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《Journal of Natural History》2012,46(43-44):2639-2664
Four new species of the genus Calamotropha Zeller are described from China: Calamotropha duofurcata sp. nov., Calamotropha abrupta sp. nov., Calamotropha aequilata sp. nov. and Calamotropha unispinea sp. nov. Three species are redescribed: Calamotropha formosella Bleszynski, 1961 Bleszynski, S. 1961. Revision of the World species of the Family Crambidae (Lepidoptera). Part I. Genus Calamotropha Zell. Acta Zool Cracov., 6(7): 137272. pls. 20–71 [Google Scholar], Calamotropha josettae Bleszynski, 1961 Bleszynski, S. 1961. Revision of the World species of the Family Crambidae (Lepidoptera). Part I. Genus Calamotropha Zell. Acta Zool Cracov., 6(7): 137272. pls. 20–71 [Google Scholar] and Calamotropha melli (Caradja and Meyrick, 1933 Caradja, A and Meyrick, E. 1933. Materialien zu einer Microlepidopteren-Fauna Kwangtungs. Dtsch entomol Z Iris., 47(3):123–144) [Google Scholar]). Calamotropha latella (Snellen, 1890 Snellen, PCT. 1890. A catalogue of the Pyralidina of Sikkim collected by Henry J. Elwes and the late Otto Möller, with notes by H. J. Elwes. Trans Entomol Soc Lond 1890:557–647, pls 19–20 [Google Scholar]) is newly recorded for China. Images of adults and illustrations of genitalia of the new species and the redescribed species are provided. A checklist and a key to the known Chinese species are presented, along with a map showing the distribution of these species.  相似文献   

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《Journal of Natural History》2012,46(15-16):955-967
In this paper, two new species of the genus Gabrius from China are described and illustrated: G. zhoui sp. nov. from Sichuan and G. invisus sp. nov. from Beijing, Hubei, Hunan, Henan, Shaanxi, Sichuan and Zhejiang. Gabrius imitator (Fauvel, 1895 Fauvel, A. 1895. Staphylinides nouveaux de l'Inde et de la Malaisie. Rev Entomol, 14: 180286.  [Google Scholar]), G. lebedevi (Bernhauer, 1910 Bernhauer, M. 1910. Zur Staphylinidenfauna des palaearktischen Gebietes. Soc Entomol, 25: 7171. 78–79 [Google Scholar]), G. tirolensis (Luze, 1903 Luze, G. 1903. Eine neue Art der Staphyliniden-Gattung Philonthus Curtis aus Mitteleuropa. Verhandlungen der k. k. Zool-botan Gesellschaft Wien, 53: 386 [Google Scholar]), G. kambaitiensis Scheerpeltz, 1965 Scheerpeltz, O. 1965. Wissenschaftliche Ergebnisse der Schwedischen Expedition 1934 nach Indien und Burma. Coleoptera Staphylinidae (except Megalopsidiinae et Steninae). Ark Zool, 17: 93371.  [Google Scholar], G. cinctiventris Scheerpeltz, 1965 Scheerpeltz, O. 1965. Wissenschaftliche Ergebnisse der Schwedischen Expedition 1934 nach Indien und Burma. Coleoptera Staphylinidae (except Megalopsidiinae et Steninae). Ark Zool, 17: 93371.  [Google Scholar], G. egens (Sharp, 1874 Sharp, DS. 1874. The Staphylinidae of Japan. Entomol Soc London Trans, : 1103.  [Google Scholar]), G. smetanai Schillhammer, 1997 Schillhammer, H. 1997. Taxonomic revision of the Oriental species of Gabrius Stephens (Coleoptera: Staphylinidae). Mono Coleop, 1: 1139.  [Google Scholar] and G. zerchei Schillhammer, 1996 Schillhammer, H. 1996. New genera and species of Asian Staphylinini (Coleoptera: Staphylinidae: Staphylininae). Koleopterol Rundsch, 66: 5971.  [Google Scholar] are reported from China for the first time. Thus, a total of 53 species of the genus Gabrius are known from China.  相似文献   

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《Journal of Natural History》2012,46(17-20):999-1023
Seven species of the marine enchytraeid genus Grania Southern, 1913 are described from sediments sampled during the 2003 International Workshop on the Marine Flora and Fauna of Esperance Bay and the Recherche Archipelago, on the southern coast of Western Australia. Two species are new to science, the euryhaline Tasmanian G. dolichura Rota and Erséus, 2000 Rota, E. and Erséus, C. 2000. Two new and peculiar species of Grania (Annelida: Clitellata: Enchytraeidae) inhabiting Tasmanian estuaries.. New Zealand Journal of Zoology, 27: 245254. [Taylor & Francis Online], [Web of Science ®] [Google Scholar] represents a new record for the state, and the remaining four species were known from other parts of Western Australia. Grania quaerens sp. n. is recognized by having a high chaetal index ( = short chaetal foot), small coelomocytes, penial apparati with long whip‐like terminal stylets, conspicuous spermathecae with ectally bulbous ducts, and ectally granulated ampullae housing sperm rings in their ental region. Grania sperantia sp. n. is readily distinguishable by the complete lack of lateral chaetae, a multiple‐banded pattern of the clitellum, extremely long sperm funnels, and the intrasegmental location of the spermathecal pores. The latter new species and four others in the collection (G. bykane Coates, 1990 Coates, K. A. 1990. “Marine Enchytraeidae (Oligochaeta, Annelida) of the Albany area, Western Australia.”. In The marine flora and fauna of Albany, Western Australia, 1, Edited by: Wells, F. E, Walker, D. I, Kirkman, H and Lethbridge, R. 1341. Perth: Western Australian Museum.  [Google Scholar], G. crassiducta Coates, 1990 Coates, K. A. 1990. “Marine Enchytraeidae (Oligochaeta, Annelida) of the Albany area, Western Australia.”. In The marine flora and fauna of Albany, Western Australia, 1, Edited by: Wells, F. E, Walker, D. I, Kirkman, H and Lethbridge, R. 1341. Perth: Western Australian Museum.  [Google Scholar], G. dolichura, and G. ersei Coates, 1990 Coates, K. A. 1990. “Marine Enchytraeidae (Oligochaeta, Annelida) of the Albany area, Western Australia.”. In The marine flora and fauna of Albany, Western Australia, 1, Edited by: Wells, F. E, Walker, D. I, Kirkman, H and Lethbridge, R. 1341. Perth: Western Australian Museum.  [Google Scholar]) are remarkable in possessing the head organ, a sensory structure unique to Grania that was not noted previously in Western Australian species. When considering the whole genus, the geographic pattern of the head organ appears southern‐centred: of the 17 species of Grania reported to possess it, as many as 13 inhabit the southern latitudes. The seventh species of the Esperance collection, G. vacivasa Coates and Stacey, 1993 Coates, K. A. and Stacey, D. 1993. “The marine Enchytraeidae (Oligochaeta, Annelida) of Rottnest Island, Western Australia.”. In The marine flora and fauna of Rottnest Island, Western Australia, Edited by: Wells, F. E, Walker, D. I, Kirkman, H and Lethbridge, R. 391414. Perth: Western Australian Museum.  [Google Scholar], is notable for the kind of items found in its gut and the unusual appearance of its pygidium.  相似文献   

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《Journal of Natural History》2012,46(45-46):2881-2888
Three species of pseudionine bopyrid isopods infesting four species of munidid squat lobsters are reported from Philippine waters: Pleurocryptella laevis (Richardson, 1910 Richardson, H. 1910. Marine isopods collected in the Philippines by the U. S. Fisheries steamer Albatross in 1907–8. Bureau of Fisheries Document., 736: 144.  [Google Scholar]) from Agononida analoga (Macpherson, 1993); Aporobopyrus retrorsa (Richardson, 1910 Richardson, H. 1910. Marine isopods collected in the Philippines by the U. S. Fisheries steamer Albatross in 1907–8. Bureau of Fisheries Document., 736: 144.  [Google Scholar]) from Munida philippinensis Macpherson and Baba, 1993 and Munida kuboi Yanagita, 1943; and Munidion laterale Richardson, 1910 Richardson, H. 1910. Marine isopods collected in the Philippines by the U. S. Fisheries steamer Albatross in 1907–8. Bureau of Fisheries Document., 736: 144.  [Google Scholar] from Paramunida scabra (Henderson, 1885). All of these hosts, except for Paramunida scabra, are recorded for the first time bearing parasitic isopods.  相似文献   

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《Journal of Natural History》2012,46(25-28):1585-1602
Re‐examination of the syntypes of Caridina gracilirostris De Man, 1892 De Man, J. G. 1892. “Decapoden des Indischen Archipels.”. In Zoologische Ergebnisse einer Reise in Niederlandisch Ost‐Indien Edited by: Weber, M. Vol. 2, 265527. Plates 15–29 [Google Scholar], shows that the type series is composed of three species. These three species are similar in the form of the rostrum, but can be differentiated easily by a combination of rostral formula and sexual appendages. To stabilize the taxonomic status of these species, a lectotype for C. gracilirostris is selected. A lectotype for Caridina appendiculata Jalihal and Shenoy, 1998 Jalihal, D. R. and Shenoy, S. 1998. “Taxonomic revision of some Indian prawn species of genus Caridina H. Milne Edward, 1837 (Atyidae).”. In Proceedings and abstracts of the Fourth International Crustacean Congress, 128129. Amsterdam, , Netherlands: The Crustacean Socrety.  [Google Scholar], is also designated from among the remaining syntypes of C. gracilirostris. A new species, C. neglecta, is described. Caridina gracilirostris and C. gracilima Lanchester, 1901 Lanchester, W. F. 1901. On the Crustacea collected during the “Skeat” expedition to the Malay Peninsula.. Proceedings of the Zoological Society of London, 1900([1901]): 533574.  [Google Scholar], are redescribed and figured, and C. appendiculata is transferred to the C. nilotica species group. A new species group is also recognized for C. gracilirostris, C. neglecta, C. gracilima, and a new species, C. longifrons. The C. gracilirostris species group is defined here as taxa possessing a rostrum with subapical teeth, fewer than 10 dorsal teeth, and without any postorbital teeth.  相似文献   

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《Journal of Natural History》2012,46(33-36):2037-2061
The flabelligerid genus Flabelliderma Hartman, 1969 Hartman, O. 1969. Atlas of the sedentariate polychaetous Annelids from California, 812Los Angeles: University of Southern California, Allan Hancock Foundation.  [Google Scholar] is redefined and its type species is re‐established. In comparison with Flabelligera Sars, 1829 Sars, M. 1829. Bidrag til Söedyrenes Naturhistorie; Förste Hæfte, 60Bergen: Dahl.  [Google Scholar], the diagnostic features include the fusion of papillae forming tubercles, often adhering sediment particles, and notopodial lobes forming large ovoid lobes. Four species are described and presented as new combinations, and three others were previously undescribed; thus the species included are F. papillosa (Essenberg, 1922 Essenberg, C. E. 1922. Stylarioides papillosa, sp. nov., a new annelid from the San Diego region.. University of California, Publications in Zoology, 22: 379381.  [Google Scholar]) from southern California, F. berkeleyorum n. sp. from Washington, F. claparedei (de Saint‐Joseph, 1898 de Saint‐Joseph, A. 1898. Les annélides polychètes des côtes de France (Manche et Océan).. Annales des Sciences Naturelles, Zoologie, Série 8, 5: 209464.  [Google Scholar]) from the Bay of Biscay, F. gourdoni (Gravier, 1906 Gravier, C. 1906. Sur les annélides polychètes recueillies par l'Expédition Antarctique Française (Aphroditiens, Amphinomiens, Flabelligériens, Maldaniens, Ampharétiens).. Bulletin du Museum d'Histoire Naturelle, Paris, 7: 535540.  [Google Scholar]) from Antarctica, F. lighti n. sp. from Guadalupe Island, western Mexico, F. ockeri n. sp. from southern California, and F. pruvoti (Fauvel, 1930 Fauvel, P. 1927. Polychètes sédentaires & addenda aux polychètes errantes.. Faune de France, 16: 1494.  [Google Scholar]) from New Caledonia.  相似文献   

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《Journal of Natural History》2012,46(27-28):1671-1696
This paper contributes to the knowledge of the family Zerconidae, describing material collected from several locations in Croatia. Seventeen species are listed, four of them (Prozercon martae sp. nov., Zercon danyii sp. nov., Zercon laczii sp. nov. and Zercon lanceolatus sp. nov.) proved to be new to science, a further eight species (Zercon arcuatus Trägårdh, 1931 Trägårdh, I. 1931. Terrestrial Acarina. Zool Faeroes., 2(49): 169.  [Google Scholar], Zercon athiasi Vincze, 1965 Vincze, S. 1965. Einige Beiträge zur Zerconiden-Fauna Ungarns. Opusc Zool Inst Zoosyst Univ Budapest., 5(2): 241246.  [Google Scholar], Zercon berlesei Sellnick, 1958 Sellnick, M. 1958. Die Familie Zerconidae Berlese. Acta Zool Hung., 3: 313368.  [Google Scholar], Zercon latissimus Sellnick, 1944 Sellnick, M. 1944. Zercon C. L. Koch. Acari, Blätter Milbenk., 5: 3041.  [Google Scholar], Zercon romagniolus Sellnick, 1944 Sellnick, M. 1944. Zercon C. L. Koch. Acari, Blätter Milbenk., 5: 3041.  [Google Scholar], Zercon storkani Hala?ková, 1969 Hala?ková, V. 1969. Zerconidae of Czechoslovakia (Acari: Mesostigmata). Acta Univ Carol-Biol., 3–4: 175352.  [Google Scholar], Zercon tematinensis Ma?án & Fend'a, 2004 Ma?án, P and Fend'a, P. 2004. Zerconid mites of Slovakia (Acari, Mesostigmata, Zerconidae). Bratislava: Institute of Zoology, Slovak Academy of Sciences., : 238 [Google Scholar], Zercon (Zerconella) leitnerae Willmann, 1953 Willmann, C. 1953. Neue Milben aus den östlichen Alpen. Aus den Sitzungsberichten der Österr. Akad Wissensch Math.-naturw. Kl., Abt. I. 162. Bd., 6. Heft. Wien. p., : 449519.  [Google Scholar]) are recorded for the first time from Croatia.  相似文献   

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《Journal of Natural History》2012,46(27-28):1631-1658
The eastern Mediterranean Hydroporus bodemeyeri species complex, which so far includes three species, H. bodemeyeri Ganglbauer, 1900 Bodemeyer, E von. 1900. “Quer durch Klein-Asien in den Bulghar-Dagh”. Emmendingen, , Germany: Die Druck- und Verlags-Aktien-Gesellschaft Vormals Dölter.  [Google Scholar], Hydroporus anatolicus J.Balfour-Browne, 1963 Balfour-Browne, J. and Professor, E. 1963. Janssens journeys to Greece, 1961, and Anatolia, 1962. Haliplidae, Noteridae and Dytiscidae. Bull Inst R Sci Nat Belg., 39(17): 13.  [Google Scholar] and Hydroporus cuprescens Fery and Miller, 1995 Miller, KW and Fery, H. 1995. Hydroporus cuprescens n.sp. von der Insel Zypern (Coleoptera: Dytiscidae). Entomol Ztschr., 105: 405415.  [Google Scholar], is revised. Three new taxa are described: H. anatolicus koksali ssp. nov. from north-eastern Turkey, H. bodemeyeri cariaensis ssp. nov. from south-western Turkey and Rhodes, and Hydroporus kurdistanicus sp. nov. from south-eastern Turkey. Hydroporus guignoti Gschwendtner, 1935 Gschwendtner, L. 1935. Zwei neue europäische Schwimmkäfer. Entomol Anz., 15: 151152.  [Google Scholar] described from Albania and Greece and previously regarded as a synonym of H. bodemeyeri, is treated as a distinct subspecies H. bodemeyeri guignoti stat. nov. A geometric morphometric analysis of body shape within the complex is presented, which confirms the separate status of all recognized taxa, with considerable overlapping between the subspecies of H. anatolicus and H. bodemeyeri. We provide an initial hypothesis on the origin of the contemporary distribution of H. bodemeyeri and H. cuprescens, assuming their vicariant diversification from an Anatolian ancestor.  相似文献   

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