• Title/Summary/Keyword: Corbicula

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A Study on a Distribution of the Freshwater Snails and Mussels in the North-South Han River (남(南)·북한강(北漢江) 담수산(淡水産) 패류(貝類)의 분포상(分布相)에 관(關)한 연구(硏究))

  • Kwon, Oh Kil;Cho, Dong Hyun;Park, Gap Man;Lee, Jun Sang
    • The Korean Journal of Malacology
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    • v.1 no.1
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    • pp.1-4
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    • 1985
  • The investigation of freshwater molluscs in the South Han River was carried out from 1984 and in 1985. The authors selected 12 stations and collected freshwater snails and mussels. We here publish the catalogue of molluscs in South and North Han River. The catalogue of molluscs in the South Han River is as follows; two classes, four orders, six families including twenty species(Semisulcospira coreana, Semisulcospira globus, Semisulcospira gottschei, Semisulcospira forticosta, Parafossarulus manchouricus, Gabbia misella, Radix auricularia coreana, Austroppepleaollura, Limnoperma lucustris, Lamprotula gottschei, Lanceolariaacrorhyncha, Unio douglasiae, Unio sp, Solenaia triangulalis, Anodonta fukudai, Anodonta woodiana, Corbicula felnouilliana, Corbiculafluminea, Corbicula sp).

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서해산 일본재첩, Corbicula japonica의 서식환경과 분포

  • 류수헌;이정열;류동기
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2002.10a
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    • pp.249-250
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    • 2002
  • 일본재첩(Corbicula japonica)은 부족강(Pelecypoda), 백합목(Veneroida), 재첩과 (Corbiculidae)에 속하는 종으로 우리나라에서 생산되는 재첩의 대부분을 차지하고 있으며, 전국적으로 건천을 제외한 대다수 하천의 하구역에 서식하고 있다. 우리나라의 재첩에 관한 연구는 주로 번식과 산란(이와 정, 1980; 권 등, 1987, 곽 2000; 김과 유, 2000a, 2000b; 김 등, 2002b)을 중심으로 일반적인 생태와 환경(정, 1977; 김 등, 2002a) 및 분류(조 등, 1998), 자원학적 조사(박과 이, 1968; 주와 김, 1982)와 저질의 선택성과 잠입(강과 양, 1999)을 중심으로 많은 연구가 수행되었으나 정확한 적정 염분과 세부적인 서식환경 및 생태에 관한 연구는 부족한 실정이다. (중략)

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Corbicula fluminea (Bivalvia: Corbiculidae): a possible second molluscan intermediate host of Echinostoma cinetorchis (Trematoda: Echinostomatidae) in Korea (한국산 "재첩"이 "이전고환극구흡충" 의 제 2 패류중간숙주가 될 수 있는가)

  • Chung, Pyung-Rim;Soh, Chin-Thack;Younghun Jung;Hwang, Myung-Gi
    • Proceedings of the Korean Society of Fisheries Technology Conference
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    • 2000.05a
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    • pp.502-502
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    • 2000
  • Corbicula fluminea Muller 1884 is the commonest freshwater bivalve in Asian countri including Korea. This clam is easily found in the freshwater systems, and edible as a food source in Korea. This study was aimed to confirm natural infection of C. fluminea collected from various localities with Echinostoma cinetorchis, an important hum intestinal fluke in Korea. (omitted)

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Lipids of Fresh-Water Cockle, Corbicula elatior (재첩의 지질에 관한 연구)

  • JOH Yong-Goe;PARK Soo-Jin;AHN Cheol-Woo
    • Korean Journal of Fisheries and Aquatic Sciences
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    • v.15 no.1
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    • pp.94-98
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    • 1982
  • Present investigation was carried out to clarify chemical characteristics, lipid composition, fatty acid components and the sterol composition of the lipids from the fresh-water cockle, Corbicula slatier. The results obtained are as follows :1) The oil content, iodine value and unsaponifiable matter of the total .lipids were 2.17, 119 and $16.6\%$ respectively. 2) The main components of the total lipids were phospholipids (ahout $43\%$), triglyceride and sterol. 3) The main fatty acids of the total lipids were $C_{16:0}\;(48.4\%),\;C_{14:0}\;(10.0\%),\;C_{18:3}\;(8.3\%),\;C_14:1\;(5.4\%)\;and\;C_{18:1}\;(5.3\%)$. 4) Sterols found were 24-methylenecholesterol ($14.1\%$), $\beta-sitosterol(22.5\%)$, fucosterol ($14.9\%$), isofucosterol (?) ($14.0\%$), $\Delta^7-avenasterol (?)(5.2\%)$ and cholesterol ($2.3\%$).

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Genetic Polymorphism of Marsh Clam (Corbicula leana) Identified by RAPD- PCR

  • Yoon Jong-Man;Park Kwan-Ha;Choe Sun-Nam
    • Fisheries and Aquatic Sciences
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    • v.6 no.1
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    • pp.13-19
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    • 2003
  • Genomic DNA from the muscle of marsh clam (Corbicula leana) from Gochang, Muan and a Chinese site was extracted to identify genetic differences and similarity by randomly amplified polymorphic DNAs-polymerase chain reaction (RAPD- PCR). Out of 20 primers, seven primers produced amplified fragments which were consistently polymorphic. A total of 1,246 amplified products were produced of which 530 were polymorphic $(42.5\%)$. The number of polymorphic bands produced per primer varied from 40 to 122 with an average of 75.7 in marsh clam from Gochang. 3.28 of the 23.0 polymorphic bands per lane were found to be polymorphic. Also, about $4.34\%$ of total polymorphic bands were specific to marsh clam from Gochang. The major common bands of 0.28 kb generated by primer OPB-15 (GGAGGGTGTT) were present in every individuals, which were polymorphic. This common bands in every individuals should be diagnostic of specific strains, species and/or their relatedness. Primer OPB-19 (ACCCCCGAAG) produced the highest number of 12 specific bands. The intra-population variation was revealed in the band patterns identified by this primer. The random primer OPB-12 (CCTTGACGCA) yielded the amplified fragments which were consistently polymorphic between the marsh clams from Gochang and from Muan. This primer produced a total of 77 polymorphic bands: 31 bands from Gochang, 14 from Muan and 32 from the Chinese populations. An average of polymorphic bands were 1.8 from Gochang and 2.5 from the Chinese populations. This value obtained from the Chinese population was higher than those from the two domestic populations. Generally, the RAPD polymorphism generated by these primers may be useful as a genetic marker for strain or population identification of marsh clam.

Effects of Salinity, Temperature and Food Type on the Uptake and Elimination Rates of Cd, Cr, and Zn in the Asiatic Clam Corbicula fluminea

  • Lee, Jung-Suk;Lee, Byeong-Gweon
    • Ocean Science Journal
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    • v.40 no.2
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    • pp.79-89
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    • 2005
  • Laboratory radiotracer experiments were conducted to determine assimilation efficiencies (AE) from ingested algal food and oxic sediment particles, uptake rates from the dissolved phase, and the efflux rates of Cd, Cr and Zn in the Asiatic clam Corbicula fluminea. Among three elements, AE from both algal and sediment food was greatest for Cd, followed by Zn and Cr. The AEs of tested elements from algal food (Phaeodactylum tricornutum) were consistently higher than those from sediments at a given salinity and temperature. The influence of salinity (0, 4 and 8 psu) and temperature (5, 13 and $21^{\circ}C$) on the metal AEs was not evident for most tested elements, except Cd AEs from sediment. The rate constant of metal uptake from the dissolved phase $(k_u)$ was greatest for Cd, followed by Zn and Cr in freshwater media. However, in saline water, the $(k_u)$ of Zn were greater than those of Cd. The influx rate of all tested metals increased with temperature. The efflux rate constant was greatest for Cr $(0.02\;d^{-1})$, followed by Zn $(0.010{\sim}0.017\;d^{-1})$ and $Cd\;(0.006\;d^{-1})$. The efflux rate constant for Zn in clam tissues depurated in 0 psu $(0.017\;d^{-1})$ was faster than that in 8 psu $(0.010\;d^{-1})$. Overall results showed that the variation of salinity and temperature in estuarine systems can considerably influence the metal bioaccumulation potential in the estuarine clam C. fluminea. The relatively high Cd accumulation capacity of C. fluminea characterized by the high AE, high dissolved influx rate and low efflux rate, suggested that this clam species can be used as an efficient biomonitor for the Cd contamination in freshwater and estuarine environments.

Distribution and Ecology of Marsh Clam in Gyeongsangbuk-do II. Reproductive Cycle and Larval Development of the Corbicula japonica (경상북도 재첩자원 분포 및 생태 조사 II. 일본재첩 Corbicula japonica의 생식주기 및 유생발생)

  • 변경숙;정의영
    • The Korean Journal of Malacology
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    • v.17 no.1
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    • pp.45-55
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    • 2001
  • Gametogenes, reproductive cycle, first sexual maturity(biological minimum size), sex ratio and larval development of the marsh clam Corbicula japonica were investigated monthly by histological observations. Samples were collected in brackish water of Gokgang stream, Kyungsangbuk-Do, Korea, from August 1997 to July 1998. Sexuality of Corbicula japonica is dioecious and the species are an oviparous clam. The gonads are irregularly arranged from the sub-region of mid-intestinal gland in visceral cavity to reticular connective tissue of foot. The ovary is composed of a number of ovarian sac which are branched arborescent. Oogonia actively proliferate along the germinal epithelium of ovarian sac, in which young oocytes are growing. The testis is composed of a number of testicular tubules, and the epithelium of the tubule has function of germinal epithelium, along which spermatogonia actively proliferate. A great number of undifferentiated mesenchymal tissue and eosinophilic granular cells are abundantly distributed between developing oocytes and spermatocytes in the early developmental stages. With the further development of the ovary and testis these tissue and cells gradually disappear. Then the undifferentiated mesenchymal tissue and eosinophilic granular cells are considered to be related to the growing of the oocytes and spermatocytes. The spawning period is from July to September, and the main spawning occur between July and August when seawater temperatures reach above 22$^{\circ}C$. The reproductive cycle of this species can be divided into five successive stages; early active (February to April), late active (May to July), ripe (June to September), partially spawned (July to September), degenerative (September to October) and resting stage (October to February). Percentages of first sexual maturity of female and male clams ranging in length from 10 mm to 12 mm are over 50% and 100% for clams over 16.0 mm in shell length. Fertilized eggs or Corbicula japonica were 80-90 ${\mu}{\textrm}{m}$ in diameter. In the early embryonic development of C. japonica, the appearance of polar body, trochophore and D-shaped veliger were observed around 40 min., 27 hours and 4 days after spawning, respectively, at a water temperature of 26.5-28.$0^{\circ}C$. The size of larvae of early umbo stage was about 185-210 ${\mu}{\textrm}{m}$ in shell length, 160-180 ${\mu}{\textrm}{m}$ in shell height around 7 days after fertilization. The correlation of relative growth between the culture day (D) and shell length (SL) was expressed by the following simple formula from D-shaped veliger to metamorphosing stage; SL = 13.300D + 209.36($r^2$= 0.9078).

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