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Search Word: Streams, Search Result: 12
1
Jong-Yun Choi(National Institute of Ecology) ; Seong-Ki Kim(National Institute of Ecology) ; Jeong-Cheol Kim(National Institute of Ecology) ; Hyeon-Jeong Lee(National Institute of Ecology) ; Hyo-Jeong Kwon(National Institute of Ecology) ; Jong-Hak Yun(National Institute of Ecology) 2021, Vol.2, No.1, pp.53-61 https://doi.org/10.22920/PNIE.2021.2.1.53
초록보기
Abstract

Distribution of fish community depends largely on environmental disturbance such as habitat change. In this study, we evaluated the impact of environmental variables and microhabitat patch types on fish distribution in Yudeung Stream at 15 sites between early May and late June 2019. We used non-metric multidimensional scaling to examine the distribution patterns of fish in each site. Gnathopogon strigatus, Squalidus gracilis majimae, Zacco koreanus, and Zacco platypus were associated with riffle and boulder areas, whereas Iksookimia koreensis, Acheilognathus koreensis, Coreoleuciscus splendidus, Sarcocheilichthys nigripinnis morii, and Odontobutis interrupta were associated with large shallow areas. In contrast, Cyprinus carpio, Carassius auratus, Lepomis macrochirus, and Micropterus salmoides were found at downstream sites associated with large pool areas, sandy/clay-bottomed areas, and vegetated areas. On the basis of these results, we suggest that microhabitat patch types are important in determining the diversity and abundance of fish communities, since a mosaic of different microhabitats supports diverse fish species. As such, microhabitat patches are key components of freshwater stream ecosystem heterogeneity, and a suitable patch composition in stream construction or restoration schemes will support ecologically healthy food webs.


2
Chulgoo Kim(National Institute of Ecology) ; Jong-Yun Choi(National Institute of Ecology) ; Byungwoong Choi(National Institute of Environmental Research) ; JunSeok Lee(National Institute of Ecology) ; Yonglak Jeon(National Institute of Ecology) ; Taewoo Yi(National Institute of Ecology) 2021, Vol.2, No.4, pp.259-273 https://doi.org/10.22920/PNIE.2021.2.4.259
초록보기
Abstract

We conducted a study to investigate the characteristics of the carbon cycle of two streams (located in Shiga Prefecture, Japan), having similar size, namely, the Adokawa stream (length: 52 km, area: 305 km2, watershed population: 8,000) and the Yasukawa stream (length: 62 km, area: 380 km2, watershed population: 120,000), but with different degree of human activity. Samples were collected from these two streams at 14 (Adokawa stream) and 23 (Yasukawa stream) stations in the flowing direction. The dissolved inorganic carbon (DIC) concentration and the stable carbon isotope ratio of DIC (δ13C-DIC) were measured in addition to the watershed features and the chemical variables of the stream water. The δ13C-DIC (-9.50 ± 2.54‰), DIC concentration (249 ± 76 μM), and electric conductivity (52 ±13 μS/cm) in Adokawa stream showed small variations from upstream to downstream. However, the δ13C-DIC (-8.68 ± 2.3‰) upstream of Yasukawa stream was similar to that of Adokawa stream and decreased downstream (-12.13 ± 0.43‰). DIC concentration (upstream: 272 ± 89 μM, downstream: 690 ± 37 μM) and electric conductivity (upstream: 69 ± 17 μS/cm, downstream: 193 ± 37 μS/cm) were higher downstream than upstream of Yasukawa stream. The DIC concentration of Yasukawa stream was significantly correlated with watershed environmental variables, such as, watershed population density (r = 0.8581, p<0.0001, n = 23), and forest area percentage of the watershed (r = -0.9188, p<0.0001, n = 23). δ13C-DIC showed significant negative correlation with the DIC concentration (r = -0.7734, p<0.0001, n = 23), electric conductivity (r = -0.5396, p = 0.0079, n = 23), and watershed population density (r = -0.6836, p = 0.0003, n = 23). Our approach using a stable carbon isotope ratio suggests that DIC concentration and δ13C-DIC could be used as indicators for monitoring the health of stream ecosystems with different watershed characteristics.


3
Byungwoong Choi(Research Team on Ecological and Natural Map, Division of Ecological Survey Research, National Institute of Ecology) ; Woo Seok Oh(Research Team on Ecological and Natural Map, Division of Ecological Survey Research, National Institute of Ecology) ; Nam Shin Kim(Research Team on Ecological and Natural Map, Division of Ecological Survey Research, National Institute of Ecology) ; Jin Yeol Cha(Research Team on Ecological and Natural Map, Division of Ecological Survey Research, National Institute of Ecology) ; Chi Hong Lim(Research Team on Ecological and Natural Map, Division of Ecological Survey Research, National Institute of Ecology) 2021, Vol.2, No.4, pp.235-246 https://doi.org/10.22920/PNIE.2021.2.4.235
초록보기
Abstract

This study investigated the impact of baseflow on fish community in the Ungcheon stream (16.5 km long) located downstream of the Boryeong Dam, Korea. Based on field monitoring, there were five dominant fish species in the Ungcheon Stream accounting for 75% of the total fish community: Zacco platypus, Zacco koreanus, Tridentiger brevispinis, Rhinogobius brunneus, and Pungtungia herzi. These five fish species were selected as target species. HydroGeoSphere (HGS) and River2D models were used for hydrologic and hydraulic simulations, respectively. A habitat suitability index model was used to simulate fish habitat. To assess the impact of baseflow, each representative discharge was examined with or without baseflow. The HGS model was used to calculate baseflow within the study reach. This baseflow was observed to increase gradually with longitudinal distance. Validation of the hydraulic model demonstrated that computed water surface elevated when baseflow was included, which was in good agreement with measured data, as opposed to the result when baseflow was excluded. Composite suitability index distributions and weighted usable area in the study reach were presented for target species. Simulations indicated that the baseflow significantly increased habitat suitability for the entire fish community. These results demonstrate that there should be a substantial focus on the baseflow for physical habitat simulation.


4
Yong-Su Kwon(Ecobank Team, Division of Ecological Information, National Institute of Ecology) ; Man-Seok Shin(Ecobank Team, Division of Ecological Information, National Institute of Ecology) ; Hee-Nam Yoon(Ecobank Team, Division of Ecological Information, National Institute of Ecology) 2022, Vol.3, No.2, pp.84-96 https://doi.org/10.22920/PNIE.2022.3.2.84
초록보기
Abstract

Most of the islands of Korea are distributed in the South and West Sea, and it consists of independent small stream. As a result, the fish community that inhabits the island's stream is isolated from the mainland and other island. This study utilized a Self-Organizing Map (SOM) and a random forest model to analyze the relationship between environmental variables and fish communities inhabiting islands in South Korea. Through the SOM analysis, the fish communities were divided into three clusters, and there were differences in biotic and abiotic factors between these groups. Cluster I consisted of sites with relatively larger island areas and a higher number of species and population. It was found that 15 out of 16 indicator species were included. Meanwhile, the remaining clusters had fewer species and populations. Cluster II, especially, showed the lowest impact from physical variables such as water width and depth. As a result of predicting the species richness using the random forest model, physical variables in habitats, such as stream width and water depth, had a relatively higher importance on species richness. On the other hand, forest area was the most important variables for predicting Shannon diversity, followed by maximum water depth, and gravel. The results suggest that this study can be used as basic data for establishing a stream ecosystem management strategy in terms of conservation and protection of biological resources in streams of islands.


5
Yujin Kang(Graduate School of Environmental Studies, Seoul National University) ; Wonhyeop Shin(Integrated Major in Smart City Global Convergence, Seoul National University) ; Jiweon Yun(Graduate School of Environmental Studies, Seoul National University) ; Yonghwan Kim(Graduate School of Environmental Studies, Seoul National University) ; Youngkeun Song(Graduate School of Environmental Studies, Seoul National University) 2022, Vol.3, No.1, pp.54-65 https://doi.org/10.22920/PNIE.2022.3.1.54
초록보기
Abstract

Species distribution models are a useful tool for predicting future distribution and establishing a preemptive response of invasive species. However, few studies considered the possibility of habitat for the aquatic organism and the number of target sites was relatively small compared to the area. Environmental DNA (eDNA) is the emerging tool as the methodology obtaining the bulk of species presence data with high detectability. Thus, this study applied eDNA survey results of Micropterus salmoides and Lepomis macrochirus to species distribution modeling by seasons in the Anyang stream network. Maximum Entropy (MaxEnt) model evaluated that both species extended potential distribution area in October compared to July from 89.1% (12,110,675 m2) to 99.3% (13,625,525 m2) for M. salmoides and 76.6% (10,407,350 m2) to 100% (13,724,225 m2) for L. macrochirus. The prediction value by streams was varied according to species and seasons. Also, models elucidate the significant environmental variables which affect the distribution by seasons and species. Our results identified the potential of eDNA methodology as a way to retrieve species data effectively and use data for building a model.


6
Yeounsu Chu(Wetlands Research Team, Wetland Center, National Institute of Ecology) ; Jungdo Yoon(Wetlands Research Team, Wetland Center, National Institute of Ecology) ; Kwang-Jin Cho(Wetlands Research Team, Wetland Center, National Institute of Ecology) ; Mijeong Kim(Wetlands Research Team, Wetland Center, National Institute of Ecology) ; Jeongcheol Lim(Wetlands Research Team, Wetland Center, National Institute of Ecology) ; Changsu Lee(Wetlands Research Team, Wetland Center, National Institute of Ecology) 2021, Vol.2, No.1, pp.42-52 https://doi.org/10.22920/PNIE.2021.2.1.42
초록보기
Abstract

Areas (WPA) were classified based on their habitat characteristics and on the analysis of their emergent fish communities, as estuarine (n=2), coastal dune (n=1), marsh (n=2), stream (n=2), and stream-marsh (n=1) types. The environmental factors revealed to have the greatest influence on the species diversity of emergent fish were maintenance and repair, installation of reservoirs, and construction of artificial wetlands around them. The present study offers basic information on the diversity of fish species in different Wetland Protected Area types that can be used to inform conservation and management decisions for WPA.


7
Seung Woo Han(Institute for Sustainable Development, Seoul National University) ; Sung Yong Han(Korean Otter Research Center) 2022, Vol.3, No.1, pp.1-6 https://doi.org/10.22920/PNIE.2022.3.1.1
초록보기
Abstract

Among the 13 species of otters in the world, only one Eurasian otter (Lutra lutr) is found in South Korea. In the Korean Peninsula, otter pelts were historically valuable and expensive commodities used for international trade, and otters have long been poached as hunting animals. Recent rapid economic development in South Korea has increased habitat fragmentation and loss, creating a continuing threat to the natural environment. Otters live only in the area of rivers and streams as a family group and are territorial (linear habitat). Due to these limited conditions of otter habitat, the population size of otter is lower than that of onshore mammals. According to recent research, DNA analyses using microsatellite markers have shown that only approximately 7-21 otter individuals inhabit river systems for a length of 50-230 km. Korea's urban streams are associated with many threats that hinder otters from inhabiting them. Many areas around the urban streams are surrounded by high concrete riverbanks, and the risk of roadkill is also high. Nevertheless, ecological restoration projects in the urban rivers will contribute greatly to the stable inhabitation of otters. Detailed otter conservation strategies, such as the elimination of threat factors, improvement of habitat environment, and restoration of food resources and shelter, will provide a positive restoration effect on otter and river ecosystems as well.


8
Jun-Kyu Park(Department of Biological Science, Kongju National University) ; Nakyung Yoo(National Institute of Ecology, Research Center for Endangered Species) ; Yuno Do(Department of Biological Science, Kongju National University) 2021, Vol.2, No.2, pp.120-128 https://doi.org/10.22920/PNIE.2021.2.2.120
초록보기
Abstract

The objective of this study was to analyze the genotype of black-spotted pond frog (Pelophylax nigromaculatus) using seven microsatellite loci to quantify its genetic diversity and population structure throughout the spatial scale of basins of Han, Geum, Yeongsan, and Nakdong Rivers in South Korea. Genetic diversities in these four areas were compared using diversity index and inbreeding coefficient obtained from the number and frequency of alleles as well as heterozygosity. Additionally, the population structure was confirmed with population differentiation, Nei’s genetic distance, multivariate analysis, and Bayesian clustering analysis. Interestingly, a negative genetic diversity pattern was observed in the Han River basin, indicating possible recent habitat disturbances or population declines. In contrast, a positive genetic diversity pattern was found for the population in the Nakdong River basin that had remained the most stable. Results of population structure suggested that populations of black-spotted pond frogs distributed in these four river basins were genetically independent. In particular, the population of the Nakdong River basin had the greatest genetic distance, indicating that it might have originated from an independent population. These results support the use of genetics in addition to designations strictly based on geographic stream areas to define the spatial scale of populations for management and conservation practices.


9
Dong-Soo Ha(Eco-institute for Oriental Stork, Korea National University of Education) ; Su-Kyung Kim(Eco-institute for Oriental Stork, Korea National University of Education) ; Yong-Un Shin(Natural Heritage Division, Cultural Heritage Administration) ; Jongmin Yoon(Research Center for Endangered Species, National Institute of Ecology) 2021, Vol.2, No.4, pp.293-297 https://doi.org/10.22920/PNIE.2021.2.4.293
초록보기
Abstract

The oriental stork (Ciconia boyciana) is listed as an endangered species internationally. Its resident population has been extirpated in South Korea since 1971. Its predicted historical habitat included forests (54%), rice paddy fields (28%), grasslands (17%), river-streams (less than 1%), and villages (less than 1%) based on pre-extirpation records in a previous study. However, habitat attributes of recently reintroduced oriental storks since 2015 remain unknown. To examine habitat use patterns and home ranges of recently reintroduced oriental storks, 2015-2017 tracking data of 17 individuals were used to analyze their spatial attributes with a Kernel Density Estimate method and breeding status. Their habitat use patterns from peripheral to core areas were highly associated with increasing rice paddy fields (26%) and decreasing forested areas (55%). Scale-dependent home ranges were 51% smaller for breeders than for non-breeders on average. Our study results highlight that the habitat use pattern of reintroduced oriental storks seems to be comparable to the historical pattern where the used area is likely to be more centralized for breeders than for non-breeders in South Korea. Furthermore, the direction of habitat management for oriental storks should focus on biodiversity improvement of rice paddy fields with chemical free cultivation and irrigation.


10
Yoonjeong Heo(School of Biological Sciences, Seoul National University) ; Hyohyemi Lee(National Institute of Ecology) 2022, Vol.3, No.2, pp.115-121 https://doi.org/10.22920/PNIE.2022.3.2.115
초록보기
Abstract

The Yezo sika deer (Cervus nippon yesoensis) is a subspecies of sika deer originated from Hokkaido, Japan. This paper is a study on the ecological impact caused by large mammals invading the ecosystem. Two pairs of deer were donated to the Agency for Defense Development in Taean in the late 1980s, and the population expanded to over 280 in 2018. The thermal imaging camera showed that the population ranged from 8 to 53 herds, divided into approximately 10 groups. It was confirmed that some of the herds had escaped the management area and invaded the nearby natural ecosystem, causing damage to cultivated land and natural vegetation. Herds of over 50 individuals have been studied in large grassland areas near drinking water sources such as streams and ponds. In places with excessive deer concentration, 1) feeding damage to herbs, shrubs and sub-trees, 2) tree withering due to antler-rubbing, and their habit of migrating along forest edges 3) excessive soil loss on slopes, 4) destruction of herbaceous layers due to compaction, and finally 5) damage to infrastructure were also investigated. As such, it is expected that the results of this study on the ecological and economic damage of Yezo sika deer can be used to predict the impact of other exotic sika deer in South Korea with similar behavioral characteristics and to establish a management plan.


Proceedings of the National Institute of Ecology of the Republic of Korea