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Search Word: Suitable habitat, Search Result: 2
1
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.


2
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.


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