• Title/Summary/Keyword: 거북류 모니터링

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Current Status of Exotic Turtles Found in Jungnang Stream Located in Urban Area, Seoul, Republic of Korea (한국의 서울 도심에 위치한 중랑천의 외래거북 현황)

  • Seung-Min Park;Jea-Hyeok Choi;Jung-Suk Lee;Ha-Cheol Sung
    • Korean Journal of Environment and Ecology
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    • v.37 no.4
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    • pp.251-258
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    • 2023
  • Invasive species are introduced for various purposes, such as pets and food, and the trade of reptiles among them has continuously increased due to their unusual or rare external character traits. As their imports increase, the number of exotic reptiles in the wild is also increasing, and most of the recently discovered exotic turtles have been found near urban areas. Therefore, this study aims to report the current status of exotic turtles inhabiting the Jungnang Stream in downtown Seoul, Republic of Korea. As a result of the survey, seven species of exotic turtles were identified: Chrysemys picta picta, Pseudemys concinna, P. nelsoni, Trachemys scripta elegans, T. s. scripta, T. s. troostii, and Mauremys sinensis. One native turtle species was found: Pelodiscus maackii. Six species are designated as "ecosystem disturbance species" in the Republic of Korea. The dominant species was P. concinna, and C. p. picta, which is still traded in pet shops, was also found. The results have confirmed the current status of exotic turtles in urban rivers, and it was determined that the results show that they are continuously entering the wild.

Feasibility of Environmental DNA Metabarcoding for Invasive Species Detection According to Taxa (분류군별 외래생물 탐지를 위한 환경 DNA 메타바코딩 활용 가능성)

  • Yujin Kang;Jeongeun Jeon;Seungwoo Han;Suyeon Won;Youngkeun Song
    • Journal of Environmental Impact Assessment
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    • v.32 no.2
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    • pp.94-111
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    • 2023
  • In order to establish an effective management strategy for invasive species early detection and regular monitoring are required to assess their introduction or dispersal. Environmental DNA (eDNA) is actively applied to evaluate the fauna including the presence of invasive species as it has high detection sensitivity and can detect multiple species simultaneously. In Korea, the applicability evaluation of metabarcoding is being conducted mainly on fish, and research on other taxa is insufficient. Therefore, this study identified the feasibility of detecting invasive species in Korea using eDNA metabarcoding. In addition, to confirm the possibility of detection by taxa, the detection of target species was evaluated using four universal primers (MiFish, MiMammal, Mibird, Amp16S) designed for fish, mammals, birds, and amphibians. As a result, target species (Trachemys scripta, 3 sites; Cervus nippon, 3 sites; Micropterus salmoides, 7 sites; Rana catesbeiana, 4 sites) were detected in 17 of the total 55 sites. Even in the selection of dense sampling sites within the study area, there was a difference in the detection result by reflecting the ecological characteristics of the target species. A comparison of community structures (species richness, abundance and diversity) based on the presence of invasive species focused on M.salmoides and T.scripta, showed higher diversity at the point where invasive species were detected. Also, 1 to 4 more species were detected and abundance was also up to 1.7 times higher. The results of invasive species detection through metabarcoding and the comparison of community structures indicate that the accumulation of large amounts of monitoring data through eDNA can be efficiently utilized for multidimensional ecosystem evaluation. In addition, it suggested that eDNA can be used as major data for evaluation and prediction, such as tracking biological changes caused by artificial and natural factors and environmental impact assessment.