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Von Dezember 1985 Bis Oktober 1990) Hildegard Hirschm
177 - WERNER HIRSCHMANN - BIBLIOGRAPHIE (von Dezember 1985 bis Oktober 1990) Hildegard Hirschmann *) WiV 448 Jerzy Wisniewski u. Werner Hirschmann Dezember 1985 Gangsystematik der Parasitiformes Teil 477: Larve und Protonymphe von Uroobovella moseri Hirschmann 1972 aus Honduras (Dinychini, Uropodinae)Acarologia 26(4), S.311-317,Abb.1-5 +) PoV 449 Werner Hirschmann April 1986 Eine Anpassung von Schildkrötenmilben (Uropodiden) an Feuchtbiotope.- Mikrokosmos 75(4), S.117-119,Abb.1-6 PoV 450 Werner Hirschmann u. Franz Kemnitzer Juni 1986 Schlüpfendes Weibchen der Schildkrötenmilbe Nenteria stylifera.- Mikrokosmos 75(6), S.167-170,Abb.1-4 PoV 451 Werner Hirschmann Juli 1986 Einfaches Verfahren zum Nachweis von lebenden Hausstaubmilben.- Der praktische Schädlingsbekämpfer 7,S.130,131,1 Abb. WiV 452 Dieter Mautz, Werner Hirschmann, Franz Kemnitzer August 1986 The embryonic development of Varroa jacobsoni Oudemans 1904 (Varroinae, Mesostigmata).- Acarologia 27(3),S.203-210,Abb.1-8 WiV 453 Jerzy Wisniewski u. Werner Hirschmann August 1986 Gangsystematik der Parasitiformes Teil 490: Deutonymphe einer neuen Nenteria-Art aus Squatorialafrika (Trichouropodini, Uropodinae).- Acarologia 27(3), S.221-227,Abb.1-5 WiV 454 Werner Hirschmann u. Jerzy Wisniewski November 1986 Gangsystematik der Parasitiformes Teil 491: Weltweite Revision der Ganggattung Trichouropoda Berlese 1916 I.Die ovalis-Gruppe (Trichouropodini, Uropodinae).- Acarologie Folge 33, S.l-81(mit Abb.) WiV 455 Werner Hirschmann u. Jerzy Wisniewski November 1986 Gangsystematik der Parasitiformes Teil 492: Weltweite Revision der Ganggattung Trichouropoda Berlese 1916 II.Die interstructura-Gruppe (Trichouropodini, Uropodinae).- Acarologie Folge 33, S.81-109(mit Abb.) WiV 456 Werner Hirschmann November 1986 Gangsystematik der Parasitiformes Teil 493: Weltweite Revision der Ganggattung Trichouropoda Berlese 1916 III.Die frondosa-Gruppe (Trichouropodini, Uropodinae).- Acarologie Folge 33, S.109-116(mit Abb. -
First Evidence of Specialized Feeding on Ectomycorrhizal
Bluhm et al. BMC Ecol (2019) 19:10 https://doi.org/10.1186/s12898-019-0227-y BMC Ecology RESEARCH ARTICLE Open Access Protura are unique: frst evidence of specialized feeding on ectomycorrhizal fungi in soil invertebrates Sarah L. Bluhm1*, Anton M. Potapov1,2, Julia Shrubovych3,4,5, Silke Ammerschubert6, Andrea Polle6 and Stefan Scheu1,7 Abstract Background: Ectomycorrhizal fungi (ECM) play a central role in nutrient cycling in boreal and temperate forests, but their role in the soil food web remains little understood. One of the groups assumed to live as specialised mycorrhizal feeders are Protura, but experimental and feld evidence is lacking. We used a combination of three methods to test if Protura are specialized mycorrhizal feeders and compared their trophic niche with other soil invertebrates. Using pulse labelling of young beech and ash seedlings we analysed the incorporation of 13C and 15N into Acerentomon gallicum. In addition, individuals of Protura from temperate forests were collected for the analysis of neutral lipid fatty acids and natural variations in stable isotope ratios. Results: Pulse labelling showed rapid incorporation of root-derived 13C, but no incorporation of root-derived 15N into A. gallicum. The transfer of 13C from lateral roots to ectomycorrhizal root tips was high, while it was low for 15N. Neutral lipid fatty acid (NLFA) analysis showed high amounts of bacterial marker (16:1ω7) and plant marker (16:0 and 18:1ω9) fatty acids but not of the fungal membrane lipid 18:2ω6,9 in A. gallicum. Natural variations in stable isotope ratios in Protura from a number of temperate forests were distinct from those of the great majority of other soil invertebrates, but remarkably similar to those of sporocarps of ECM fungi. -
First Report of a Genus and Species of the Family Dinychidae (Acari: Mesostigmata: Uropodoidea) from Iran
Journal of Entomological Society of Iran 71 2015, 35(1): 71-72 Short communication First report of a genus and species of the family Dinychidae (Acari: Mesostigmata: Uropodoidea) from Iran E. Arjomandi1 and Sh. Kazemi2&* 1. Department of Entomology, Faculty of Agriculture, Tarbiat Modares University, Tehran, Iran, 2. Department of Biodiversity, Institute of Science and High Technology and Environmental Sciences, Graduate University of Advanced Technology, Kerman, Iran. *Corresponding author, E-mail: [email protected] ƵŶǀĪģ žƴºūƽŚºƷƶºƴĩŻřƶƳƺĭĨƿŶƃƭŚŬƳřæèíîƱŚŤƀŝŚţŹŵƶĩƱŚŤƀƬĭƱŚŤſřŹŵƽżĩŚųƽŚưĮǀŤſřƱ ŚǀƯƽŚƷƶ ƴĩƱƺƟƾſŹźŝŹŵ Dinychus woelkei Hirschmann & Zirngiebl-Nicol, 1969 Dinychus Kramer, 1882 ƵŶºƴĩƪºųřŵŻřŵŚŝōƱ źƣƪĮƴūŻř ƭŚƳƶŝ ŢſřƱřźƿřŻřƶƳƺĭƹžƴūƲƿřƁŹřżĭƲǀŤƀŴƳƲƿřŶƃƾƿŚſŚƴƃƹƽŹƹōƖ ưūƾŤųŹŵƵŶǀſƺě Mites of the genus Dinychus Kramer, 1882 live in with sub-oval pits in different size; dorsal setae short, different habitats such as moss, leaf-litter, decaying smooth or densely plumose, three pairs of posterior plant debris and animal manure (Lindquist et al., opisthonotal setae including J5, Z5 and a lateral pair 2009). Athias-Binche et al. (1989) redefined the genus, plumose and situated on post marginal platelets (fig. 1, described a new species from North America and C-D); epigynal shield 115 µm long, 90 µm wide, placed 17 species of the genus in the family anterior margin of shield convex, reaching to mid-level Prodinychidae, but Karg (1989) and Lindquist et al. of coxa II, posterior margin truncate at mid-level of (2009) recognized them as members of the families coxa IV (fig. 1, B); stigmata on mid-level of coxa III Urodinychidae and Dinychidae, respectively. (fig. 1, A); peritremes long (140 µm), extending Mites of the cohort Uropodina are poorly studied posteriorly to mid-level of coxa IV, curved towards in Iran. -
The Beetle Fauna of Dominica, Lesser Antilles (Insecta: Coleoptera): Diversity and Distribution
INSECTA MUNDI, Vol. 20, No. 3-4, September-December, 2006 165 The beetle fauna of Dominica, Lesser Antilles (Insecta: Coleoptera): Diversity and distribution Stewart B. Peck Department of Biology, Carleton University, 1125 Colonel By Drive, Ottawa, Ontario K1S 5B6, Canada stewart_peck@carleton. ca Abstract. The beetle fauna of the island of Dominica is summarized. It is presently known to contain 269 genera, and 361 species (in 42 families), of which 347 are named at a species level. Of these, 62 species are endemic to the island. The other naturally occurring species number 262, and another 23 species are of such wide distribution that they have probably been accidentally introduced and distributed, at least in part, by human activities. Undoubtedly, the actual numbers of species on Dominica are many times higher than now reported. This highlights the poor level of knowledge of the beetles of Dominica and the Lesser Antilles in general. Of the species known to occur elsewhere, the largest numbers are shared with neighboring Guadeloupe (201), and then with South America (126), Puerto Rico (113), Cuba (107), and Mexico-Central America (108). The Antillean island chain probably represents the main avenue of natural overwater dispersal via intermediate stepping-stone islands. The distributional patterns of the species shared with Dominica and elsewhere in the Caribbean suggest stages in a dynamic taxon cycle of species origin, range expansion, distribution contraction, and re-speciation. Introduction windward (eastern) side (with an average of 250 mm of rain annually). Rainfall is heavy and varies season- The islands of the West Indies are increasingly ally, with the dry season from mid-January to mid- recognized as a hotspot for species biodiversity June and the rainy season from mid-June to mid- (Myers et al. -
Liste Rouge Mollusques (Gastéropodes Et Bivalves)
2012 > L’environnement pratique > Listes rouges / Gestion des espèces > Liste rouge Mollusques (gastéropodes et bivalves) Espèces menacées en Suisse, état 2010 > L’environnement pratique > Listes rouges / Gestion des espèces > Liste rouge Mollusques (gastéropodes et bivalves) Espèces menacées en Suisse, état 2010 Publié par l’Office fédéral de l’environnement OFEV et par le Centre suisse de cartographie de la faune CSCF Berne, 2012 Valeur juridique de cette publication Impressum Liste rouge de l’OFEV au sens de l’art. 14, al. 3, de l’ordonnance Editeurs du 16 janvier 1991 sur la protection de la nature et du paysage Office fédéral de l’environnement (OFEV) (OPN; RS 451.1), www.admin.ch/ch/f/rs/45.html L’OFEV est un office du Département fédéral de l’environnement, des transports, de l’énergie et de la communication (DETEC). La présente publication est une aide à l’exécution de l’OFEV en tant Centre Suisse de Cartographie de la Faune (CSCF), Neuchâtel. qu’autorité de surveillance. Destinée en premier lieu aux autorités d’exécution, elle concrétise des notions juridiques indéterminées Auteurs provenant de lois et d’ordonnances et favorise ainsi une application Mollusques terrestres: Jörg Rüetschi, Peter Müller et François Claude uniforme de la législation. Elle aide les autorités d’exécution Mollusques aquatiques: Pascal Stucki et Heinrich Vicentini notamment à évaluer si un biotope doit être considéré comme digne avec la collaboration de Simon Capt et Yves Gonseth (CSCF) de protection (art. 14, al. 3, let. d, OPN). Accompagnement à l’OFEV Francis Cordillot, division Espèces, écosystèmes, paysages Référence bibliographique Rüetschi J., Stucki P., Müller P., Vicentini H., Claude F. -
Redalyc.Ácaros Foréticos Asociados a Scolytus Schevyrewi Semenov, 1902
Fitosanidad ISSN: 1562-3009 [email protected] Instituto de Investigaciones de Sanidad Vegetal Cuba Quiroz-Ibáñez, Iván Fermín; Estrada-Venegas, Edith G.; Chaires-Grijalva, M. Patricia; Campos-Bolaños, Rodolfo Ácaros foréticos asociados a Scolytus schevyrewi Semenov, 1902 (Coleoptera: Curculionidae: Scolytinae) en Ulmus pumila L. (Urticales: Ulmeaceae) de Chapingo, México Fitosanidad, vol. 21, núm. 1, enero-abril, 2017, pp. 37-43 Instituto de Investigaciones de Sanidad Vegetal La Habana, Cuba Disponible en: http://www.redalyc.org/articulo.oa?id=209155463006 Cómo citar el artículo Número completo Sistema de Información Científica Más información del artículo Red de Revistas Científicas de América Latina, el Caribe, España y Portugal Página de la revista en redalyc.org Proyecto académico sin fines de lucro, desarrollado bajo la iniciativa de acceso abierto Fitosanidad 21(1) abril (2017) 5- Ácaros foréticos asociados a Scolytus schevyrewi Semenov, 1902 (Coleoptera: Curculionidae: Scolytinae) en Ulmus pumila L. (Urticales: Ulmeaceae) de Chapingo, México Phoretic mites associated to Scolytus schevyrewi Semenov, 1902 (Coleoptera: Curculionidae: Scolytinae) in Ulmus pumila L. (Urticales: Ulmeaceae) from Chapingo, México Iván Fermín Quiroz-Ibáñez1, Edith G. Estrada-Venegas2, M. Patricia Chaires-Grijalva2 y Rodolfo Cam- pos-Bolaños1 1 UACh. Departamento de Enseñanza, Investigación y Servicio en Parasitología Agrícola y División de Ciencias Forestales. Km 38.5, Carretera México-Texcoco, Texcoco de Mora, México, C.P. 56227 2Colegio de Postgraduados. Instituto de Fitosanidad. Programa de Entomología y Acarología, edith_ev@ yahoo.com.mx RESUMEN ABSTRACT El Olmo de Siberia (Ulmus pumila L. 1753) es un árbol caducifolio de The Elm of Siberia (Ulmus pumila L. 1753) is a deciduous tree of low porte bajo, perteneciente a la familia Ulmaceae, nativo de Asia Central, bearing, belonging to the Ulmaceae family, native to Central Asia, eas- este de Siberia, Mongolia, norte de China y Corea. -
Is Ellipura Monophyletic? a Combined Analysis of Basal Hexapod
ARTICLE IN PRESS Organisms, Diversity & Evolution 4 (2004) 319–340 www.elsevier.de/ode Is Ellipura monophyletic? A combined analysis of basal hexapod relationships with emphasis on the origin of insects Gonzalo Giribeta,Ã, Gregory D.Edgecombe b, James M.Carpenter c, Cyrille A.D’Haese d, Ward C.Wheeler c aDepartment of Organismic and Evolutionary Biology, Museum of Comparative Zoology, Harvard University, 16 Divinity Avenue, Cambridge, MA 02138, USA bAustralian Museum, 6 College Street, Sydney, New South Wales 2010, Australia cDivision of Invertebrate Zoology, American Museum of Natural History, Central Park West at 79th Street, New York, NY 10024, USA dFRE 2695 CNRS, De´partement Syste´matique et Evolution, Muse´um National d’Histoire Naturelle, 45 rue Buffon, F-75005 Paris, France Received 27 February 2004; accepted 18 May 2004 Abstract Hexapoda includes 33 commonly recognized orders, most of them insects.Ongoing controversy concerns the grouping of Protura and Collembola as a taxon Ellipura, the monophyly of Diplura, a single or multiple origins of entognathy, and the monophyly or paraphyly of the silverfish (Lepidotrichidae and Zygentoma s.s.) with respect to other dicondylous insects.Here we analyze relationships among basal hexapod orders via a cladistic analysis of sequence data for five molecular markers and 189 morphological characters in a simultaneous analysis framework using myriapod and crustacean outgroups.Using a sensitivity analysis approach and testing for stability, the most congruent parameters resolve Tricholepidion as sister group to the remaining Dicondylia, whereas most suboptimal parameter sets group Tricholepidion with Zygentoma.Stable hypotheses include the monophyly of Diplura, and a sister group relationship between Diplura and Protura, contradicting the Ellipura hypothesis.Hexapod monophyly is contradicted by an alliance between Collembola, Crustacea and Ectognatha (i.e., exclusive of Diplura and Protura) in molecular and combined analyses. -
A Revision of the New World Species of Donacaula Meyrick and a Phylogenetic Analysis of Related Schoenobiinae (Lepidoptera: Crambidae)
Mississippi State University Scholars Junction Theses and Dissertations Theses and Dissertations 1-1-2010 A Revision Of The New World Species Of Donacaula Meyrick And A Phylogenetic Analysis Of Related Schoenobiinae (Lepidoptera: Crambidae) Edda Lis Martinez Follow this and additional works at: https://scholarsjunction.msstate.edu/td Recommended Citation Martinez, Edda Lis, "A Revision Of The New World Species Of Donacaula Meyrick And A Phylogenetic Analysis Of Related Schoenobiinae (Lepidoptera: Crambidae)" (2010). Theses and Dissertations. 248. https://scholarsjunction.msstate.edu/td/248 This Dissertation - Open Access is brought to you for free and open access by the Theses and Dissertations at Scholars Junction. It has been accepted for inclusion in Theses and Dissertations by an authorized administrator of Scholars Junction. For more information, please contact [email protected]. A REVISION OF THE NEW WORLD SPECIES OF DONACAULA MEYRICK AND A PHYLOGENETIC ANALYSIS OF RELATED SCHOENOBIINAE (LEPIDOPTERA: CRAMBIDAE) By Edda Lis Martínez A Dissertation Submitted to the Faculty of Mississippi State University in Partial Fulfillment of the Requirements for the Degree of Doctor of Philosophy in Entomology in the Department of Entomology and Plant Pathology Mississippi State, Mississippi December 2010 A REVISION OF THE NEW WORLD SPECIES OF DONACAULA MEYRICK AND PHYLOGENETIC ANALYSIS OF RELATED SCHOENOBIINAE (LEPIDOPTERA: CRAMBIDAE) By Edda Lis Martínez Approved: ______________________________ ______________________________ Richard -
Gastropoda, Prosobranchia)
BASTERIA, 64: 151-163, 2000 The genus Alzoniella Giusti & Bodon, 1984, in France. 1 West European Hydrobiidae, 9 (Gastropoda, Prosobranchia) Hans+D. Boeters Karneidstrasse 8, D 81545 Munchen, Germany In France the genusAlzoniella Giusti & Bodon, 1984, is represented with two subgenera, viz. its nominate subgenus and Navarriella subgen. nov. The nominate subgenus comprises six three species, ofwhich are described as viz. A. haicabia A. new, (A.) spec. nov., (A.) junqua spec. A. nov. and A. (A.) provincialis spec. nov., next to (A.) navarrensis Boeters, 1999, A. (A.) perrisii and A. (Dupuy, 1851) (A.) pyrenaica (Boeters, 1983). The new subgenus is proposed for A. (Navarriella) elliptica (Paladilhe, 1874) only. A. (A.) perrisii (Dupuy, 1851) [Hydrobia], the first of this became known from is redefined and species genus that France, described here with two viz. A. and A. subspecies, (A.) p. perrisii (A.) p. irubensis subspec. nov. Key words: Gastropoda, Prosobranchia, Hydrobiidae, Alzoniella (Alzoniella) and Alzoniella (Navarriella), France. INTRODUCTION Giusti & Bodon (1984: 169) described Alzoniella for three eyeless, subterranean, hy- drobiid species from Italy, that might have evolved from small populations that locally survived the Quaternary glaciations. It turned out that Alzoniella is also represented in where mountain inhabited France, regions are that have partially been subject to gla- ciations, viz. the Pyrenees and the MediterraneanAlps. In these regions too, populations ofancestral have Alzoniella might survived locally by invading subterranean waters. This development apparently went less far than in for example Bythiospeum Bourguignat, 1882, andMoitessieria Bourguignat, 1863. Species of these two genera, which are eyeless stygobionts, occur not only in karstic waters, but also in the interstitium and in subter- ranean waters bordering river valleys such as that of the Rhone river (Boeters & Miiller be found 1992). -
First Record of Dinychus Bincheaecarinatus Hirschmann
NORTH-WESTERN JOURNAL OF ZOOLOGY 11 (1): 86-91 ©NwjZ, Oradea, Romania, 2015 Article No.: 141209 http://biozoojournals.ro/nwjz/index.html First record of Dinychus bincheaecarinatus Hirschmann, Wagrowska-Adamczyk & Zirngiebl-Nicol in Romania: Notes on the morphology and taxonomy and a contribution to the Dinychidae fauna of Romania (Acari: Mesostigmata: Uropodina) Jenő KONTSCHÁN1,2 1. Department of Zoology and Animal Ecology, Szent István University, H-2100, Gödöllő, Páter Károly str. 1., Hungary. 2. Plant Protection Institute, Centre for Agricultural Research, Hungarian Academy of Sciences, H-1525 Budapest, P.O. Box 102, Hungary. E-mail: [email protected] Received: 30. June 2013 / Accepted: 01. September 2013 / Available online: 02. January 2015 / Printed: June 2015 Abstract. One female and one male specimen of the Dinychus bincheaecarinatus Hirschmann, Wagrowska- Adamczyk & Zirngiebl-Nicol, 1984 were collected for the first time in Romania. A new re-description of this species is given accompanied with first description of the legs. Notes on the differences between D. binchaeacarinatus Hirschmann, Wagrowska-Adamczyk & Zirngiebl-Nicol, 1984 and D. carinatus Berlese, 1903 are presented. Other new occurrences of the Romanian dinychid species are given with a list and a key to the Romanian species of the genus Dinychus. Key words: Acari, Dinychidae, new records, new key, Romania. Introduction collected by the following researchers: Csaba Csuzdi (CsCs), Edit Horváth (HE), Jenő Kontschán (KJ), András The Uropodina mites are one of the characteristic Orosz (OA), Victor V. Pop (VVP), György Sziráki (SzGy) and Zsolt Ujvári (UZs). The specimens were cleared in groups of soil dwelling Mesostigmata. Currently lactic acid and observed in deep and half covered slides, more than 2000 species have been discovered and with a scientific microscope. -
Endemic Species of Christmas Island, Indian Ocean D.J
RECORDS OF THE WESTERN AUSTRALIAN MUSEUM 34 055–114 (2019) DOI: 10.18195/issn.0312-3162.34(2).2019.055-114 Endemic species of Christmas Island, Indian Ocean D.J. James1, P.T. Green2, W.F. Humphreys3,4 and J.C.Z. Woinarski5 1 73 Pozieres Ave, Milperra, New South Wales 2214, Australia. 2 Department of Ecology, Environment and Evolution, La Trobe University, Melbourne, Victoria 3083, Australia. 3 Western Australian Museum, Locked Bag 49, Welshpool DC, Western Australia 6986, Australia. 4 School of Biological Sciences, The University of Western Australia, 35 Stirling Highway, Crawley, Western Australia 6009, Australia. 5 NESP Threatened Species Recovery Hub, Charles Darwin University, Casuarina, Northern Territory 0909, Australia, Corresponding author: [email protected] ABSTRACT – Many oceanic islands have high levels of endemism, but also high rates of extinction, such that island species constitute a markedly disproportionate share of the world’s extinctions. One important foundation for the conservation of biodiversity on islands is an inventory of endemic species. In the absence of a comprehensive inventory, conservation effort often defaults to a focus on the better-known and more conspicuous species (typically mammals and birds). Although this component of island biota often needs such conservation attention, such focus may mean that less conspicuous endemic species (especially invertebrates) are neglected and suffer high rates of loss. In this paper, we review the available literature and online resources to compile a list of endemic species that is as comprehensive as possible for the 137 km2 oceanic Christmas Island, an Australian territory in the north-eastern Indian Ocean. -
Ein Beitrag Zur Anatomie Von Bythiospeum Tschapecki (CLESSIN, 1878) (Moll., Gastropoda, Prosobranchia)
©Landesmuseum Joanneum Graz, Austria, download unter www.biologiezentrum.at Mitt. Abt. Zool. Landesmus. Joanneum Heft 30 S. 79—82 Graz 1983 Ein Beitrag zur Anatomie von Bythiospeum tschapecki (CLESSIN, 1878) (Moll., Gastropoda, Prosobranchia) Von Peter L. REISCHÜTZ Mit 2 Abbildungen Eingelangt am 27. Mai 1983 Inhalt: Die Genitalmorphologie von Vitretta tschapecki CLESSIN, 1878 wurde erstmals untersucht und die Zugehörigkeit dieser Art zur Gattung Bythiospeum BOURGUIGNAT, 1882. festgestellt. Abstract: The genital morphology of Vitretta tschapecki CLESSIN, 1878 has been examined for the first time and this has proven that this species belongs to the genus Bythiospeum BOURGUIGNAT, 1882. Die Buchkogelhöhle bei St. Martin bei Graz ( = Bründlhöhle, Höhlenkat. Nr. 2793/1) ist locus typicus eines kaum bekannten stygobionten Süßwasser-Proso- branchiers: Vitrella tschapecki CLESSIN, 1878. Bei einer Exkursion mit Dr. E. KREISSL zum locus typicus konnten mehrere Exemplare dieser Art gesammelt und drei anatomisch untersucht werden. Die systematische Stellung der Art war bisher sehr unsicher, da die anatomischen Verhältnisse unbekannt waren. CLESSIN, 1878 beschrieb Vitrella tschapecki mit einem falschen Fundort (Sanriack in Kärnten). Dies wurde später korrigiert (CLESSIN, 1882 und 1887). BOURGUIGNAT, 1882 stellte diese Art zu seiner Gattung Bythiospeum, da Vitrella CLESSIN, 1877 synonym zu Vitrella SWAINSON, 1840 ist. WESTERLUND, 1886 stellte sie in die Gattung Paludinella L. PFEIFFER, 1841, GEYER, 1909 zur Gattung Lartetia BOURGUIGNAT, 1869, FUCHS, 1929 in die Gattung Paladilhiopsis PAVLOVIC, 1913. KLEMM, i960 betrachtete Paladilhiopsis als Untergattung von Paladilhia BOURGUIGNAT. Da die bisherige Gliederung nur auf konchyologischen Merkmalen beruhte (FUCHS, 1925 und 1929, MAHLER, 1949, STOJASPAL, 1978 und REISCHÜTZ, 1981 und 1983), sollte möglichst umfangreiches Material aus dem österreichischen Unter- suchungsgebiet untersucht werden.