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NTIS 바로가기한국수산과학회지 = Korean journal of fisheries and aquatic sciences, v.47 no.5, 2014년, pp.611 - 621
송준영 (국립수산과학원 병리연구과) , 김민정 (국립수산과학원 병리연구과) , 최혜승 (국립수산과학원 병리연구과) , 정승희 (국립수산과학원 병리연구과)
A nationwide survey was conducted to study the rate of Kudoa septempunctata parasitization in cultured olive flounder, Paralichthys olivaceus, in Korea in 2013. Of 1107 olive flounder sampled randomly from 89 culture farms in five different regions in Korea, K. septempunctata was detected only in Je...
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핵심어 | 질문 | 논문에서 추출한 답변 |
---|---|---|
쿠도아충에 의한 감염이 야기하는 문제는? | 일반적으로 쿠도아충에 의한 감염은 숙주인 어류의 생리, 행동, 생존 등에 영향을 미치지 않지만(Moran et al., 1999), 근섬유에 기생하는 Kudoa thyrsites, Kudoa musculoliquefaciens, Kudoa paniformis, Kudoa clupeidae, Kudoa miniauriculata 등은 숙주가 죽은 후에 젤리화’(기생충의 단백질 분해효소에 의한 근육 용해)를 일으킴으로써 상품 가치를 떨어뜨려 경제적으로 피해를 일으키는 것으로 알려져 왔다(Kudo et al., 1987, Moran et al. | |
쿠도아속 점액포자충 중 Kudoa septempunctata가 최초로 우리나라에 보고된 사례는? | , 2004). 그러나, 최근Kudoa septempunctata가 한국에서 일본으로 수출 한 넙치의 근육에서 기생하는 것이 최초로 보고 된 이후(Matsukane et al., 2010), K. | |
쿠도아속 점액포자충의 특징은? | , 1999; Kent et al., 2001; Yokoyama, 2003; Lom and Dyková, 2006), 대부분의 종이 체근육, 뇌, 심장막, 소화관, 신장, 난소 등의 기관에 육안으로 보이는 시스트를 형성하는 조직 기생성이다(Nakajima and Egusa, 1978; Egusa and Shiomitsu, 1983; Maeno et al., 1993; Blaylock et al. |
Blaylock, RB, Bullard, SA and Whipps, CM. 2004. Kudoa hypoepicardialis n. sp. (Myxozoa: Kudoidae) and associated lesions from the heart of seven perciform fishes in the northern gulf of Mexico. J Parasitol 90, 584-593. http://dx.doi.org/10.1645/GE-161R.
Burger, MA, Cribb, TH and Adlard, RD. 2007. Patterns of relatedness in the Kudoidae with descriptions of Kudoa chaetodoni n. sp. and K. lethrini n. sp. (Myxosporea: Multivalvulida). Parasitology 134, 669-681. http://dx.doi.org/10.1017/S0031182006001995.
Grabner, D, Yokoyama, H, Shirakashi, S and Kinami, R. 2012. Diagnostic PCR assays to detect and differentiate Kudoa septempunctata, K. thyrsites and K. lateolabracis (Myxozoa, Multivalvulida) in muscle tissue of olive flounder (Paralichthys olivaceus). Aquaculture 338, 36-40. http://dx.doi.org/10.1016/j.aquaculture.2012.01.022.
Harada, T, Kawai, T, Jinnai, M, Ohnishi, T, Sugita-Konishi, Y and Kumeda, Y. 2012a. Detection of Kudoa septempunctata 18S ribosomal DNA in patient fecal samples from novel food-borne outbreaks caused by consumption of raw olive flounder (Paralichthys olivaceus). J Clin Microbiol 50, 2964-2968. http://dx.doi.org/10.1128/JCM.01218-12.
Harada, T, Kawai, T, Sato, H, Yokoyama, H and Kumeda, Y. 2012b. Development of a quantitative polymerase chain reaction assay for detection of Kudoa septempunctata in olive flounder (Paralichthys olivaceus). Int J Food Microbiol 156, 161-167. http://dx.doi.org/10.1016/j.ijfoodmicro.2012.03.018.
Ishimaru, K, Matsuura, T, Tsunemoto, K and Shirakashi, S. 2014. Seasonal monitoring of Kudoa yasunagai from seawater and aquaculture water using quantitative PCR. Dis Aquat Organ 108, 45-52. http://dx.doi.org/10.3354/dao02702.
Jeon, CH, Wii, S, Song, JY, Choi, HS and Kim, JH. 2014. Development of loop-mediated isothermal amplification method for detection of Kudoa septempunctata (Myxozoa:Multivalvulida) in olive flounder (Paralichthys olivaceus). Parasitol Res 113, 1759-1767. http://dx.doi.org/10.1007/s00436-014-3821-0.
Kawai, T, Sekizuka, T, Yahata, Y, Kuroda, M, Kumeda, Y, Iijima, Y, Kamata, Y, Sugita-Konishi, Y and Ohnishi, T. 2012. Identification of Kudoa septempunctata as the causative agent of novel food poisoning outbreaks in Japan by consumption of Paralichthys olivaceus in raw fish. Clin Infect Dis 54, 1046-1052. http://dx.doi.org/10.1093/cid/cir1040.
Kent, ML, Andree, KB, Bartholomew, JL, El-Matbouli, M, Desser, SS, Devlin, RH, Feist, SW, Hedrick, RP, Hoffmann, RW, Khattra, J, Hallett, SL, Lester, RJ, Longshaw, M, Palenzeula, O, Siddall, ME and Xiao, C. 2001. Recent Advances in Our Knowledge of the Myxozoa. J Eukaryot Microbiol 48, 395-413.
Kudo, G, Barnett, H and Nelson, R. 1987. Factors affecting cooked texture quality of Pacific whiting, Merluccius productus, fillets with particular emphasis on the effects of infection by the myxosporeans Kudoa paniformis and K. thyrsitis. Fish Bull 85, 745-756.
Lom, J and Dykova, I. 2006. Myxozoan genera: definition and notes on taxonomy, life-cycle terminology and pathogenic species. Folia Parasitol 53, 1-36.
Maeno, Y, Nagasawa, K and Sorimachi, M. 1993. Kudoa intestinalis n. sp. (Myxosporea: Multivalvulida) from the intestinal musculature of the striped mullet, Mugil cephalus, from Japan. J Parasitol 79, 190-192.
MAFF (Ministry of Agriculture, Forestry and Fisheries). 2012. www.jfa.maff.go.jp/test/saibai/pdf/kudoa2.pdf
Matsukane, Y, Sato, H, Tanaka, S, Kamata, Y and Sugita-Konishi, Y. 2010. Kudoa septempunctata n. sp. (Myxosporea: Multivalvulida) from an aquacultured olive flounder (Paralichthys olivaceus) imported from Korea. Parasitol Res 107, 865-872. http://dx.doi.org/10.1007/s00436-010-1941-8.
MHLW (Ministry of Health, Labour and Welfare). 2011. http://www.mhlw.go.jp/topics/bukyoku/iyaku/syoku-anzen/gyousei/dl/110711 _01.pdf.
Moran, JDW, Whitaker, DJ and Kent, ML. 1999. A review of the myxosporean genus Kudoa Meglitsch, 1947, and its impact on the international aquaculture industry and commercial fisheries. Aquaculture 172, 163-196.
Nakajima, K and Egusa, S. 1978. Kudoa pericardialis n.sp.(Myxosporidea: Chloromyxidae) from cultured yellowtail. Seriola quinqueradiata Temminck et Schlegel. Bull Jpn Soc Sci Fish 44, 117-120.
NFRDI (National Fisheries Research and Development Institute). http://egov.nfrdi.re.kr/nfrdi/ssi/selectSSIMainList.do#a
Ohnishi, T, Kikuchi, Y, Furusawa, H, Kamata, Y, and Sugita-Konishi, Y. 2013. Kudoa septempuncatata invasion increases the permeability of human intestinal epithelial monolayer. Foodborne Pathog Dis 10, 137-142.
Sitja-Bobadilla, A. 2009. Can Myxosporean parasites compromise fish and amphibian reproduction. Proceedings of the Royal Society B: Biological Sciences 276, 2861-2870.
Yanagida, T, Sameshima, M, Nasu, H, Yokoyama, H and Ogawa, K. 2006. Temperature effects on the development of Enteromyxum spp. (Myxozoa) in experimentally infected tiger puffer, Takifugu rubripes (Temminck & Schlegel). J Fish Dis 29, 561-567.
Yokoyama, H. 2003. A review: gaps in our knowledge on myxozoan parasites of fishes. Fish Pathol 38, 125-136.
Yokoyama, H, Whipps, CM, Kent, ML, Mizuno, K and Kawakami, H. 2004. Kudoa thyrsites from Japanese flounder and Kudoa lateolabracis n. sp. from Chinese sea bass: causative myxozoans of post-mortem myoliquefaction. Fish Pathol 39, 79-86.
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