• Title/Summary/Keyword: Opiliones

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Morphological study on a new opilionid species recorded from Turkey: Paranemastoma karolianus sp. n. (Opiliones: Nemastomatidae) (터키산 통거미 신종의 형태학적 연구: Paranemastoma karolianus sp.)

  • Ocal, Ilkay Corak;Bayram, Abdullah;Yigit, Nazife;Sancak, Zafer
    • Korean journal of applied entomology
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    • v.56 no.3
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    • pp.241-247
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    • 2017
  • In this study, a new opilionid species of Paranemastoma Redikorzevi, 1936 is described from northern Turkey. Fine structures of extremities, dorsal integument and genitalia of Paranemastoma karolianus sp. n. are presented. Differences between the new species and related species are discussed.

Fine Structure of the Neuroganglia in the Central Nervous System of the Harvestman Leiobunum japonicum (Arachnida: Opiliones)

  • Park, Yong-Ki;Gu, Hye-Yoon;Kwon, Hyun-Jung;Kim, Hoon;Moon, Myung-Jin
    • Applied Microscopy
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    • v.48 no.1
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    • pp.17-26
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    • 2018
  • The characteristic features of the arachnid central nervous system (CNS) are related to its body segmentation, and the body in the Opiliones appears to be a single oval structure because of its broad connection between two tagmata (prosoma and opisthosoma). Nevertheless, structural organization of the ganglionic neurons and nerves in the harvestman Leiobunum japonicum is quite similar to the CNS in most other arachnids. This paper describes the fine structural details of the main groups of neuropiles in the CNS ganglia revealed by the transmission electron microscopy. In particular, electron-microscopic features of neural clusters in the main neuroganglia of the CNS (supraesophageal ganglion, protocerebral ganglion, optic lobes, central body, and subesophageal ganglion) could provide indications for the nervous pathways associated with nerve terminations and plexuses. The CNS of this harvestman consists of a supraesophageal ganglion (brain) and a subesophageal mass, and there are no ganglia in the abdomen. Cell bodies of neuroganglia are found in the periphery, but central parts of the ganglia are mostly fibrous in all ganglia. Neuroglial cells occupy the spaces left by nerve cells. Since the nerve cells in the ganglia are typical composed of monopolar neurons, axons and dendrites of neurons are distributed along the same direction.

Effects of Clear-cutting on Forest Arthropod Communities at Two Different Vertical Levels (Crown and Ground Surface) (산림 벌채가 산림의 수관 및 지표 절지동물 군집에 미치는 영향)

  • Park, Young-Seuk;Park, Young Kyu;Yang, Hee Moon
    • Korean Journal of Ecology and Environment
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    • v.49 no.4
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    • pp.271-278
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    • 2016
  • Forest clear-cutting operations influence biodiversity through habitat changes and food resource availability for inhabitant species. This study examined the effects of clear-cutting on forest arthropod communities. Arthropods were collected from two different forest treatment areas (clear-cut and control) in summer and autumn. In each treatment area, arthropods were sampled from both crown and ground surfaces using sweeping and pitfall trap methods, respectively. Then, the taxonomic order of the collected arthropod specimens was easily identified. Results indicate that arthropod abundance and number of taxa present were higher at ground surface than at crown levels in both clear-cut and control areas. At crown level, more homopteran species were present in clear-cut areas than in control areas in summer. At ground surface, populations of Isopoda and Opiliones were higher in control areas than in clear-cut areas, whereas numbers of Araneae, Orthoptera, and Hymenoptera were greater in clear-cut areas. Cluster analysis and principal component analysis showed distinct differences between clear-cut and control communities at crown level in summer and at ground surface in autumn. Thus, our results indicate that clear-cutting significantly influences arthropod communities, and higher taxa are valuable for conducting rapid biological assessments of ecosystem disturbances.