• Title/Summary/Keyword: East island

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Comprehensive and synthetic inventory of Dokdo Island, Republic of Korea

  • Ui Wook Hwang;Hyun Soo Rho;Bia Park;Eun Hwa Choi;Cho Rong Shin;Sa Heung Kim;Jongrak Lee;Hack Cheul Kim;Mann Kyoon Shin;Taeseo Park;Jumin Jun;Heegab Lee;Jong Eun Lee;Yoon Sik Oh;Jung-Goo Myoung;Chang Geun Choi;Jin Hee Park;Seon-joo Park;Jimin Lee;Jaeho Lee;Hyeok Yeong Kwon;Kyu Tae Park;Chun Woo Lim;Seung Wook Jung;Mi Jin Lee;Yucheol Lee;Yeongheon Shin;Hee-Jung Choi;Young Wook Lee;Hyun Jong Kil;Jin-Han Kim;Myung-Suk Kang;Eun-Young Lee;Sang-Hwa Lee;Young Hyo Kim;Jongwoo Jung;Kuem Hee Jang;Young Jin Lim;Shi Hyun Ryu;Won-Gi Min;Joo Myun Park;Hyojin Lee;Minsu Woo;Yun-Bae Kim;Sehun Myoung
    • Journal of Species Research
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    • v.12 no.spc
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    • pp.1-69
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    • 2023
  • This study aims to establish a comprehensive, synthetic inventory system for the fauna and flora of Dokdo Island, Republic of Korea, which has been conducted by a specialized research group consisting of more than 50 experts. The research was conducted over five years(2015-2019) and supported by the National Institute of Biological Resources, Ministry of Environment, Republic of Korea. All possible publications on the fauna and flora of Dokdo Island over the last 68 years from 1952 to 2020 were reviewed. As a result, 1,302 species were found on Dokdo Island during the study period. An updated list of 1,963 species was created. This is expected to be of great help for the conservation and national publicity of important indigenous biological resources of Dokdo Island.

Seasonal Characteristics of Todarodes pacificus Paralarval Distribution in the Northern East China Sea (북부 동중국해 살오징어(Todarodes pacificus) 유생분포의 계절특성)

  • Kim, Jung Jin;Kim, Cheol-Ho;Lee, Joon-Soo;Kim, Suam
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.47 no.1
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    • pp.59-61
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    • 2014
  • We conducted eight surveys in the northern East China Sea (ECS) in winter (February - April), summer (July), and autumn (October) 2004-2009, to investigate the seasonal distribution of T. pacificus. A total of 482 paralarvae, ranging in mantle length (ML) from 1.0 - 17.0 mm, were collected at 73 out of 181 stations. There were higher numbers of paralarvae during the winter and summer months than in the autumn. There was significant seasonal variation in the paralarval mantle lengths; mantle lengths were longer in winter (April) than in summer (July). The position of oceanic fronts in the study area played an important role in restricting paralarval distribution along the inshore edge of the Tsushima Warm Current (TWC). When the TWC expanded to western Jeju Island in winter and autumn, the paralarval distribution range extended to include western Jeju Island. However, when the TWC was located southeast of Jeju Island in the summer, paralarvae were distributed along the frontal zone off southeast Jeju Island. Sites at which paralarval mantle length was <2.0 mm ML indicated that the spawning ground were likely to be within the northern ECS in winter and summer, but north of the study area in autumn.

TEMPORAL AND SPA TIAL VARIATION OF NIGHTTIME FISHING GROUND DERIVED FROM SATELLITE IMAGERY

  • Kim Sang-Woo;Jeong Hee-Dong;Suh Young-Sang;Go Woo Jin;Jang Lee-Hyun
    • Proceedings of the KSRS Conference
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    • 2005.10a
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    • pp.437-440
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    • 2005
  • We examined the relationship between the 50m temperature estimated by remote sensing sea surface temperature (SST) and fishing ground (squid fishing ground) detected by nighttime visible channel defense meteorological satellite program (DMSP) I operational linescan system (OLS) images in the East/Japan Sea during 1993-2000. The results are as follows: The numbers of nighttime fishing boat were distributed the highest in October, and the lowest in April during this study. A nighttime fishing grounds have concentrated in the East Korea Warm Current region, coastal regions of Honshu Island, and Polar front region. Fishing grounds have distributed $11-18^{\circ}C$ of estimated 50m temperature from the satellite data. Relationship between estimated 50m temperature and the distributed fisheries boats showed that the north boundaries of fishing grounds have distributed the temperature of below $12^{\circ}C$ from 1996 to 2000 and that of $13-15^{\circ}C$ during 1993-1995 and 1997-1999. Stable fishing grounds appeared near the Korea/Tsushima Strait from January to March. The center of fishing grounds in spring (April-Jun) have moved to the northward than that in winter, and variations appeared largely in winter. In summer (July-September), center of fishing grounds have formed near the Uleung Island in the south east coast of Korea, and in autumn maximum fishing ground appeared in October, the fishing ground southward from November.

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Caprellids (Amphipoda, Caprellidae) from the East Sea in Korea (한국 동해 해역의 바다대벌레류 (단각목))

  • 이경숙;이창목
    • The Korean Journal of Zoology
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    • v.36 no.3
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    • pp.353-366
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    • 1993
  • This study on Korean capreilids (Amphipoda, Capreiiidae) was based on the materlais collected from 23 locailties in the coast of the East Sea and the Ulrung Island. 17 species of genus Caprella were identified. Among them, 3 species are newly reported from Korea: Caprella cristibrachium Mayer, 1903, C. linearis (Linnaeus, 1767) and C. mixta Mayer, 1903. 6 species are new records from the East Sea: Caprella brevirostris Mayer, 1903, C. decipiens Mayer, 1890, C. equilibra Say, 1818, C. gigantochir Mayer, 1903, C. tsugarensis Utinomi, 1947 and C. verrucosa Boeck, 1872. As a result, Korean caprellid fauna consists of 5 genera, 30 species.

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Dinoflagellate Cyst Distribution in the Surface Sediments from the East China Sea around Jeju Island (제주를 중심으로 한 동중국해 표층 퇴적물에서의 와편모조류 시스트 분포 특성)

  • 조현진;이준백;문창호
    • Korean Journal of Environmental Biology
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    • v.22 no.1
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    • pp.192-199
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    • 2004
  • The distribution of dinofagellate cysts in the top-3 cm surface sediment samples collected from the East China Sea around Jeju Island was investigated in 18 stations of the sea. Twenty-two different types of Dinoflagellate cysts were recorded in this study, among which Spiniferites bulloideus occupied a predominant species in most of all the stations. Dinoflagellate cyst concentration varied from 6 (st. B3) to 3,645 (st. A5) cysts $g^{-1}$, and generally increased toward the northern part of Jeju Island (Part 1) rather than the southern part (Part 2); in the former average value was 183 cysts $g^{-1}$, while that in the latter was 1,144 cysts$g^{-1}$. Compared with the other reports which investigated dinoflagellate cyst concentrations and distributions in the East China Sea, the results in this study showed very similar pattern to those.

Genetic Population Structure and Phylogenetic Relationship of the Large-footed Bat (Myotis macrodactylus) on Jeju Island (제주도 큰발윗수염박쥐(Myotis macrodactylus)의 유전적 집단 구조와 계통 유연관계)

  • Kim, Yoo-Kyung;Park, Su-Gon;Han, Sang-Hoon;Han, Sang-Hyun;Oh, Hong-Shik
    • Journal of Life Science
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    • v.26 no.7
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    • pp.749-757
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    • 2016
  • This study was carried out to reveal the genetic population structure of the Jeju Island population and the phylogenetic relationship of East Asian populations of the large-footed bat (Myotis macrodactylus) based on the genetic polymorphisms of mitochondrial cytochrome B (CYTB) and NADH dehydrogenase subunit 1 (ND1) gene sequences. A total of fourteen and nine haplotypes were found in the CYTB and ND1 sequences from East Asian bats, respectively. Haplotype distribution showed locality specific patterns. The results from ND1 haplotype analysis showed that the Jeju Island population has four haplotypes: the Mt. Halla and Western subpopulations have three ND1 haplotypes, but the Eastern subpopulation has just a single haplotype Nd03, which is commonly found on this island. The neighbor-joining (NJ) tree showed the closer relationship between Jeju Island and Japan rather than that between Jeju and Gangwon-do Province. The divergence time between the maternal ancestor lineages of Japanese and Chinese populations was estimated to be 0.789±0.063 MYBP. The secondary divergence between Jeju and Japanese bats was calculated about to be 0.168±0.013 MYBP. The Jeju population has immigrated to the island at least fifty thousand years ago. In addition, ND1 haplotype analysis suggested that the insular bats have experienced at least two further genetic differentiation events within this island. Consequently, these findings suggested that the results of this study may play a critical role in understanding the phylogenetic relationship among East Asian bat populations of M. macrodactylus. To prepare more explainable information on evolutionary correlation, analysis is still required to examine using expanded samples from China, Russia, and southern parts of the Korean Peninsula.

CIRCULATION AND WATER MASSES IN THE CONTINE NTAL SHELF BREAK REGION OF THE EAST CHINA SEA (동지나해 대륙붕 연변의 해수 유동과 수괴)

  • Lim Gi Bong;Fujimoto Minoru
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.5 no.1
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    • pp.1-10
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    • 1972
  • Studies on the circulation and water masses in the continental shelf break region of the East China Sea are Summerized as follows : 1. The main stream of the Kuroshio flowing north-east near $29^{\circ}N\;Lat\;127^{\circ}E$ tong of the East China Sea in summer is narrow in width. Moving toward east, it becomes twice as wide in Tokora Strait, Japan. 2. In the main stream area of the Kuroshio, the surface Waters in the Upper layer (0-250m) are influenced by the coastal waters of China, and the counter current submerges under the surface water. Therefore, the mixing waters are found in its intermediate layer. 3. Water mass between Amami Island and the continental shelf of the East China Sea consists of main stream water, counter current water, gyration water and mixed water with coastal waters. 4. The maximum velocity of current in this waters was 139cm/sec. The volume transport was estimated approximately as $24.2\;\times\;10^6m^3/sec$. It was less than $33\;\times\;10^6m^3/sec$ in the region between Okinawa and continental shelf of the East China Sea. 5. Surface waters east of $29^{\circ}N\;Lat\;128^{\circ}E$ Long flows toward Amami Island, Okinawa Island, and Hachi Ju San Island, while those west of the region flow toward the Korea-strait, Cheju Island, coastal waters of Kyusyu, and the Pacific Ocean through Tokora Strait. The velocity of the current was estimated approximately as $0.3\~0.5$ miles per hour. 6. The bottom waters in the continental shelf break region flow toward the Korea Strait, Cheju Island and the coastal water of Kyusyu, while that of the continental shelf flows toward the Yellow Sea, 7, The characteristics of the Kuroshio water is changed remarkably by the mixing with the coastal water of China.

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A Study on the Temperature fronts observed in the South-West Sea of Korea and the Northern Area of the East China Sea (한국 남$\cdot$서해 및 동중국해 북부해역에 출현하는 수온전선)

  • YANG Young Jin;KIM Sang Hyun;RHO Hong Kil
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.31 no.5
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    • pp.695-706
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    • 1998
  • SST (Sea Surface. Temperature) fronts which were found in the South-West Sea of Korea and the northern area of the East China Sea were examined in order to clarify their positions, shapes, seasonal changes and the formation mechanism, For this study used SST data rearranged from the SST IR image during 1991 to 1996 and oceanographical data obtained by National Fisheries Research and Development Institute. Temperature front in the Cheju Strait was analyzed by the data obtained from a fisheries guidance ship of Cheju Provincial Government, The coastal frontal zone in the South-West Sea of Korea and the offshore frontal zone in the northern area of the East China Sea can be divided into several types (Type of Winter, Summer, Spring, Autumn and late Autumn), Short term variations of SST fronts have a tendency not to move to any Bleat extent for several days. The location of the frontal zone in the southwestern sea of Cheju Island changes on a much large scale than that of the one in the southern coast of Korea, The frontal Tone, formed every year in the southern sea of Korea approaches closer to the coastal area in winter, and moves closer to the south in spring and autumn. The frontal zone of the southwestern sea of Cheju Island moves in a westerly direction from the east, and reaches its most westerly point in the winter and its most easterly point in the summer related to the seasonal change of the Tsushima Current. Additionally, the frontal zone of the southwestern sea of Korea becomes extremely weak in March, April and November. SST fronts are formed every year around the line connecting Cheju Island to Yeoseo Island or to Chungsan Island in the Cheju Strait. A Ring-shaped tidal mixing front appears along the coastal area of Cheju Island throughout the year except during the months from November to January. Especially, in May and October fronts are formed between the coastal waters of Cheju Island and the Tsushima currents connecting the frontal zone of the coastal region in the southern sea of Korea with that of the southwestern sea of Cheju Island.

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Sedimentary Facies and Processes in the Ulleung Basin and Southern East Sea (동해남부해역과 울릉분지의 퇴적상과 퇴적작용)

  • Lee, Byoung-Kwan;Kim, Seok-Yun
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.40 no.3
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    • pp.160-166
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    • 2007
  • The coarse deposit with a lower mud content adjacent to the shelf of the southern East Sea is probably a "relict" sediment deposited in response to a lower stand of sea level during the Pleistocene. The sediment that developed on the slope and in the deep sea was river-borne primarily and was secondarily reworked or redistributed by the Tsushima Warm Current from the East China Sea. The clay mineralogy of the area suggests various sources of fine-grained sediment from adjacent rivers, the Korea Strait, volcanic material from Ulleung Island, and the Japan coast. Massive sand, bioturbated mud, homogeneous mud, and laminated mud were the dominant facies found in the core sediments from the study area. The massive sand was mainly volcanic ash from an eruption on Ulleung Island (9300 yr BP) and consisted of colorless pumiceous glass and a black scoriaceous type. The sedimentation rates on the slope, based on the Ulleung-Oki ash layer, were about 10cm/ky higher than in the basin. Other than the coarse-grain sediment, the mean size of the fine sediment dominating the bioturbated and homogeneous muds in the basin and the laminated mud on the slope was 6-10 phi. This indicates a difference in the major sedimentary process: hemipelagic sedimentation in the Ulleung Basin and mass flow deposition, such as turbidite, on the slope of the southern East Sea.

The Widespread Distribution of the Venomous and Poisonous Blue-lined Octopus Hapalochlaena spp., in the East/Japan Sea: Possible Effects of Sea Warming

  • Kim, Ji-Hoe;Suzuki, Toshiyuki;Shim, Kil-Bo;Oh, Eun-Gyoung
    • Fisheries and Aquatic Sciences
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    • v.15 no.1
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    • pp.1-8
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    • 2012
  • The geographical distribution of the toxic blue-lined octopus (commonly known as the blue-ringed octopus), Hapalochlaena spp., around the East/Japan Sea was investigated. Observation records of the octopus were gathered using commercial search engines on the Internet. A questionnaire to complement and enhance the base data was conducted that targeted fishermen from areas where the octopus was most likely to occur, i.e., the southeast coast and islands of Korea in the East/Japan Sea. Overall, 32 observational records of the blue-lined octopus were found from Korea and Japan. In Korea, only one record, from 2003, was found on a website; none of the 240 fishermen who participated in the questionnaire reported seeing blue-lined octopus. However, a total of 31 observations of the blue-lined octopus from 2004 to July 2010 were found from 17 different regions in the East/Japan Sea and neighboring waters in Japan. Twenty-two cases were from coastal Honshu Island, and nine were from the west coast of Kyushu Island, Japan. The northern distributional boundary of the blue-lined octopus on the Japanese coast was off Fukui Prefecture around latitude $36^{\circ}$10' N. Our results indicate that the blue-lined octopus is distributed extensively along the Japanese coast, at a low frequency, in the East/Japan Sea.