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  • 1 Natural History Museum of Bakony Mountains Zirc, Hungary
  • | 2 Department of Entomology, BUESPA H-1052 Budapest, P. O. Box 53, Hungary
  • | 3 Department of Medical Microbiology and Immunobiology, University of Szeged Szeged, Hungary
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Species richness and composition of carabid assemblages were investigated on the ground surface of differently treated (abandoned, commercial and IPM) apple and pear orchards in Hungary. Extensive sampling was carried out by pitfall trapping in 13 apple and 3 pear orchards located in ten different regions. 28 230 individuals belonging to 174 species were collected. Additional four species were collected by trunk-traps and 23 species were found during the review of earlier literature. Altogether 201 carabid species representing 40% of the carabid fauna of Hungary were found in our and earlier studies. The species richness varied between 23 and 76 in the different orchards, the average species richness was 43 species. The common species, occurring with high relative abundance in the individual orchards in decreasing order were: Pseudoophonus rufipes, Harpalus distinguendus, Harpalus tardus, Anisodactylus binotatus, Calathus fuscipes, Calathus erratus, Amara aenea, Harpalus affinis and Pterostichus melanarius. The species with wide distribution, occurring in more than 75% of the investigated orchards in decreasing order were: Pseudoophonus rufipes, Trechus quadristriatus, Harpalus tardus, Harpalus distinguendus, Pterostichus melanarius, Amara aenea, Amara familiaris Calathus fuscipes, Poecilus cupreus, Calathus ambiguus, Calathus melanocephalus, Pseudoophonus griseus and Harpalus serripes. Species, which are rare in Hungary, and therefore are interesting in respect of faunal research, were: Amara cursitans, Harpalus progrediens, Notiophilus pusillus, Olisthopus rotundatus, Pangus scaritides and Parophonus hirsutulus.

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  • Tibor ÉRSEK (Hungarian University of Agriculture and Life Sciences)
  • Wittko FRANCKE (University of Hamburg)
  • László HORNOK (Hungarian University of Agriculture and Life Sciences)
  • József HORVÁTH (University of Pannonia, Faculty of Georgikon)
  • Mehmet Bora KAYDAN (Cukurova University)
  • Zoltán KIRÁLY (Centre for Agricultural Research, Plant Protection Institute)
  • Levente KISS (University of Southern Queensland)
  • Karl-Heinz KOGEL (University of Giessen)
  • Jenő KONTSCHÁN (Centre for Agricultural Research, Plant Protection Institute)
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  • László PALKOVICS (Hungarian University of Agriculture and Life Sciences)
  • Miklós POGÁNY (Centre for Agricultural Research, Plant Protection Institute)
  • James E. SCHOELZ (University of Missouri)
  • Stefan SCHULZ (Technical University of Braunschweig)
  • Andrzej SKOCZOWSKI (Pedagogical University of Kraków)
  • Gábor SZŐCS (Centre for Agricultural Research, Plant Protection Institute)
  • Miklós TÓTH (Centre for Agricultural Research, Plant Protection Institute)
  • Ferenc VIRÁNYI (Hungarian University of Agriculture and Life Sciences)
  • Pedro Díaz VIVANCOS (CEBAS – Spanish National Research Council)

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Acta Phytopathologica et Entomologica Hungarica
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2020 Volume 55
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