• Title/Summary/Keyword: 겨울산란

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Ecology of Cynoglossus joyneri G$\ddot{u}$nther from the Western Coast of Korea (한국 서해연안 참서대 Cynoglossus joyneri G$\ddot{u}$nther의 생태)

  • Choi, Youn;Kim, Ik-Soo;Ryu, Bong-Suk;Chung, Ee-Yung;Park, Jong-Young
    • Korean Journal of Ichthyology
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    • v.7 no.1
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    • pp.56-63
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    • 1995
  • Ecological study of the Cynoglossus joyneri was conducted based on the specimens from the western coast of Korea from 1992 to 1994. Ecological characteristics of this species such as gonadal development, occurrence of larvae, stomach contents, and environmental conditions were investigated. Few larvae of Cynoglossus joyneri occurred in Kunsan coast. This coast is influenced by the freshwater input of the Mangyong and Kum River, especially during the summer. Therefore, the larvae of C. joyneri were considered to be spawned and grown during their early life stage in the high saline water in outer bay. Spawning occur from June to September, having the peak spawning period from July to August. Biological minimum size of matured fishes containing mature oocytes is about 143.5mm in total length, which requires about 20 months after hatching. The ranges of total length by age are as follows : 0-ring group(floating stage), 30~70mm ; 1-ring group, 49.0~133.0mm 2-ring group, 128.6~167.0mm ; 3-ring group, 169.0~202.0mm ; 4-ring group, 200.7~240.0mm. The major food items of young fish under 8cm were copepods and invertebrate larvae, and those of adult fishes were annelids(polychaets) in winter, and bivalves and shrimps in summer and autumn. Therefore, it can be assumed that the population of C. joyneri could be reduced due to the decrease of food organisms caused by the continuous reclamation activities in the inner bays of the west coast of Korea.

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Habitat Selection and Environmental Characters of Acheilognathus signifer (묵납자루, Acheilognathus signifer의 서식지 선택과 환경특성)

  • Baek, Hyun-Min;Song, Ho-Bok
    • Korean Journal of Ecology and Environment
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    • v.38 no.3 s.113
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    • pp.352-360
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    • 2005
  • Acheilognathus signifer is distributed widely in high density in the Naechon-stream. The order of this-stream was 2 ${\sim}$ 4 and the water width is wide but the depth is relatively shallow and the sinuosity is 1.83, which indicates a meandering stream. The water width/stream width ratio is 1.59, which suggests moderate entrenchment. Naechon-stream was classed as B type by Rosgen (1995). The natural habitat of A. signifer is a slow flow velocity pool, like a backwater pool, which is made up of piled up boulders that restricts the flow of water. The stream bed is made up of boulders and sands that enable the spawning host to inhabit. A. signifer selects a microhabitat where the boulders furnish hiding places. The Habitat of A. signifer is strongly affected by the existence or not there of U. douglasiae sinuolatus. After hatching from the mussel, A. signifer inhabits the surface of the water. It then moves to the low layer once it acquires swimming ability. While A. signifer inhabits the river in summer, A. signifer moves to the deeper layers in winter, where there are the refuge like rocks and boulders. In spring A. signifer moves from the deep water to the river line where the mussels reside.

Analysis of the Seasonal Change of the Proximate Composition and Taste Components in the Conger Eels (Conger myriaster) (붕장어(Conger myriaster)의 일반성분 및 맛 성분의 계절별 변화 분석)

  • Ryu, Keun-Young;Shim, Sung-Lye;Kim, Won;Jung, Min-Seok;Hwang, In-Min;Kim, Jun-Hyeong;Hong, Cheul-Hee;Jung, Chan-Hee;Kim, Kyong-Su
    • Journal of the Korean Society of Food Science and Nutrition
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    • v.38 no.8
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    • pp.1069-1075
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    • 2009
  • Conger eel (Conger myriaster) is used as a well-being food in the foodservice industry in Korea. We analyzed not only the proximate composition but also the taste components affecting conger eel, which are fatty acids, nucleotides, amino acids, etc. Concerning the composition, the crude lipid was the lowest in summer at 3.2%, which is considered due to spawning period. The major fatty acids were $C_{16:0},\;C_{16:1},\;C_{18:0},\;C_{18:1},\;C_{20:5},\;and\;C_{22:6}$. The $C_{18:1}$ content was the highest among the fatty acids and the content varied between 36.76 and 45.11% by season. Seasonal change in the content of poly-unsaturated fatty acids was increased from spring to winter in conger eel. Among the nucleotides, the contents of IMP (3.617$\sim$5.524 $\mu$mol/g) and Hx (0.913$\sim$2.238 $\mu$mol/g), which is closely related to taste, and the concentrations of IMP and Hx were the highest (7.219 $\mu$mol/g) in winter, and HxR (0.625$\sim$1.652 $\mu$mol/g) was higher than ATP (0.058$\sim$0.083 $\mu$mol/g), ADP (0.145$\sim$0.161 $\mu$mol/g), and AMP (0.166$\sim$0.179 $\mu$mol/g). In conger eels, the major total and free amino acids were glutamic acid (14,178.7$\sim$7,802.6 mg%), aspartic acid (4,669.2$\sim$8,259.0 mg%), lysine (4,198.3$\sim$7,540.8 mg%), leucine (3,843.6$\sim$6,782.1 mg%), and histidine (199.6$\sim$644.4 mg%), glycine (94.8$\sim$152.2 mg%), alanine (35.3$\sim$71.2 mg%), glutamic acid (44.1$\sim$70.6 mg%), respectively, but the concentration of amino acids was different by season. The content of free amino acids, which is related to the taste component, was detected as high in summer and winter at 1179.2 and 1,605.2 mg%, respectively.

Biological Properties of Common Squid in the Yellow Sea of Korea (황해에서 어획된 살오징어의 생물학적 특성)

  • Choi, Kwang-Ho;Kwon, Dae-Hyeon
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.17 no.4
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    • pp.367-373
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    • 2011
  • We investigated the biological characteristics of the squid, Todarodes pacificus Steenstrup through the samples caught monthly in the Yellow Sea($32^{\circ}$ 30'N, $122^{\circ}E-37^{\circ}$ 30'N, $127^{\circ}E$) from 1985 to 1987. Monthly mantle length frequency were separated into Autumn spawning group and winter spawning group with Tanaka's method(1956) to determine the main group of the squids caught in the Yellow Sea. The ratio of winter spawning group was higher than that of autumn spawning group. Monthly gonadosomatic index of females increased on July in 1985, on October in 1986, and October in 1987 and decreased later in each year. That of males increased on June in 1985, on July in 1986, and June in 1987. The length of 50% group maturity of female was 20.7 cm mantle length(ML) in 1985, 17.9 cm ML in 1986, and 17.2 cm ML in 1987. The ratio of female was higher than that of male in the group over 24 cm ML, and the ratio of male was higher than that of female in the group under 24 cm ML. We concluded that the length of 50% group maturity of squids was affected by the density of the population status.

Seasonal variation in the body composition, amino acid, fatty acid and glycogen contents of triploid Pacific oyster, Crassostrea gigas in western coastal waters of Korea (서해안 3배체 굴 (Crassostrea gigas) 의 계절별 체성분, 아미노산, 지방산 및 글리코겐 함량 변화)

  • Hwang, In Joon;Han, Jong Chul;Hur, Young Baek;Lim, Hyun Jeong
    • The Korean Journal of Malacology
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    • v.32 no.4
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    • pp.269-277
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    • 2016
  • We examined the seasonal variation of the proximate, amino acid, fatty acid composition and glycogen contents of triploid Pacific oyster cultured in western coastal waters of Korea in 2015. The specimens were collected in February, May, August and November from off-bottom farming site. The lipid content was the highest in winter season (February, $2.10{\pm}0.06%$), the protein content was the highest in autumn season (November, $9.09{\pm}0.04%$) while the moisture and ash content was the highest in summer season (August, $86.00{\pm}0.12%$ and $2.67{\pm}0.03%$, respectively). The total amino acid contents was the highest in winter season (1,011.5 mg / 100 g), decreased gradually and was the lowest in summer season (486.7 mg / 100 g). The total amino acid composition was dominated by taurine, aspartic acid, glutamic acid, glycine and alanine. In the fatty acid composition, the two fatty acids, eicosapentaenoic acid and docosahexaenoic acid, which comprised that as much as 50% of the total fatty acid contents, were dominated during all season. The glycogen content was the highest in summer season ($1.26{\pm}0.03g$ / 100 g) although it was stable during the other season with the range of $0.69{\pm}0.04-0.86{\pm}0.01g$ / 100 g. Taken together, these results suggest that triploid pacific oysters have high commercial value not only in winter season but in summer season because they do not spawn and have high contents of glycogen comparing with those of diploid oyster in this period.

Seasonal variation in biochemical composition and gonadal development of ark shell, Scapharca broughtonii (Bivalvia: Arcidae) from Gamag bay of Southern coast, Korea (가막만 피조개 Scapharca broughtonii의 생식소 발달과 체성분의 계절적 변화)

  • Shin, Yun-Kyung;Im, Je-Hyun;Son, Maeng-Hyun;Kim, Eung-Oh
    • The Korean Journal of Malacology
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    • v.28 no.1
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    • pp.73-79
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    • 2012
  • Seasonal changes in biochemical composition of muscle, gonad-viceral, mass and whole body of the cultured ark shell, Scapharca broughtonii in the Gamag bay of Yeosu city were studied from December 2008 to November 2009 in relation to environmental condition and reproductive cycles. Average monthly water temperature in the winter was in the range of $7-12^{\circ}C$ and $20-25^{\circ}C$ in the summer, while the salinity fluctuated in the range of 30.1%-33.8‰ on the average. Seasonal fluctuation of the concentration of nutrient salt was the highest in September ($13.04{\mu}g/L$) with average annual concentration of $4.6{\mu}g/L$. The main spawning season of the ark shell was during the months of July and August, and the gonads were in inactive stage during the winter. The gonad-visceral mass contained lower amounts of proteins than the other body parts. The most marked changes in body composition were lipids and carbohydrates within the gonad-visceral mass, and protein for each of the organs was relatively consistent throughout the year. All the parts in the visceral sac displayed the highest changes during the gametogenic cycle while the contents of moisture and lipid within the visceral act displayed somewhat inverse relations with each other. Moisture content was the lowest during the inactive stage during which the lipid content is the highest. The lipid content was the lowest immediately following spawning with increase in the moisture content as the lipid is being consumed. Protein mass within the visceral sac was low in comparison to the muscle mass. It is deemed that carbohydrates, lipids and proteins in the visceral sac play the major role as the source of energy during the development process of the gonads, and used for maintenance of base metabolism when available food is scarce.

On the Early Life History of Gunnel (Enedrias fangi) (흰베도라치(Enedrias fangi)의 초기생활사에 관하여)

  • Yoo, Jae-Myung; Kim, Woong-Seo; Kim, Sung;Lee, Eun-Kyung
    • Korean Journal of Ichthyology
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    • v.7 no.1
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    • pp.25-32
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    • 1995
  • The larval fish, which had been previously identified or classified as Enedrias (Pholis) nebulosus, Enedrias spp., Pholis taczanowskii, and unidentified species belonging to Protosalanginae, were revealed as that of a gunnel, Enedrias fangi. This species has been known as a cold water species mainly caught in the Yellow Sea. Larval E. fangi showed peak abundances in the coastal waters off Chonlla Province in March, Chungnam Province in April, and Kyunggi Province in May and June. The primary spawning season of E. fangi seemed to be winter (November to January), and the eggs hatched after 60 days from spawning. The average growth rate of larval fish was about 0.33mm/day. The larval fish of 40mm in body length began to move to the bottom, and stayed in the bottom cold water mass when their body length was greater than 60-70mm. The average annual catches of larval E. fangi from 1985 to 1991 were 5,000M/T in the Yellow Sea, which were more than 99 % of the total gunnel catches around Korean waters. The peak season of catches was from March or April to July in Chungnam Province, and from May to July in Kyunggi Province.

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Dispersal of potential habitat of non-native species tilapia(Oreochromis spp.) inhabiting rivers in Korea (국내 하천에 서식하는 외래종 틸라피아(tilapia)의 잠재적 서식처 확산)

  • Ju Hyoun Wang;Jung Soo Han;Jun Kil Choi;Hwang Goo Lee
    • Korean Journal of Environmental Biology
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    • v.41 no.2
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    • pp.101-108
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    • 2023
  • Recently, in relation to climate change, many studies have been conducted to predict the potential habitat area and distribution range of tilapia and the suitability of habitat for each species. Most tilapia are tropical fish that cannot survive at water temperatures below 10 to 12℃, although some tilapia can survive at 6 to 8℃. This study predicted habitable areas and the possibility of spreading of habitat ranges of tilapia (Oreochromis niloticus and Oreochromis aureus) known to inhabit domestic streams. Due to climate change, it was found that habitats in the Geum River, Mangyeong River, Dongjin River, Seomjin River, Taehwa River, Hyeongsan River, and the flowing in East Sea were possible by 2050. In addition, it was confirmed that tilapia could inhabit the preferred lentic ecosystem such as Tamjin Lake, Naju Lake, Juam Lake, Sangsa Lake, Jinyang Lake, Junam Reservoir, and Hoedong Reservoir. In particular, in the case of tilapia, which lives in tributaries of the Geumho River, Dalseo Stream, and the Nakdong River, its range of habitat is expected to expand to the middle and lower of the Nakdong River system. Therefore, it is judged that it is necessary to prepare physical and institutional management measures to prevent the spread of the local population where tilapia currently inhabits and to prevent introduction to new habitats.

Monthly Fish Species Composition Caught by Fyke Net in Eastern Coast Yeosu, the South Sea of Korea (남해 여수 동부연안 각망에 어획된 어류의 종조성 및 월별 출현 양상)

  • Sang-Hun Cha;Tae-Sik Yu;Kyeong-Ho Han;Sung-Hoon Lee
    • Korean Journal of Ichthyology
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    • v.36 no.2
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    • pp.174-181
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    • 2024
  • This study examines the community characteristics of fish species collected by fyke net from the eastern coastal waters of Yeosu, Korea, during the period from 2020 to 2021. A total of 4,539 fish were sampled and classified into 43 species, 28 families, and 7 orders. The dominant species included Mugil cephalus (14.4%), Konosirus punctatus (10.9%), Lateolabrax japonicus (8.3%), Acanthopagrus schlegelii (7.9%), and Pennahia argentata (7.2%). The diversity index was highest in October (H'=2.888) and lowest in February (H'=2.075). Furthermore, the dominance index was highest in March (DI=0.524) and lowest in December (DI=0.178). Hierarchical cluster analysis (HCA) revealed that fish communities could be divided into three groups based on Bray-Curtis similarity. Group 1, consisting mainly of species collected from June to October, formed one cluster. Group 2, including winter spawning species such as Pseudopleuronectes yokohamae, Clupea pallasii, and Hexagrammos otakii, sampled from November to February, formed another cluster. Group 3, which included species such as Larimichthys polyactis, Amblychaeturichthys hexanema, and Sebastes inermis, formed a cluster collected from March to May. The eastern coast of Yeosu is considered a suitable habitat for fisheries resources, including highly economically valuable species, and it is also assumed to be an important spawning and nursery ground for many fish species.

Biological Characteristics of Two Natural Enemies of Thrips, Orius strigicollis (Poppius) and O. laevigatus (Fieber) (Hemiptera: Anthocoridae) (총채벌레 천적 으뜸애꽃노린재(Orius strigicollis)와 미끌애꽃노린재(Orius laevigatus)의 생물학적 특성 비교)

  • Kim, Jeong-Hwan;Kim, Hwang-Yong;Byoun, Young-Woong;Kim, Yong-Heon
    • Korean journal of applied entomology
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    • v.47 no.4
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    • pp.421-428
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    • 2008
  • With the comparison of native Orius strigicollis (Poppius) to European O. laevigatus (Fieber), we investigated biological characteristics such as developmental period, fecundity, life span, predation ability, and augmentation after release. Experiments were carried out at five temperature condition, $15^{\circ}C\;20^{\circ}C,\;25^{\circ}C\;30^{\circ}C$, and $35^{\circ}C$. In the case of O. strigicollis, egg period was $3.1{\sim}14.9$ days (hatchability: $46.7{\sim}88.2%$), and developmental period of nymphs was $9.4{\sim}42.8$ days (survival rate: $2.4{\sim}96.5%$). Fecundity at each temperature was 28.1, 107.9, 123.6, 127.3, and 18.1, respectively. Life span of adults was 63.4, 40.1, 22.1, 18.3, and 11.0 days, respectively. In the case of O. laevigatus, egg period was $3.1{\sim}13.5$ days (hatchability: $65.0{\sim}89.9%$), and developmental period of nymphs was $9.3{\sim}42.0$ (survival rate: $4.3{\sim}80.6%$) days. Fecundity at each temperature was 101.8, 218.6, 224.5, 219.5, and 15.7. Life span of adults was 70.6, 66.4, 32.6, 34.5, and 7.3 days, respectively. In long-day condition (16L:8D), fecundity of O. strigicollis and O. laevigatus was 105.8 $(18^{\circ}C){\sim}142.4(25^{\circ}C)$ and 109.5 $(18^{\circ}C){\sim}191.5(25^{\circ}C)$, respectively. In short-day condition (10L:14D), fecundity of them was 1.0 $(18^{\circ}C){\sim}31.8(25^{\circ}C)$ and 63.0 $(18^{\circ}C){\sim}198.8(25^{\circ}C)$, respectively. Daily prey consumption of second instar Frankliniella occidentalis was 14.3 and 10.9, respectively. In greenhouse, density of O. strigicollis begins to increase from mid May and peaked about early July (1.8 individual/flower), while that of O. laevigatus begins to increase from mid March and peaked about early June (6.6 individual/flower).