelichthys nitidus Richardson is divided into two subspecies: E.
PC Heemstra, JE Randall
openaire   +1 more source

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2014
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openaire   +2 more sources

The Perciform Caudal Skeleton

Copeia, 1961
primarily one of progressive simplification from an original complex of rather numerous independent bones (e.g., in Elops, Hollister, 1936:261, fig. 14). This progressive simplification has occurred independently in a large number of lineages both within and below the perciform level of structural organization.
openaire   +1 more source

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