• Title/Summary/Keyword: Rana plancyi chosenica

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PCR Detection of Ranavirus in Gold-spotted Pond Frogs (Rana plancyi chosenica) from Korea

  • Kim, Suk;Sim, Mi-Yeong;Eom, Ahn-Heum;Park, Dae-Sik;Ra, Nam-Yong
    • Korean Journal of Environmental Biology
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    • v.27 no.1
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    • pp.110-113
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    • 2009
  • In recent years, there has been a rapid global decline in amphibian populations, and infectious diseases have been associated with this decline. Diseased Gold-spotted pond frogs (Rana plancyi chosenica) were collected from a frog farm in Korea and identified using morphological and molecular analysis to identify the disease. The typical symptoms of ranaviral infection were observed in the tadpoles and adults frogs. The nucleotide sequence analysis revealed that the sequences showed the closest similarity with sequences to Frog virus 3, which belongs to the genus Ranavirus.

Growth of Golden Frog Larvae, Rana plzancyi chosenica by Different Food Types (먹이 종류에 따른 금개구리 (Rana plancyi chosenica)유생의 성장)

  • Ra, Nam-Yong;Lee, Jung-Hyun;Park, Dae-Sik
    • Korean Journal of Environmental Biology
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    • v.25 no.1
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    • pp.8-15
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    • 2007
  • In order to develop an efficient feed for successful growth of Golden frog, Rana plancyi chosenica, larvae, we compared and analyzed the growth of the frog larvae, supplying four different food types. The growth of Golden frog larvae fed a vegetable food of spirogyra and cabbages and a mixture of vegetable and animal foods, TetraMin, a commercial fish food, or eel feed, was faster than that of the larvae fed only organic matters and vegetables collected from natural habitats. Among artificial food types, the mixture of vegetable and animal foods was more efficient for larval growth than the vegetable food. For the successful metamorphosis, the mixture of vegetable food and Tetramin was the most efficient food, comparing other types of food. These results suggest that a mixture of vegetable and animal food mixed in an appropriate proportion would be the most efficient artificial feed for the successful growth and metamorphosis of Golden frog larvae.

Preferred Feeding Sites and Prey of the Adult Gold-spotted Pond Frog, Rana plancyi chosenica

  • Eom, Jun-Ho;Lee, Jung-Hyun;Ra, Nam-Yong;Park, Dae-Sik
    • Journal of Ecology and Environment
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    • v.30 no.4
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    • pp.357-361
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    • 2007
  • To determine the feeding sites preferred by adult gold-spotted pond frogs, Rana plancyi chosenica, and the foods that induce favorable growth of the frogs in the laboratory, we conducted two separate experiments between 27 May and 12 July 2007 in a vivarium. In the first experiment, we counted the number of crickets eaten by four gold-spotted pond frogs in a 60 min period at four different feeding sites within the experimental arenas: on the water surface, at the edge of a pond, and at two terrestrial sites. Adult gold-spotted pond frogs ate more crickets on the water surface and at the edge of the pond than the terrestrial sites. In the second experiment, we measured the growth of SVL (snout-vent length) and body mass of adult gold-spotted pond frogs fed crickets, mealworms, maggots, or earthworms in individual experimental boxes over a one month period. The SVL and body mass of the adult gold-spotted pond frogs fed crickets, mealworms, or maggots were greater than those of the frogs that were fed earthworms. These results indicate that providing crickets, mealworms, or maggots on the water or at the edge of a pond should induce favorable growth of captive-reared adult gold-spotted pond frogs.

Studies on the Change of Isozyme Patterns of Lactate and Malate Dehydrogenases During Embryonic Development of Some Amphibians (兩棲類 胚發生에 EK른 Lactate Dehydrogenase 및 Malate Dehydrogenase의 Isozyme 변화에 관하여)

  • Park, Young-Chul;Ha, Doo-Bong
    • The Korean Journal of Zoology
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    • v.23 no.4
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    • pp.263-272
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    • 1980
  • Polyacrylamide gel electrophoresis was used to investigate the patterns of LDH and MDH isozymes in the embryo and adult of amphibia; Rana nigromaculata, Rana plancyi chosenica and Hynobius leechii. Rana nigromaculata is considered to be heterozygous for the gene specifying the "B" subunit of LDH, and Hynobius leechii to be heterozygous for the gene specifying the "A" subunit of LDH. The LDH isozyme paatern of embryos of the above three species is characterized by a gradual increase in the activity of LDH-5 (muscular form)during development. Two or three molecular forms of MDH is present steadily from early embryos and in adult. Of the MDH isozymes, the more cathodic one (MDH-m) appears weakly in early developing stages, but increases slowly in the activity as the embryo develops.the embryo develops.

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Genetic Diversity among Local Populations of the Gold-spotted Pond Frog, Rana plancyi chosenica (Amphibia: Ranidae), Assessed by Mitochondrial Cytochrome b Gene and Control Region Sequences

  • Min, Mi-Sook;Park, Sun-Kyung;Che, Jing;Park, Dae-Sik;Lee, Hang
    • Animal Systematics, Evolution and Diversity
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    • v.24 no.1
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    • pp.25-32
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    • 2008
  • The Gold-spotted pond frog, Rana plancyi chosenica, designated as a vulnerable species by IUCN Red list. This species is a typical example facing local population threats and extinction due to human activities in South Korea. A strategic conservation plan for this endangered species is urgently needed. In order to provide information for future conservation planning, accurate information on the genetic diversity and taxonomic status is needed for the establishment of conservation units for this species. In this study, we used a molecular genetic approach using the mitochondrial cytochrome b gene and control region sequences to find the genetic diversity of gold-spotted pond frogs within South Korea. We sequenced the mitochondrial DNA cytochrome b gene and control region of 77 individuals from 11 populations in South Korea, and one from Chongqing, China. A total of 15 cytochrome b gene haplotypes and 34 control region haplotypes were identified from Korean gold-spotted pond frogs. Mean sequence diversity among Korean gold-spotted pond frogs was 0.31% (0.0-0.8%) and 0.51% (0.0-1.0%), respectively. Most Korean populations had at least one unique haplotype for each locus. The Taean, Ansan and Cheongwon populations had no haplotypes shared with other populations. There was a sequence divergence between Korean and Chinese gold-spotted pond frogs (1.3% for cyt b; 2.9% for control region). Analysis of genetic distances and phylogenetic trees based on both cytochrome b and control region sequences indicate that the Korean gold-spotted pond frog are genetically differentiated from those in China.

Reproductive Dynamics of the Gold-spotted Pond Frog (Rana plancyi chosenica) Population Located at Cheongwon, Korea (청원군에 소재한 금개구리(Rana plancyi chosenica) 개체군의 번식동태)

  • Sung, Ha-Cheol;Ra, Nam-Yong;Cheong, Seok-Wan;Kim, Soo-Kyeong;Cha, Sang-Min;Park, Dae-Sik
    • Korean Journal of Environmental Biology
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    • v.27 no.1
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    • pp.20-30
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    • 2009
  • To study reproductive dynamics of a Gold-spotted pond frog (Rana chosenica) population located at Gangnae, Cheongwon, Chungbuk, Korea, we monitored the population over 207 days between April 17$^{th}$ 2007 and December 18$^{th}$ 2008 using a drift fence accompanied with 20 pitfall traps. The population was located in an agricultural wetland, compromising three small ponds. Gold-spotted pond frogs immigrated into the wetland between April 16$^{th}$ and June 17$^{th}$ and emigrated from the wetland between September 21$^{st}$ and November 12$^{th}$. Precipitation showed a positive correlation with the number of migrated frogs in Autumn 2007 and Spring 2008, but other environmental factors such as air and water temperatures and relative humidity did not show any significant relationships. In general, small frogs first migrated into and from the wetland, but the trend was not strong. Female gold-spotted pond frogs were bigger than males. During the autumn migration, small frogs of which snout-vent length was smaller than 20 mm were found, indicating that successful breeding occurred in the population. Our results could be useful to conserve this endangered species in Korea.

Colonization and Extinction Patterns of a Metapopulation of Gold-spotted Pond Frogs, Rana plancyi chosenica

  • Park, Dae-Sik;Park, Shi-Ryong;Sung, Ha-Cheol
    • Journal of Ecology and Environment
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    • v.32 no.2
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    • pp.103-107
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    • 2009
  • We investigated colonization and extinction patterns in a meta population of the gold-spotted pond frog (Rana planeyi ehoseniea) near the Korea National University of Education, Chungbuk, Korea, by surveying the frogs in the nine occupied habitat patches in the study area four times per breeding season for three years (2006$\sim$2008) and recording whether the patches were occupied by frogs as well as how many frogs were calling in the patches. We then developed five a priori year-specific models using the Akaike Information Criterion (AIC). The models predicted that: 1) probabilities of colonization and local extinction of the frogs were better explained by year-dependent models than by constant models, 2) there are high local extinction and low colonization probabilities, 3) approximately 31% number of patches will be occupied at equilibrium, and 4) that considerable variation in occupation rate should occur over a 30-year period, due to demographic stochasticity (in our model, the occupation rate ranged from 0.222 to 0.889). Our results suggest that colonization is important in this metapopulation system, which is governed by mainly stochastic components, and that more constructive conservation effects are needed to increase local colonization rates.

Detection of Infectious Fungal Diseases of Frogs Inhabiting in Korea

  • Kim, Suk;Eom, Ahn-Heum;Park, Dae-Sik;Ra, Nam-Yong
    • Mycobiology
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    • v.36 no.1
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    • pp.10-12
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    • 2008
  • In recent years, there has been a rapid decrease in amphibian populations worldwide, and infectious diseases have been associated with this decline. Diseased frogs inhabiting Korea were collected from fields, and the diseases were identified by morphological and molecular analyses. Two fungal diseases-saprolegniasis and chromomycosis-were detected in the frogs. Saprolegniasis caused by Saprolegnia spp. was found in Rana plancyi chosenica from Gangwon-do and Rana huanrenensis from Chungbuk. Chromomycosis, which is caused by infection with Cladosporium cladosporioides, was detected in Rana catesbeiana from Busan.

Planning for Amphibians Habitats in Urban Forest Wetlands, Korea (도시 산림습지 내 양서류 서식처 조성방안 연구)

  • Hur, Myung-Jin;Han, Bong-Ho;Kwak, Jeong-In
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.20 no.6
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    • pp.1-19
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    • 2017
  • This study set out to identify problems with amphibian habitation by the wetland types and improve their habitation environment in urban forest wetlands, thus creating a habitat for amphibians. Study site include forest swamps in Jatjul Park as well as Yeoji neighborhood Park in Guro-gu, and in Choansan neighborhood Park in Dobong-gu. The forest swamp in Jatjul Park gets its water from Mt. Maebong and it is a former escalated farmland-turned wetland. The swamp area is $2,500m^2$, a forest zone and a landscape planting site are 83.27% and 6.70% each. Target species Seoul pond frogs are inseparable from rice fields because they live in a short radius of and lay eggs in or near paddy fields, and Rana nigromaculata have similarities with Rana plancyi chosenica in choosing their habitats. There was need for paths that would lead to other paths so amphibians would spread to other parts of the forest and for measures to secure open water. Modifying a variety of routes for water, human and animals along with building a buffer to keep the core habitation zones were required. The forest swamp in Yeonji neighborhood Park used to be a water reservoir on the foot of Mt. Gunji. The swamp area is $1,980m^2$, a forest zone and farmland account for 80.61% and 4.88% each. Non-point pollutants from upstream along run into the subject forest marsh, bare ground on the around swamp and steep stone embankments obstructed amphibians. Target species was Bufo gargarizans that live in forests and edges of hills and spawn in deep water. The forest swamp in Choansan neighborhood Park gets its water from Mt. Choan and it is close to its water source that it is a mountain stream forest wetland. The basin and the swamp are $35,240m^2$ and $250m^2$ in size respectively. A forest zone accounts for 90.20%, high stone embankments laid in refurbishing the valley obstruct amphibians and there is water shortage in times of droughts. Target species were Rana coreana, Rana dybowskii and Hynobius leechii that live in mountain valleys, streams and wetlands and lay eggs in forest marshes and rocks in valleys. Looking into the three swamps of amphibian habitation, I came to conclusions that those wetlands were suitable for their amphibians but man-made facilities blocked their corridors leading to other corridors and even killed off target species in some parts of those swamps by destroying those parts. Amphibians live in water, on ground and underground at different stages of life. Hence, we should take this fact into consideration when planning their habitats and design core habitation zones, buffers zone and use zones accordingly. Buffer zones ought to be between core habitation zones and surrounding trees. Aiming at protecting core habitation zones, buffers should be in harmony with habitation zones. Use zones should be minimized in size and not in direct contact with core habitation zones.

The Management Methods of Multi-Purpose Ecological Reservoir by System Thinking - Focused on Anteo Eco Park - (시스템 사고를 통한 다기능 생태저류지의 관리방안 - 광명 안터생태공원을 중심으로 -)

  • Lee, HyunJi;You, Soojin;Chon, Jinhyung
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.18 no.2
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    • pp.1-17
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    • 2015
  • Ecological reservoir is a multifunctional space where provides the functions of retention, animal habitat and improvement of ecosystem health and landscape. The ecological reservoir of Anteo Eco Park located in Gwangmyeong-si has established to functions for water purification, maintenance of healthy aquatic ecosystem. Because the Anteo Eco Park is located in the site where nonpoint pollutant materials flow in, Anteo Eco Park has potential factors which aquatic ecosystem health deteriorates and damages the habitat of golden frog(Rana plancyi chosenica) which is restoration target species. Therefore, the purpose of this study is to suggest the plan to manage the variables which impede the right functions of aquatic ecosystem by understanding the causal loop diagram for the change of water quality environment and the interaction of predator-prey through system thinking. The results are as follows. First, the study showed that the individual number of golden frog which is an indicator species of Anteo Eco Park is threatened by snakeheaded fish, which is an upper predator. Therefore, balanced food chain should be hold to protect golden frog by capturing the snakeheaded fish which is individual number's density is high, and the monitoring management of the individual number for predator(snakeheaded fish)-prey(golden frog) should be performed. Second, the study represented that water pollution and carnification is caused by the sediment as the dead body of the large emergent vegetation in the winter cumulates as sediment. Ecological reservoir in Anteo Eco Park has been managed by eliminating the dead body of the large emergent vegetation, but the guideline for the proper density maintenance of vegetation community is additionally needed. Lastly, the study showed that aquatic ecosystem of Anteo Eco Park where is contaminated from the inflow of nonpoint pollutants affects the individual number's decline of golden frog and snakeheaded fish. Accordingly, the creation of a buffer area and a substitution wetland is needed in the periphery of the Anteo Eco Park to control the inflow of nonpoint pollutants including organic matters, nutrients and heavy metals. This study will be helpful that Anteo Eco Park improves the regional landscape and maintain healthy aquatic ecosystem space for the park visitors including local residents.