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《Journal of Natural History》2012,46(20):2533-2545
The commensal hydroid Eutima sapinhoa Narchi and Hebling, 1975 Narchi, W and Hebling, N. 1975. The life cycle of the commensal Hydromedusa Eutima sapinhoa n. sp. Marine Biology, 30: 7378. [Crossref] [Google Scholar] lives attached to the mantle, gills, labial palps and foot of the bivalve Tivela mactroides. The solitary polyps bud off medusae that become free, leaving the host through the exhalant water current. Newly liberated medusae were cultivated in the laboratory, attaining 7.8?mm in bell height, 13.3?mm in diameter and having eight marginal tentacles, while developing the typical eutimid medusa characters of a long peduncle, four radial canals and marginal statocysts with many statoliths. Eutima sp., previously reported from Florida, USA, is probably referable to Eutima sapinhoa. Like the other bivalve-inhabiting species of Eutima [E. ostrearum (Mattox and Crowell, 1951 Mattox, N. T and Crowell, S. 1951. A new commensal hydroid of the mantle cavity of an oyster. Biological Bulletin, 101: 162170. [Crossref] [Google Scholar]) and Eutima sp.] from the Atlantic Ocean, Eutima sapinhoa has no trace of marginal cirri, thereby differing from the eutimid medusae of the Pacific Ocean.  相似文献   

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《Journal of Natural History》2012,46(27-28):1723-1744
Hepsetus cuvieri (Castelnau, 1861 Castelnau, FL. 1861. Mémoire sur les poissons de l'Afrique australe, Paris: Mem Poiss Afr Australe. [Crossref] [Google Scholar]), originally described from “lac N'gami” (Botswana) and synonymized with H. odoe (Bloch, 1794 Bloch, ME. 1794. Naturgeschichte der ausländischen Fische. Berlin., 8: 1174.  [Google Scholar]) by Roberts (1984 Roberts, TR. 1984. “Hepsetidae”. In Check-list of the freshwater fishes of Africa (CLOFFA), Edited by: Daget, J, Gosse, JP and Thys van den Audenaerde, DFE. 138139. Tervuren and Paris: ORSTOM. p.  [Google Scholar]), is revalidated. Hepsetus cuvieri can be readily distinguished from H. odoe based on a lower total number of gill rakers (8–13 versus 14–21); a generally higher number of scales between the dorsal fin and the lateral line (10½–11½ versus 7½–10½) and a higher number of scales between the adipose fin and the lateral line (6½–7½ versus 4½–6½) and other characters. A neotype is designated, as the holotype of this nominal species is apparently lost. Hepsetus cuvieri is restricted to the Quanza, Zambezi ichthyofaunal provinces and the southern part of the Congo Basin, i.e. the Congo ichthyofaunal province.  相似文献   

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《Journal of Natural History》2012,46(20):2547-2566
Hesiospina Imajima and Hartman, 1964 Imajima, M and Hartman, O. 1964. The polychaetous annelids of Japan. Part 1. Allan Hancock Foundation Publications, Occasional Paper, 26: 1166.  [Google Scholar] (Psamathini, Hesionidae, Polychaeta) is revised based on examination of all available types, other museum specimens and a large number of newly collected specimens from world-wide areas. Two species are recognized and redescribed, Hesiospina aurantiaca (Sars, 1862 Sars, M. 1862. Uddrag af en af detaillerade Afbildningar ledsaget udførlig Beskrivelse over følgende Norske Annelider. Forhandlinger i Videnskabsselskabet i Kristiania, 1862: 8795.  [Google Scholar]), new combination, and H. vestimentifera Blake, 1985 Blake, J. A. 1985. Polychaeta from the vicinity of deep-sea geothermal vents in the eastern Pacific. I. Euphrosinidae, Phyllodocidae, Hesionidae, Nereididae, Glyceridae, Dorvilleidae, Orbiniidae, and Maldanidae. Bulletin of the Biological Society of Washington, 6: 67101.  [Google Scholar]. The currently used name Hesiospina similis (Hessle, 1925 Hessle, C. 1925. Einiges über die Hesioniden und die Stellung der Gattung Ancistrosyllis. Arkiv för Zoologi, 17: 136.  [Google Scholar]) is treated as a junior synonym of both Hesiospina aurantiaca and Castalia longicornis Sars, 1862 Sars, M. 1862. Uddrag af en af detaillerade Afbildningar ledsaget udførlig Beskrivelse over følgende Norske Annelider. Forhandlinger i Videnskabsselskabet i Kristiania, 1862: 8795.  [Google Scholar]. A lectotype is designated for H. aurantiaca, and the same specimen is used as neotype for C. longicornis, making the two objective synonyms. Hesiospina aurantiaca is widely distributed and recorded from the Caribbean, Gulf of Mexico, European Atlantic and Mediterranean waters, Japan, Papua New Guinea, the Great Barrier Reef, and New Caledonia, mainly from shallow waters, but down to over 500?m depth. Whereas there are some differences between populations from different regions, including distribution of uni- and bidentate chaetae, the different populations are not characterized by any obvious apomorphies and are treated as a single species. Hesiospina vestimentifera is associated with hydrothermal vents and is widely distributed in the east Pacific.  相似文献   

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《Journal of Natural History》2012,46(25-26):1573-1613
Proserpinicaris young sp. nov., Proserpinicaris wangpi sp. nov. and Proserpinicaris imjin sp. nov. are described from subterranean waters of South Korea. They are short-range endemics, allopatric in distribution and closely related to each other, and to two other Far Eastern congeners. Distinguishing features are limited to the general habitus shape, proportions of the caudal rami and degree of sexual dimorphism. The genus Proserpinicaris Jakobi, 1972 Jakobi, H. 1972. Trends (Enp.P4 Mänchen) innerhalb der Parastenocarididen (Copepoda Harpacticoidea). Crustaceana, 22: 127146. [Crossref] [Google Scholar], as redefined here, is Palaearctic in distribution, with the centre of diversity in southern Europe, and 20 valid members, all of which share a large hyaline spiniform structure on the male fourth leg basis as a synapomorphy. A key to species is provided. Genera Niponnicaris Jakobi, 1972 Jakobi, H. 1972. Trends (Enp.P4 Mänchen) innerhalb der Parastenocarididen (Copepoda Harpacticoidea). Crustaceana, 22: 127146. [Crossref] [Google Scholar] and Pannonicaris Jakobi, 1972 Jakobi, H. 1972. Trends (Enp.P4 Mänchen) innerhalb der Parastenocarididen (Copepoda Harpacticoidea). Crustaceana, 22: 127146. [Crossref] [Google Scholar] are established as its junior subjective synonyms, Lacustricaris Jakobi, 1972 Jakobi, H. 1972. Trends (Enp.P4 Mänchen) innerhalb der Parastenocarididen (Copepoda Harpacticoidea). Crustaceana, 22: 127146. [Crossref] [Google Scholar] is formally synonymized with Parastenocaris Kessler, 1913, and Parastenocaris lacustris Chappuis, 1958 Chappuis, PA. 1958. Le genre Parastenocaris Kessler. Vie Milieu, 8: 423432.  [Google Scholar] is designated as incertae sedis in Fontinalicaridinae Schminke, 2010 Schminke, HK. 2010. High-level phylogenetic relationships within Parastenocarididae (Copepoda, Harpacticoida). Crustaceana, 83: 343367. [Crossref], [Web of Science ®] [Google Scholar].  相似文献   

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《Journal of Natural History》2012,46(21-24):1301-1311
The Australian members of the subgenus, Sinella (Coecobrya) Yosii, are revised. A new species from Western Australia, Queensland, and the Northern Territory, Sinella (Coecobrya) tropicalis sp. nov., is described, Sinella (Coecobrya) tenebricosa Folsom, 1902 is recorded from Australia for the first time, and new records of Sinella (Coecobrya) communis Chen and Christiansen, 1997 Chen, J‐X. and Christiansen, K. A. 1997. Subgenus Coecobrya of the genus Sinella (Collembola: Entomobryidae) with special reference to the species of China.. Annals of the American Society of Entomology, 90: 119.  [Google Scholar] are documented. Sinella (Coecobrya) caeca Schött, 1896 is considered a dubious record from Australia. A key is provided to the three known Australian species and a summary given of all dorsal and lateral chaetal patterns found on the fourth abdominal segment of subgenera Sinella Brook, 1882 Brook, G. 1882. On a new genus of Collembola (Sinella) allied to Degeeria Nicolet.. Journal of the Linnean Society of London (Zoology), 16: 541545.  [Google Scholar] and Coecobrya Yosii, 1956 Yosii, R. 1956. Hohlencollembolen Japans II.. Japanese Journal of Zoology, 11(5): 609627.  [Google Scholar]. The biogeography of the subgenus is described.  相似文献   

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