• 제목/요약/키워드: Cultivated Porphyra

검색결과 15건 처리시간 0.033초

한국산 양식김의 종류 (SPECIES OF CULTIVATED PORPHYRA IN KOREA)

  • 강제원
    • 한국수산과학회지
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    • 제3권2호
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    • pp.77-92
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    • 1970
  • Ueda, in the course of his systematic work on the lavers, Porphyra, in Japan and Korea in 1932, mentioned that most of the cultivated Porphyra belong to Porphyra tenera Kjellman. Then he, dividing the species into two forms, f. typica and f. kjellmani, put Korean cultivated Porphyra under the latter. From the 1930s to the early 1940s, Fujikawa, Kaneko and others worked on Physiological experiments or cultivational experiments of Porphyra in the culture-bed, but there was no mention about the cultivated Porphyra species. However, many fishermen generally recognize that the characteristics of cultivated Porphyra vary depending on their habitat or the picking season, and it is considered that these differences are due to the varieties of the species which are well adaptable to various environments. Recently, I have become aware of the predominant occurrence of P. yezoensis Ueda in most culture-beds of Korea as in the Tokyo Bay or other places in Japan. At present, since artificial seeding for the cultivation of Porphyra with Conchocelis has been carried out and peculiar species can be cultured, a study of the species of cultivated Porphyra has become an important subject. I collected the specimens from a number of culture-beds which are located in the legions shown in fig. 1 from January, 1968 to May, 1970 and found that there are five species, P. tenera Kjellman, P. yezoensis Ueda, P. kuniedai Kurogi, P. seriata Kjellman and P. suborbiculata Kjellman. Among them, P. kuniedai was treated as a round-type, a form of P. tenera, by Kunieda (1939) and Tanaka (1952) and the occurrence of this form is generally recognized by most fishermen. At present, as mentioned above, the most dominant species of cultivated Porphyra is P. yezoensis but the cultivation of P. tenera is restricted to certain culture-beds or the early half of the cultivation period. P. kunieda appears as a mixed species throughout most of the culture-beds, particulary in the later half of the period, while when it was picked in January it appeared dominantly in a place such as Gum-Dang where the 'Bal', splitted bamboo piece mat, was settled during the last of September. This is the first seeding process. The latter two species, P. suborbiculata and P. seriata appear frequently but in small amounts in the later half of the period particulary in the western region of the southern coast. However, it can not be ascertained when P. yezoensis becomes predominant, because specimens have not been available up until recent years but the process can be described as follows: We commonly recognize the ecological characteristics of P. tenera as follows; First, the conchospores of the species develop earlier and the period of its discharge is shorter than those of P. yezoensis; second, the microscopical buds discharge neutral spores which develop into new buds directly and buds develop repeatedly through a short period. Consequently, according to such above ecological characteristics, the species can grow thick on the 'Bal' exclusively. However, buds may disappear when they are harmed by disease such a 'infection by certain parasites or by other unusual environmental conditions. Thus P. yezoensis are enabled to grow on the 'Bal' instead of the former species since they not only develop later than the former but also macroscopical fronds discharge the neutral spore throughout the period from October to May. Likewise, if any disease appears in the culture-bed ill the later half of the period, the former is more severely damaged than the latter because the former have less resistance to the disease than the latter. Thus fewer frond survive and fewer carpospores which are the origin of the next generation can be discharged. However the latter by their nature can continue growing until early summer. In the case of the culture-bed where the above phenomenon occurs repeatedly P. yezoensis gradually may become the dominant species among cultivated Porphyra. In support of the validity of this process we find that according to the description and the plate of Wada (1941), P. tenera, P. yezoensis and P. kuniedai grow together in the culture-bed at the mouth of the Nakdong River where P. yezoensis occurs predominantly and mixed with P. kuniedai.

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Color of Cultivated Porphyra and its Fading (Iro-ochi) and Recovery

  • Aruga, Yusho
    • 한국어업기술학회:학술대회논문집
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    • 한국어업기술학회 2001년도 추계 수산관련학회 공동학술대회발표요지집
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    • pp.23-24
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    • 2001
  • Iro-ochi as has been called by Nori (Porphyra) farmers is biologically a bleaching phenomenon and has been one of the serious problems in Nori cultivation in Japan. Especially in the last Nori cultivation season, Iro-ochi gave an extremely serious damage to the Nori production in Ariake Bay, Kyushu, Japan, which attracted considerable socio-economic attention in Japan. As early as in late 1960s, we already made fundamental studies on Iro-ochi of Porphyra. (omitted)

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한국산 긴잎돌김 (Porphyra pseudolinearis Ueda)의 엽상체와 배양 사상체의 광합성 비교 (Comparative Photosynthetic Physiology of Fronds and Cultivated Filaments of Porphyra pseudolinearis Ueda)

  • 김형근;주수동;전방욱
    • 한국양식학회지
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    • 제7권1호
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    • pp.1-7
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    • 1994
  • 긴잎돌김 (Porphyra pscudolineris Ueda)의 엽상체와 배양 사상체에 미치는 온도와 광도의 영향을 구명하였다. 엽상체와 사상체의 총 광합성의 적정 온도는 각각 $25\~30^{\circ}C$, $20^{\circ}C$로 나타났다. 엽상체와 사상체에서 광도에 따른 광합성율은 공히 10,000 lux 이상에서 광합성율이 일정한 값에 도달하는 광포화 곡선을 나타내었다. 엽상체의 광 보상점은 2,100 lux, 사상체의 광 보강점은 900 lux였으며, 사상체의 광합성능은 엽상체의 5-10배에 해당하였다. 이로써 사상체는 낮은 광도하에서도 광합성을 수행할 수 있음을 알 수 있다.

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한국 남서해안 자연채묘 양식 김의 DNA 염기서열과 종 동정 (DNA Sequences and Identification of Porphyra Cultivated by Natural Seeding on the Southwest Coast of Korea)

  • 황미숙;김선미;하동수;백재민;김형섭;최한구
    • ALGAE
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    • 제20권3호
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    • pp.183-196
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    • 2005
  • Nuclear SSU and ITS1 rDNA and plastid rbcL sequences were determined to identify the seven samples of Porphyra cultivated by means of natural seeding on the southwest coast of Korea and analyzed to access the phylogenetic relationships of them with the natural populations of P. tenera and P. yezoensis from Korea and Japan. SSU, rbcL and ITS1 data from 18, 21 and 31 samples, respectively, including previously published sequences were investigated in the study. Results from our individual and combined data indicated that the seven samples were all P. yezoensis and the entities except one from Muan 2 aquafarm strongly grouped together with the natural populations of P. yezoensis from the south and the west coast of Korea. The sample from Muan 2 seems to be derived from a strain of P. yezoensis introduced from Japan by Porphyra farmers, based on DNA sequence data.

서천 해역 김 양식장의 갯병에 관한 연구 (Diseases of the cultivated Porphyra at seocheon area)

  • 이순정;박성우;이종화;김영식
    • 한국어병학회지
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    • 제25권3호
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    • pp.249-256
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    • 2012
  • 본 연구는 서천해역 김 양식장의 월별, 어장별 김 갯병 발생 현황 및 김 엽체 사세포 비율을 관찰하고 결과를 분석하여 우리나라 양식 김 갯병에 관한 자료를 축적하고자 시도되었다. 서천해역의 12개 김 양식장에서 2008년 11월부터 2009년 3월까지 5개월 동안 매월 1회씩 김발을 채취하였다. 연구 결과 갯병 발병율은 거의 대부분의 정점에서 양식 초기에는 낮았지만 후반기로 갈수록 높아졌다. 이 해역에서 가장 빈발하는 질병은 규조류 부착증이었으며, 그 다음으로는 의사흰갯병이었다. 규조류 부착증이 가장 높게 발병한 시기는 양식 초기인 11월이었으며, 12월에는 발병율이 가장 낮았고 이어 점차 증가하는 양상을 보였다. 김 엽체에 부착된 규조류는 대부분이 Licmophora sp. 이었다. 양식 초기인 11월에는 녹반병과 의사흰갯병의 빈도가 높았지만, 양식 후반기로 갈수록 두 질병의 발생율이 점차 감소하는 대신에 호상균병 발생 빈도가 높아졌다. 연구 해역 사세포율은 지점에 따라 다소차이가 있었지만 전체적으로는 양식 후기에 높았고, 예외적으로 양식장 거의 정중앙에 위치한 St. 9와 내만에 위치한 St. 11, St. 12는 양식 초기에 사세포 비율이 높았다. 이러한 김 엽체의 사세포율 변화는 영양분 공급과 조류소통 등 여러 가지 요인이 관계하고 있지만 보다 더 정확한 요인은 환경 요인 조사를 통하여 밝혀질 수 있을 것으로 판단된다.

Model Plants in Marine Biotechnology

  • Saga, Naotsune;Endo, Hirotoshi
    • 한국해양바이오학회지
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    • 제4권1호
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    • pp.11-14
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    • 2010
  • The genus Porphyra, consisting of 133 species includes several economically valuable species (i.e. P. yezoensis, P. tenera, P. pseudolinearis etc.). They are predominantly consumed and cultivated in East Asian countries such as Japan, Korea and China, and they are regarded as a big commercial market today. In addition to the industrial importance, P. yezoensis is currently regarded as a feasible candidate for a model plant in marine biotechnology, therefore there are a wide range of studies being undertaken: strain-preservation, development of mutant strains and genetic analysis and exhaustive molecular analysis including EST and macro/micro array. Focusing on the activities of our research group, current situation and future perspectives in marine biotechnological studies using P. yezoensis will be discussed in this mini review.

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Development of a tide-simulating apparatus for macroalgae

  • Kim, Jang-K.;Yarish, Charles
    • ALGAE
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    • 제25권1호
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    • pp.37-44
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    • 2010
  • A tide-simulating apparatus was developed for culturing marine macroalgae. The objective of this study was to introduce a novel tide-simulating apparatus that can simulate a diurnal or semi-diurnal tidal cycle in the laboratory. In this apparatus, the seaweeds are move up and down and the water level remains the same during the simulated tidal cycle. The apparatus consists of 18 cylindrical culture tanks (3 blocks $\times$ 6 culture tanks) with 12 cm diameter and 24.5 cm long containing up to 2.5 L of seawater. There is a horizontal plate which covered all 18 culture tanks, and it is raised and lowered by a programmable motor that can regulate exposure time. In one application, seaweeds are attached to braided twine hung on Plexiglas air-tubing. The air-tubing is attached to a lid that is set on a horizontal plate. This apparatus is made of colorless Plexiglas to maximize light transmittance. This apparatus is easily disassembled and transportable to any indoor laboratory, wet laboratory, greenhouse, etc. This apparatus also offers considerable flexibility in terms of design. The size of culture tank can be redesigned by either increasing the height of cylinder or/and using a different diameter of cylindrical Plexiglas, therefore, larger/taller thalli can be cultivated. Growth rates of three eulittoral Porphyra species from different tidal elevations have been compared using this device.

낙동강 하구 부근(용원리) 김 어장의 갯병 특히, 공장 폐수의 영향에 관하여 (DISEASES OF THE CULTTVATED PORPHYRA AT CULTURE BEDS WITH SPECIAL REFERENCE TO THE EFFECTS OF FERTILIZER PLANT EFFLUENTS)

  • 강제원
    • 한국수산과학회지
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    • 제5권2호
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    • pp.39-44
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    • 1972
  • 진해화학(4비)의 폐수가 경남 창원군 웅동면 용원리 김 어장에 미치는 영향을 조사하여, 1969, 70년도에 막심한 피해를 준 갯병과의 관계를 고찰하였다. 1. 해수 유동의 조사 결과, 폐수가 주입되고 있는 행 암만의 오염 해수는 조석에 따라 김 어장에 영향을 미치고 있으며, 이 결과는 공장 폐수 중의 F-를 추적자로 하여, 진해만의 오염 상태를 조사한 결과와도 일치하였다. 그리고, 북서풍 또는 서풍이 강하게 불 때는, 취송류에 의해서 그 영향은 증대되리라고 추측된다. 따라서, 북서풍 또는 서풍이 강하게 불 때 또는 소조시보다, 대조시에 갯병의 피해가 더 컸던 것은 폐수의 영향에 기인한 것으로 추정된다. 2. 폐수를 희석한 오염 해수로 김의 광합성을 측정한 결과, 200ppm까지는 대조구인 정상 해수보다. 약 $4\%$, 300ppm에서는 갑자기 약 $20\%$, 그리고, 1,000ppm에서는 약 $43\%$가 감소되었다. 한편, 폐수로 오염된 공장 및 어장 부근의 8개 지점 (Fig.1, $1\~8$)의 해수로 광합성을 측정한 결과, 오염의 가능성이 거의 없는 곳의 해수에서보다, 공장에서 가까운 곳의 해수에서는 $34\~21\%$, 어장내에 있어서, 조류 소통이 좋지 못한 곳은 $15\%$, 좋은 곳은 $5\%$씩 각각 감소되었다. 3. 폐수가 직접 김을 죽게 했는지의 여부는 고사하더라도, 저농도에서도 명확히 생리적 장애가 인정되었으며 환경 조건의 악변 또는 기생균의 기생 등 상승작용은 김에게 피해를 가중시켰다고 생각된다. 따라서, 폐수에 의한 생리적 장애는 김 생활의 기본적 여건에 영향을 끼치므로, 폐수의 영향은 높이 평가되어야 한다고 생각된다. 끝으로, 본 연구은 문교부에서 교부되는 연구조성비에 의해서 이루어졌으며, 연구에 협조해주신, 부산수산대학 교수 장지원씨(해수 유동 조사). 동 박정흥씨(갯병 현황 조사), 동 진평씨(광합성 측정), 그리고, 해운대임해 연구소 시설 사용을 허락해주시고, 원고를 읽어주신 동 소장 이병돈박사께 심심한 감사를 드린다.

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A revaluation of algal diseases in Korean Pyropia (Porphyra) sea farms and their economic impact

  • Kim, Gwang Hoon;Moon, Kyoung-Hyoun;Kim, Je-Yoon;Shim, Junbo;Klochkova, Tatyana A.
    • ALGAE
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    • 제29권4호
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    • pp.249-265
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    • 2014
  • As with land crops, cultivated algae are affected by various diseases ranging from large outbreaks of a disease to chronic epiphytes, which may downgrade the value of the final product. The recent development of intensive and dense mariculture practices has enabled some new diseases to spread much faster than before. A new disease is reported almost every year, and the impact of diseases is expected to increase with environmental change, such as global warming. We observed the incidence of diseases in two Pyropia sea farms in Korea from 2011 to 2014, and estimated the economic loss caused by each disease. Serious damage is caused by the oomycete pathogens, Pythium porphyrae and Olpidiopsis spp., which decreased the productivity of the Pyropia sea farms. In Seocheon sea farms, an outbreak of Olpidiopsis spp. disease resulted in approximately US $1.6 million in loss, representing approximately 24.5% of total sales during the 2012-2013 season. The damage caused by green-spot disease was almost as serious as oomycete diseases. An outbreak of green-spot disease in the Seocheon sea farms resulted in approximately US $1.1 million in loss, representing 10.7% of total sales in the 2013-2014 season in this area. However, the causative agent of green-spot disease is still not confirmed. "Diatom felt" is regarded as a minor nuisance that does not cause serious damage in Pyropia; however, our case study showed that the economic loss caused by "diatom felt" might be as serious as that of oomycete diseases. Bacteria and cyanobacteria are indigenous members of epiphytic microbial community on Pyropia blades, but can become opportunistic pathogens under suitable environmental conditions, especially when Pyropia suffers from other diseases. A regular acid wash of the Pyropia cultivation nets is the most common treatment for all of the above mentioned diseases, and represents approximately 30% of the total cost in Pyropia sea farming. However, the acid wash is ineffective for some diseases, especially for Olpidiopsis and bacterial diseases.

해조단백질 추출에 관한 연구 3. NaOH 가용성 단백질의 추출 (STUDIES ON THE EXTRACTION OF SEA WEED PROTEINS 3. Extraction of NaOH Soluble Proteins)

  • 이강호;우순임;류홍수
    • 한국수산과학회지
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    • 제11권2호
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    • pp.85-90
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    • 1978
  • 식용해조인 둥근돌김(Perphyra suborbiculata), 잎파래 (Enteromorpha linza), 구멍갈파래 (Ulva pertusa) 미역 (Undaria pinnatifida, 자연생 및 양식), 모자반 (Sargassum fulvellum), 쎌만모자반(Sargassum kjellmanianum) 누운첨각(Codium coarctatum)의 NaOH 가용성 단백질 추출에 영향을 미치는 제요소 즉, 추출용액의 농도, 용매량, 온도, 시간에 따른 조단백질과 순단백질(TCA 불용성 단백질)의 추출 결과를 요약하면 다음과 갈다. 1. 전시료가 0.05M NaOH 용액에서 가장 좋은 추출성적을 얻었으나, TCA 불용성 단백질은 $0.01\~0.025M$에서 추출성적이 좋았으므로, 0.025M에서 추출함이 좋을 것 간다. 2. 시료-용매비(w/v)는 건조시료 1g에 대하여 100ml의 용매를 첨가함이 좋은 것 같다. 3. 추출시간은 녹조류는 1시간, 양식미역 2시간, 자연생미역, 쎌만모자반, 모자반은 3시간에 최고의 추출성적을 얻었다. 4. 추출온도는 전시료가 $60^{\circ}C$에서 최고의 추출성적을 보였다.

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