• Title/Summary/Keyword: Beetles

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Endemic and sub-endemic water beetles of Mongolia and their distribution ranges

  • Enkhnasan, Davaadorj;Boldgiv, Bazartseren
    • Journal of Species Research
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    • v.8 no.4
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    • pp.395-406
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    • 2019
  • The aim of this study was to compile a species list of endemic water beetles of Mongolia and determine their distribution patterns. A total of 1,179 individuals of endemic water beetles were collected from nine different sub-basins (123 sample points) throughout the country. Currently, 21 endemic and sub-endemic species have been recorded in Mongolia. Eight of these species were strictly endemic. The endemic and sub-endemic species were found only among four families: Dytiscidae (10 out 99 spp.), Gyrinidae (1 out 7 spp.), Helophoridae (5 out 16 spp.), and Hydraenidae (5 out 13 spp.). The rate of endemism was higher in Hydraenidae than other families (38.4%). Endemic beetle fauna was most similar between the Onon and Kherlen River Basins (80%). Helophorus parajacutus Angus, 1970 was common in five sub-basins, but Agabus kaszabi $Gu{\acute{e}}orguiev$, 1972, Gyrinus sugunurensis Nilsson, 2001 and Ochthebius mongolicus Janssens, 1967 were recorded from only one sub-basin. In terms of sub-endemic species, Mongolia was mostly similar to the fauna of Eastern Siberia, Russia (73.7%) than other neighboring regions. Due to Mongolia's vast territory and different natural zones, endemism was exceptionally low (12.4%), but these data provide baseline information of endemic and rare species for their further conservation.

Interaction between Earthworm and Dung Beetles on Cattle Dung Decomposition (우분 분해에 대한 지렁이와 소똥구리의 상호작용)

  • Bang, Hea-Son;Na, Young-Eun;Jung, Myung-Pyo;Kim, Myung-Hyun;Han, Min-Su;Kang, Kee-Kyung;Lee, Deog-Bae
    • Korean Journal of Environmental Agriculture
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    • v.28 no.3
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    • pp.238-242
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    • 2009
  • The effect of earthworm and dung beetle on cattle dung pat decomposition was assessed by combining quantification of earthworm density and with or without dung beetle in pats and measurements of the decomposition rate of these pats. Cattle dung decomposition rate was higher in the pots treated with both earthworm and dung beetle than in the pots with either earthworm or beetle alone. After dung beetle and earthworm activity, the growth of oat in earthworm with dung beetle treatment was similar effect with fertilizer treatment. Dung beetle was responsible for dung decomposition until 78% moisture content in the dung, earthworm was responsible for up to 30% moisture of dung, and two group were not shown any activity for decomposition less 30% moisture content of dung. Therefore dung in the different periods could be broken down by each group. The disappearance and conveyance of dung by earthworm and dung beetle was 72% of the initial dung amount. 10.2% of 72% dung was used making brood balls by dung beetle. Earthworm activity was not an impediment on making brood balls by dung beetles. The interaction of earthworm and dung beetle may have a complementary cooperation rather than competition in the same dung pat. Indeed, development of earthworm accelerate to coexist with dung beetles instead without dung beetles. From this result, maximum benefits of the effective earthworm and dung beetle can be achieved, it is needed to preserve population of earthworm and dung beetles in pasture to sustainable agricultural environment.

Distribution and Diversity of Beetles(Coleoptera: Carabidae) in Naejangsan National Park, Korea (내장산국립공원 딱정벌레류의 종 분포 및 다양성)

  • Lee, Chong-Kyu
    • Journal of agriculture & life science
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    • v.45 no.4
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    • pp.37-45
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    • 2011
  • The study was carried out to investigate distribution and diversity of beetles with pitfall traps and beatings 3 times at Baegyang temple area of Naejangsan National park from July to September in 2010. A total of 333individuals belonging to 32 species from 13 families were captured beetles at Baegyang temple area of Naejangsan National park. The rate of captured individuals was 17.4% and 13.3% in Synuchus cycloderus and Synuchus nitidus, respectively. The total of two species was 30.7%. The number of individuals by altitude was the highest at 200m, and was order of 500m>400m>700m. A total of 333 individuals belong to 32 species from 13 families were captured at Baegyang temple area of Naejangsan National park. The number of captured individuals by monthly was 95 on July, 178 on August and 60 on September, respectively. Dominance index was the highest to Attelabidae and was the lowest to Rutelidae. Dominance index by monthly was the highest on July and was the lowest on September. Diversity index showed the highest to Rutelidae in family and on August in monthly. Menhinich index was 1.75 which species abundance indicated by beetles at Baegyang temple area of Naejangsan National park.

The Evaluation of Disinfection and Operation of Large Scale Anoxic Chamber System for Museum Insects (대용량 저산소 농도 살충 챔버 시스템을 이용한 박물관 해충의 살충력 및 운용성 평가)

  • Oh, Joon Suk;Choi, Jung Eun
    • Journal of Conservation Science
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    • v.30 no.2
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    • pp.137-148
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    • 2014
  • Large scale anoxic chamber system(volume $28m^3$) was developed and installed at The National Folk Museum of Korea for the first time in Korea. In order to get optimal anoxic treatment condition, we compared the disinfection of adults, larvae and eggs of cigarette beetles using nitrogen and argon. The time for complete disinfection of cigarette beetles in pine wooden blocks exposed to nitrogen at oxygen concentration 0.01% and 50% in relative humidity were 15 days at $20^{\circ}C$, 10 days at $25^{\circ}C$, and 7 days $30^{\circ}C$. Time were 10 days at $20^{\circ}C$, 7 days at $25^{\circ}C$, and 5 days $30^{\circ}C$ in argon anoxic atmosphere. From the mortality of cigarette beetles, optimal disinfection condition was oxygen concentration 0.01%, $25^{\circ}C$ in temperature, 50% in relative humidity and exposure time 21 days at nitrogen atmosphere. And when large scale anoxic chamber system was supplied nitrogen by nitrogen generator for anoxic treatment of many collections or large collections, it could be operated stably. To verify optimal disinfection condition, museum insects(adults, larvae, pupae and eggs of cigarette beetles in pine wooden blocks, cotton fabrics and Korean paper book, adults and larvae of drugstore beetles in pine wooden blocks, cotton fabrics and Korean paper book, larvae of varied carpet beetles in pine wooden block and silk fabrics, adults and larvae of hide beetles and adults of rice weevils in breeding boxes) which exposed at optimal disinfection condition, were completely killed.

Changes in Catch Rate of Monochamus saltuarius (Coleoptera: Cerambycidae) Relation to Sexual Maturation (북방수염하늘소(딱정벌레목: 하늘소과)의 성적 성숙에 따른 포획 효율의 변화)

  • Jung, Jong-Kook;Kwon, Hyeokjun;Kim, Hwang;Kim, Junheon;Nam, Youngwoo;Kim, Dongsoo;Jung, Chansik
    • Korean journal of applied entomology
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    • v.59 no.4
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    • pp.295-301
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    • 2020
  • In this study, we aimed to investigate the changes in the catch rate of Monochamus saltuarius, based on sexual maturation by using aggregation-sex pheromone traps. Ovariole development of caught M. saltuarius females was compared to that of the ones not caught using traps. In a mesh cage set up at the Hongneung experimental forest, we placed a multi-funnel trap with or without an aggregation-sex pheromone lure. M. saltuarius adults, which emerged from pine logs, were grouped in four according to the emergence dates (0, 1, 7, and 10 days after emergence [DAE]). We released beetles into the mesh cage to investigate the catch rate using the traps. In each group, a total of 80 beetles (20 beetles × 4 replications) were tested, making it a total of 320 beetles. Among the four groups, M. saltuarius adults in the 7 DAE group were caught more frequently using the traps, especially with a pheromone lure; the other groups showed a low catch rate. A similar number of female and male beetles were caught using the traps. Regarding ovariole development, all the female adults in the 0 and 1 DAE groups were immature, while those in the other two groups were completely developed. Therefore, aggregation-sex pheromone traps might have a limitation in the prevention of pine wilt disease because of the transmission of pine wood nematode during maturation feeding of newly emerged M. saltuarius adults. However, aggregation-sex pheromone traps can be effective for collecting sexually mature M. saltuarius adults, for the investigation of seasonal occurrence of beetles in forests.

Some Ground Beetles (Coleoptera, Carabidae) from Korea (16) (한국산(韓國産) 먼지벌레(16))

  • Paik, Jong-Cheol;Kim, Tae-Heung
    • The Korean Journal of Soil Zoology
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    • v.11 no.1_2
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    • pp.20-29
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    • 2006
  • Herein, 20 species of the ground beetles are reported from Korea. Of these, 5 species, Bembidion serorum (Netolitzky, 1934), Bembidion gebleri nakanei (Jedlicka 1965), Mastax thermarum egorovi (Lafer 1973), Pterostichus jankowskyi (Tschischerine 1897) and Pterostichus longinquus Bates, 1873 are listed for the first time from the Korean Peninsula. Bembidion shimoyamai reported by Paik (1998) and Microlestes imaii reported by Paik and lung (2003) are misidentifications of Bembidion grapii and M. schroederi Holdhaus, respectively.

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Macrochelid mites(Acari: Mesostigmata) associated with dung beetles in Mount Gede-Pangrango National Park, West Java, Indonesia

  • Hartini, Sri;Dwibadra, Dhian
    • Journal of Species Research
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    • v.6 no.2
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    • pp.181-189
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    • 2017
  • Sixteen species of macrochelid mites were collected on the surface of scarab dung beetles in Mount Gede-Pangrango National Park, West Java, Indonesia. Of these, one species, Macrocheles gedeensis sp. nov. is described here as new to science. The other fifteen species were Holostaspella katakurai Hartini and Takaku, 2003, H. oblonga Hartini and Takaku, 2010, H. villosa Hartini and Takaku, 2010, Neopodocinum halimunense Hartini and Takaku, 2003, N. subjaspersi Hartini and Takaku, 2003, Neopodocinum sp., Macrocheles dispar (Berlese, 1910), M. entetiensis Hartini and Takaku, 2005, M. hallidayi Walter and Krantz, 1986, M. jabarensis Hartini and Takaku, 2003, M. kraepelini (Berlese, 1905), M. pumilus Hartini, Dwibadra and Takaku, 2009, M. turgoensis Hartini, Dwibadra and Takaku, 2009, M. sukabumiensis Hartini and Takaku, 2003, and M. sukaramiensis Takaku, 2001.