• Title/Summary/Keyword: Vespinae

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Checklist and Distribution of Korean Vespidae Revisited (한국산 말벌과의 종목록 정리 및 분포에 대한 고찰)

  • Choi, Moon Bo;Kim, Jeong Kyu;Lee, Jong Wook
    • Korean journal of applied entomology
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    • v.52 no.2
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    • pp.85-91
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    • 2013
  • A diverse range of taxonomic confusions are brought forth since past taxonomic information including major errors following its initial provision of some uncertain information has repeatedly been applied to Korean Vespidae in its identification. Thus, this study, which made a final summarization of research on Vespidae, provided the list of Korean Vespidae determined except for Eumeninae, with their distributional data. A total of 30 species (including 3 subspecies) belonging to 5 genera of 2 subfamilies are listed: subfamily Vespinae (3 genera/ 18 species) and subfamily Polistinae (2 genera/ 12 species).

cological Characteristics of Hornets(genus Vespa) Considering Environmental Spatial Information in Urban Children's Parks (환경공간정보를 고려한 어린이공원 내 말벌속(genus Vespa) 출현 경향 분석)

  • Kim, Whee-Moon;Kim, Seoug-Yeal;Song, Wonkyong;Choi, Mun-Bo
    • Korean Journal of Environment and Ecology
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    • v.33 no.5
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    • pp.506-514
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    • 2019
  • Unlike natural ecosystems, the urban ecosystem proVides an interdependent enVironment in which wild organisms and urban people co-exist. Hornets (genus Vespa) appearing in urban green and parks haVe a positiVe effect on urban ecosystems, but they also cause ecosystem disserVices that cause physical and psychological discomforts to the urban people. Children's parks, for example, are Very popular among children and residents for easy accessibility, and hornets also use them as bases and habitats. HoweVer, there is still a lack of spatial analysis of habitats and appearance characteristics of hornets in children's parks. This study installed hornet traps in 27 children's parks in Cheonan from April to NoVember 2018 in consideration of the life cycle of hornets. We captured a total of fiVe Vespa species (Vespa crabro, V. analis, V. mandarinia, V. ducalis, and V. Velutina) for 32 weeks and analyzed the emergence of hornets in relation to the composition of seasonal characteristics, species characteristics, and enVironmental spatial information. We captured a total of 818 hornets during the study period. They included 290 V. analis (35.4%), 260 V. crabro (31.8%), 100 V. ducalis (12.1%), 87 V. mandaninia (10.6%), and 81 V. Velutina(9.9%). Most of the hornets showed a common feature that queen hornets were largely captured in May through June after they awake from hibernation, and the number of caught hornets decreased sharply beginning in mid-June, which was the cooperatiVe period. HoweVer, V. Velutina showed a seasonal specificity that more than 80% were captured beginning in the third week of October when other hornet species had already entered a decline phase. The analysis of the number of hornets caught in each spot in children's parks showed significant difference among the spots as 363 hornets (44.3%) were captured in top children's parks, and 35 hornets (4%) were captured in bottom children's parks. In particular, the mean NDVI (Normalized difference Vegetation index) of the top six children's parks was 0.79, and that of the bottom six children's parks was 0.38 (t=2.67*, *=p<0.05), indicating a significant difference. The frequency of capturing hornets was high when the ground around the children's parks was grass or bare land. This study is meaningful as a reference study that confirms the ecological characteristics of hornets appearing in green and parks in the city. We expect it to be a foundation for effectiVe urban green area management in the future.