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      • Rotife 배양조에 혼재된 Artemia가 Rotifer 의 증식에 미치는 영향

        정민민,노섬,김필연,Jung, Min-Min,Rho, Sum,Kim, Pil-Yun 한국양식학회 1998 韓國養殖學會誌 Vol.11 No.1

        rotifer의 배양조에 혼재된 Artemia가 rotifer의 증식에 미치는 영향을 검토하였다. 실험에는 Koshiki주의 rotifer, Brachionus rotundiformis와 미국 샌프란시스코의 Great Salt lake주의 Artemia sp.를 사용했다. 그리고 모든 실험은 염분을 22ppt, 배양 온도는 $25^{\circ}C.$, 먹이로서 N. oculata을 2일 간격으로 ml 당 $7{\times}10^5$ 세포씩 공급하면서, 50 ml의 비이커에 N. oculata 현탁액을 40ml씩 넣고, rotifer 20마리 그리고 Artemia는 3마리씩 각 수조에 수용하여 각 생물들을 단일종 배양한 경우와 혼합 배양한 경우의 증식을 비교하였다. rotifer와 Artemia 유생을 혼합 배양한 경우, 두 생물은 한정된 먹이 N. oculata 조건하에서 먹이 경쟁(food competition)을 하였다. 또한, rotifer의 대량 배양조에 Artemia 성체의 급속한 섭식 활동에 의해서 심각한 먹이 부족 현상을 일으켰다. 결국, Artemia 성체는 rotifer의 안정적인 생산을 크게 방해하는 rotifer 증식 억제 요인으로서 작용했다. 즉, rotifer을 안정적으로 생산하기 위해서는 종묘 생산 과정에서 유발될 수 있는 Artemia의 혼재가 일어나지 않도록 각별한 주의가 필요하다. Artemia often observed as a co-existing organism in the mass culture tank of marine rotifer. The rotifer and Atremia are commonly used as food organisms in the marine fish larvae rearing. In this study, interspecific relation between the rotifer Brachionus rotundiformis (formely called S-type) and anostracan Artemia of the two developmental stages (0 and 19 day old after hatching) were investigated in the larboratory. The population growth of B. rotundiformis and one of the stage (nauplius or adult) of Artemia in mixed culture was compared with that of each single species culture. Culture period was 16 days. Every two days, the number of organisms in each species was counted and transferred to a fresh medium containing $7{\times}10^5$cells/ml of food Nannochloropsis oculata. Culture volume, temperature, salinity and photoperiod were set at 40ml, $25^{\circ}C.$, 22ppt and 24h all dark except to observation time, respectively. The rotifer population growth was greatly decreased by co-existence with Artemia. The coexisting Artemia suppressed the rotifer population growth due to it's high filtering speed for food (N. oculata). This study suggested that contamination by Artemia must be prevented for the stable rotifer production in the rotifer mass culture tank.

      • KCI등재후보

        Teaching Culture in Foreign Language Classes

        Esther Stockwell 서울대학교 외국어교육연구소 2018 외국어교육연구 Vol.22 No.-

        Even though many researchers emphasise the interrelatedness of language and culture and the significance of teaching culture in foreign language education, understanding how culture can be taught has proven to be a difficult undertaking in many respects. This problem is hardly new, and the problems of defining what culture is and how to teach it in language classes have been of concern to researchers for decades. Developments in technology have opened up access to cultural resources from all over the world, and to this end, methods of teaching culture using technology have started to appear more regularly in research associated with second language teaching and learning. A glance through the literature reveals, however, that where in the past many teachers focused on teaching a single culture within a language class, in recent years there has been a movement to try to broaden the focus to include general intercultural communication competence, but a systematic approach for methods of teaching culture have been still lacking. However, it is generally accepted that cross-cultural understanding is indeed a by-product of foreign language learning, and language should be taught as an explicit element of cultural practice. Therefore, it is necessary to consider issues about teaching culture in foreign language education such as what role culture plays in language teaching and how it is being taught. Based on current developments in technology, it is timely to think about effective teaching methodologies for integrating culture and language that prepare learners to communicate and collaborate effectively in the 21st century

      • KCI등재

        요각류 Paramphiascella vararensis(T, Scott) (Harpacticoida: Diosaccidae)의 유생 발생: II. copepodid 유생의 발생

        정민민,이화자,김형신,Jung, Min-Min,Lee, Hwa-Ja,Kim, Hyeung-Sin 한국해양학회 2000 바다 Vol.5 No.3

        The complete postembryonic developments of copepodid stages of Paramphiascella vararensis T. Scott(Copepoda: Harpacticoida) are described and illustrated based on specimens cultured in laboratory. The copepodites of P. vararensis feed on powder of one of green macro-algae species Ulva pertusa. Developmental time from copepodid stage to adult (copepodid stage) is about 15 days with culture conditions of 33-34 ppt of salinity, 22-23$^{\circ}$C of temperature and feed on algae powder. Sexual characters of the species are distinct on the copepodid stage. Sexual characters appear in size, antennule, pereiopods of second and bases of the fifth and sixth legs. Males are considerably smaller than females in size. In the antennule, the fourth segment of the male extremely is modified and swollen for female. In the segment number of the endopod of second pereiopod, female has 3 segments while male bears 2 segments. The female has 3 setae while the male bears 2 setae on the inner lobe of basis of fifth leg. In the basis of sixth leg, the female has 2 setae while the male has 3 setae. 이 연구에서는 갑각강, 요각아강, Harpacticoida 목, Diosaccidae과, Paramphiascella 속의 Paramphiascella vararensis의 copepodid유생단계 및 성체의 발생과정에 대하여 보고한다. P. vararensis는 구멍 갈파래의 건조 분말을 먹이로 수온 22${\sim}$23$^{\circ}$C, 염분 33${\sim}$34 ppt의 배양 조건하에서 copepodid I 단계에서 copepodid VI 단계인 성체까지 발생하는데, 15일이 소요되었다. 성 분화는 제 IV copepodid기에서 이루어지며, 크기, 제 1 촉각, 제 2 흉지, 제 5 흉지 및 제 6 흉지 등에서 발생을 거듭하면서 형태적 차이를 보였다. 즉, 크기에서는 숫컷이 암컷보다 훨씬 작으며, 제 1 촉각은 암컷에 비하여 숫컷이 매우 변형되었고, 특히 제 1 촉각의 네 번째 마디가 암컷에 비해 매우 부풀어져있었다. 그리고 암컷의 제 2 흉지의 내지는 3마디이나, 숫컷은 2마디로 차이를 보였다. 한편, 제 5 흉지의 내엽의 강모수는 암컷이 3개, 숫컷이 2개였고, 제 6 흉지에서는 암컷은 2개, 숫컷은 3개의 강모를 갖는다.

      • KCI등재

        Biological Application of Two Protozoan Species, Euplotes sp. and Vorticella sp., for the Stable Culture of the Rotifer Brachionus rotundiformis in Laboratory Experiments of Inter- and Tripartite-Specific Relations

        정민민 한국수산과학회 2012 Fisheries and Aquatic Sciences Vol.15 No.3

        Members of the ciliate group of protozoans are often observed in mass cultures of rotifers. In particular, Euplotes and Vorticella are common contaminating species. In this study, I examined the effect of the ciliates Euplotes sp. and Vorticella sp. on the growth of the rotifer Brachionus rotundiformis by conducting inter-specific and tripartite-specific mixed-culture experiments. The growth of rotifers was suppressed in co-existence with Euplotes sp. compared with monocultures of rotifers. However, Vorticella sp. promoted rotifer growth. Moreover, Vorticella sp. improved the growth of rotifers suppressed by Euplotes sp. contaminants. In 5-L semi-mass cultures of rotifers, growth of the contaminating protozoan Euplotes sp. was heavily suppressed by Vorticella sp. The stable maintenance of the rotifer culture ecosystem can be achieved by manipulating the types of contaminating protozoan species.

      • KCI등재

        Characterization of a Unique New Strain Named the NFRDI N° 1 Rotifer Strain, a Brackish Brachionus Rotifer Collected from a South Korea Coastal Lagoon

        정민민 한국수산과학회 2011 Fisheries and Aquatic Sciences Vol.14 No.4

        A new and a unique Brachionus rotifer was found in Hwajinpo coastal lagoon in Gangwon Province, South Korea. This Brachionus certainly originated from the wild rather than from aquaculture stations because Hwajinpo coastal lagoon has been under rigorous control as a military protected area and therefore could not have been contaminated by aquaculture stations. The new strain was identified as Brachionus rotundiformis based upon its morphological characteristics. The parthenogenetic female of this new rotifer strain typically shows characters similar to those of B. rotundiformis, such as the pot shape of the body, rounded dorsal plate compared with flattened ventral plate, elliptical mictic egg, four frontal spines, six pointed occipital spines, non-nodal foot, two toes, trophi typical of the Brachionus genus with five uncus plates resembling comb teeth, one wide symmetrical manubrium and ramus, and no stiffened spine as is seen in freshwater Brachionus rotifers. Moreover, its lorica was rather small in size compared with other common rotifer strains that serve as live-food organisms (Guam, Thai, and Bali strains). This new and unique Korean brackish rotifer, a B. rotundiformis strain, was therefore named the National Fisheries Research and Development Institute (NFRDI) N° 1 rotifer strain.

      • KCI등재

        자연혼합배양에 의한 초기 먹이생물의 종 조성 변화

        정민민,오봉세,구학동,이창훈,양문호,문태석,김삼연,김형신,Jung, Min-Min,Oh, Bong-Sae,Ku, Hag-Dong,Lee, Chang-Hoon,Yang, Moon-Ho,Moon, Tae-Seok,Kim, Sam-Yeon,Kim, Hyeung-Sin 한국해양학회 2010 바다 Vol.15 No.1

        본 연구에서는 자연혼합배양(nature mixed culture)이라는 기법을 이용하여 해수관상어를 사육하는데 성공하였고 자연혼합배양수조에서 해수관상어의 자어는 정상적으로 성장하고 생존 가능하였다. 자연혼합배양수조에 출현한 플랑크톤성 미소생물은 모두 34종이었으며 그 중에는 Detonula pumila, Nitzschia sp., Fragilaria oceanica, Chaetoceros curvisetus, Stephanodiscus sp., Chaetoceros decipiens, Chaetoceros sp., Thalassiosira rotula, Eucampia zodiacus, Diploneis splendica, Nitzschia longissima, Surirella cuneata, Asterionella glacialis, Nitzschia spp., Chaetoceros debile, Thalassionema nitzschioides, Nitzschia, closterium, Skletonema costatum과 Licmophora sp와 같은 규조류가 19종, Euglena sp, Gonyaulax sp., Pyramimonas sp., Protoperidinium sp., Eutreptia, sp., Parapedinella sp., unidentified micro-flagellate, Gyrodinium sp., Scrippsiella trochoidea, Gymnodinium sanguineum, Chrysochromulina sp., Gymnodinium sp., Prorocentrum triestinum과 Micromonas sp.와 같은 편모조류가 14종 그리고 1종의 섬모충으로서 Mesodinium rubrum가 관찰되었다. 한편, 미소생물 종 중에서 편모조류의 한종인 Chrysochromulina sp.는 사육기간 동안 우점하였는데 이와 같은 결과는 배양 개시 후 10일째부터 지속적이고 안정적으로 유지 가능하였다. We were successfully reared young marine ornamental larva fish in a unique process of microalgae blooming culture tank. The marine fish larva was grown and survived in this method. Generally, we called this method as natural mixed culture. Observed planktonic microalgae were 34 species with 19 diatoms (Detonula pumila, Nitzschia sp., Fragilaria oceanica, Chaetoceros curvisetus, Stephanodiscus sp., Chaetoceros decipies, Chaetoceros sp., Thalassiosira rotula, Eucampia zodiacus, Diploneis splendica, Nitzschia longissima, Surirella cuneata, Asterionella glacialis, Nitzschia spp., Chaetoceros debile, Thalassionema nitzschioides, Nitzschia closterium, Skeletonema costatum and Licmophora sp.), 14 flagellates (Euglena, sp., Gonyaulax sp., Pyramimonas sp., Protoperidinium sp., Eutreptia sp., Parapedinella sp., unidentified micrc-flagellate, Gyrodinium sp., Scrippsiell trochoidea, Gymnodinium sanguineum, Chrysochromulina sp., Gymnodinium sp., Prorocentrum triestinum and Micromonas sp.) and 1 ciliate (Mesodinium rubrum) in this culture tank. Dominant microalgae were Chrysochromulina sp. during the larval rearing periods. Blooming condition maintained continuously and stably from 10 to 60 days in this microcosm.

      • KCI등재

        Survival Strategies of the Rotifer Brachionus rotundiformis for Coexisting with the Copepod Apocyclops borneoensis in Laboratory Culture

        정민민 한국수산과학회 2012 Fisheries and Aquatic Sciences Vol.15 No.1

        Interspecific relationship between a euryhaline rotifer Brachionus rotundiformis and a cyclopoid copepod Apocyclops borneoensis was investigated in the laboratory culture. In a mixed culture of B. rotundiformis and A. borneoensis, population growth of B. rotundiformis was suppressed from day 10, while growth in a monoculture population continuously increased throughout the experimental period. However, the population growth of A. borneoensis in the mixed culture did not markedly differ from that in a monoculture population. Suppression of B. rotundiformis growth coincided with a decrease in the numbers of both non-egg-bearing and egg-bearing females, and increasing resting egg formation. Growth of A. borneoensis was not affected by the presence of the rotifer. However, relative growth index of ovisac bearing females in the mixed culture was 1.62 times higher than that in the monoculture. Presence of the copepod did not greatly reduce the food available to the rotifer population. The rotifer B. rotundiformis responded in a unique way, to stresses such as physical damage (filtering by A. borneoensis) with the production of many resting eggs to increase its chances of survival.

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