• 제목/요약/키워드: Dinophyceae

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FDA와 Calcein-AM 방법을 이용한 해양플랑크톤 생사판별기법 (Applicability of Fluorescein Diacetate (FDA) and Calcein-AM to Determine the Viability of Marine Plankton)

  • 백승호;신경순
    • Ocean and Polar Research
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    • 제31권4호
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    • pp.349-357
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    • 2009
  • Ballast water is widely recognized as a serious environmental problem due to the risk of introducing non-indigenous aquatic species. In this study we aimed to investigate measures which can minimize the transfer of aquatic organisms from ballast water. Securing more reliable technologies to determine the viability of aquatic organisms is an important initiative in ballast water management systems. To evaluate the viability of marine phytoplankton, we designed the staining methods of fluorescein diacetate (FDA) and Calcein-AM assay on each target species belonging to different groups, such as bacillariphyceae, dinophyceae, raphidophyceae, chrysophyceae, haptophyceae and chlorophyceae. The FDA method, which is based on measurements of cell esterase activity using a fluorimetric stain, was the best dye for determining live cells of almost all phytoplankton species, except several diatoms tested in this study. On the other hand, although fluorescence of Calcein-AM was very clear for a comparatively longer time, green fluorescence per cell volume was lacking in most of the tested species. According to the Flow CAM method, which is a continuous imaging technique designed to characterize particles, green fluorescence values of stained cells by FDA were significantly higher than those of Calcein-AM treatments and control, implying that the Flow CAM using FDA assay could be adapted as an important tool for distinguishing living cells from dead cells. Our results suggest that the FDA and Calcein-AM methods can be adapted for use on phytoplankton, though species-specific characters are greatly different from one organism to another.

Seasonal Dynamics of Phytoplankton and Environmental Factors around the Chagwi-do off the West Coast of Jeju Island, Korea

  • Affan, Abu;Lee, Joon-Baek;Kim, Jun-Teck;Choi, Young-Chan;Kim, Jong-Man;Myoung, Jung-Goo
    • Ocean Science Journal
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    • 제42권2호
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    • pp.117-127
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    • 2007
  • The dynamics of phytoplankton abundance with seasonal variation in physicochemical conditions were investigated monthly at 10 stations around the Chagwi-do off the west coast of Jeju Island, Korea, including inshore, middle shore, and offshore in the marine ranching are a from September 2004 to November 2005. Water temperature varied from 12.1 to $28.9^{\circ}C$ (average $18.8^{\circ}C$), and salinity from 28.9 to 34.9 psu (average 33.7 psu). The chlorophyll a concentration was $0.02-2.05\;{\mu}g\;L^{-1}$ (average $0.70\;{\mu}g\;L^{-1}$), and the maximum concentration occurred in the bottom layer in April. A total of 294 phytoplankton species belonging to 10 families was identified: 182 Bacillariophyceae, 52 Dinophyceae, 9 Chlorophyceae, 12 Cryptophyceae, 6 Chrysophyceae, 4 Dictyophyceae, 13 Euglenophyceae, 6 Prymnesiophyceae, 5 Prasinophyceae, and 5 Raphidophyceae. The standing crop was $2.21-48.69\times10^4\;cells\;L^{-1}$ (average $9.23\times10^4\;cells\;L^{-1}$), and the maximum occurred in the bottom layer in April. Diatoms were most abundant throughout the year, followed by dinoflagellates and phytoflagellates. A phytoplankton bloom occurred twice: once in spring, peaking in April, and once in autumn, peaking in November. The spring bloom was represented by four Chaetoceros species and Skeletonema costatum; each contributed 10-20% of the total phytoplankton abundance. The autumn bloom comprised dinoflagellates, diatoms, and phytoflagellates, of which dinoflagellates were predominant. Gymnodinium conicum, Prorocentrum micans, and P. triestinum each contributed over 10% of the total phytoplankton abundance.

운문댐의 식물플랑크톤 군집 동태 (The Dynamic of Phytoplankton Community in Unmun Dam)

  • 김한순
    • 생태와환경
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    • 제45권2호
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    • pp.232-241
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    • 2012
  • 2009년 8월부터 2010년 4월까지 계절별로 조사된 운문댐의 식물플랑크톤은 총 121종류였으며, 이들은 녹조류(47종류)와 규조류(45종류)가 출현종의 76%를 차지하여 가장 중요한 분류군으로 조사되었다. 조사지점별 출현종 수는 동창천과 운문천의 유입부 지점이 합류부나 취수탑 부근보다 출현종 수가 많았다. 식물플랑크톤 현존량은 동창천 유입부 지점에서 가장 높은 현존량을 나타내었으며, 계절별로는 봄철에 가장 높은 현존량을 나타내었다. 식물플랑크톤 현존량의 강별 구성은 가을철에는 와편모조류가 가장 높은 구성비를 차지한 반면 나머지 계절 동안에는 규조류가 가장 높은 구성비를 나타내었고, 남조류는 여름철에 비교적 높은 구성비를 나타내었다. 식물플랑크톤 군집의 우점종은 여름철에는 규조류Aulacoseira granulata가 우점종으로 나타났고, 가을철에는 와편모조류 Peirdinium voltzii, 겨울과 봄철에는 규조류 Asterionella formosa가 우점종으로 조사되었다. 운문댐의 식물플랑크톤 군집의 종풍부도와 종다양성지수는 가을철에 가장 높게 나타났으며, 우점도지수는 봄철에 가장 높게 나타났다.

소규모 연못에서 식물섬 조성 후 식물플랑크톤 군집구조의 변화 (Changes in Phytoplankton Community Structure after Floating-Islands Construction at a Small Pond)

  • 이은주;이효혜미;권오병;석정현;류지훈
    • 한국환경복원기술학회지
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    • 제5권1호
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    • pp.1-7
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    • 2002
  • The effects of floating islands on the changes in phytoplankton community structure were investigated in a small artificial pond. The floating islands planted with various emergent macrophytes covered 35% of total water surface area of the pond. Total 17 genera and 25 species of phytoplankton were found in the pond, of which Dinophyceae was 1 genera and 1 species, Cyanophyceae 1 genera and 1 species, Bacillariophyceae 6 genera and 8 species, and Chlorophyceae 9 genera and 15 species. Dominant phytoplanktons under floating islands were changed from Aphanizomenon sp. as a Cyanophyceae to Golenkinia radiata, Kirchneriella contorta and Micractinium pusillum as a Chlorophyceae for 56 days after the construction of floating islands on July 24, 2001. The changes of dominant phytoplanktons of the control without floating islands were similar to those under floating islands in July and August, but Aphanizomenon sp. was rapidly increased in the control sites in September. About 99% of the cell number of Aphanizomenon sp. was disappeared for a month after construction of floating islands. Species diversity of phytoplankton under the floating islands of Iris pseudoacorus was higher than those of other macrophytes as well as the control without floating islands. The cell numbers of Cyanophyceae and Chlorophyceae were fewer under the floating islands of I. pseudoacorus than those of other macrophytes. Our results showed that the floating islands could be a useful eco-technique for the control of water bloom by Cyanophyceae and Chlorophyceae in a pond ecosystem.

total DNA 및 단백질 함량변화에 의한 C. polykrikoides 조기적조 예측 응용 (Application of DNA Content and Total Protein Concentration to Predict Blooms Caused by Cochlodinium polykrikoides (Dinophyceae) in Korean Coastal Waters)

  • Cho, Eun-Seob;Park, Yong-Kyu
    • 생명과학회지
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    • 제14권2호
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    • pp.255-262
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    • 2004
  • 본 연구는 남해안에서 발생되는 유해성 C. polykrikoides 조기적조를 예측하기 위한 기법으로 DAPI로 염색시킨 DNA와 단백질 함량변화를 단기간으로 조사했다. 조사기간 중의 환경요인, 영양염 (질산, 아질산, 인산염) 농도는 조사지점이나 시기에 관계없이 거의 비슷하게 보였다. 그러나 C. polykrikoides 밀도는 조사지점에 따라 현저하게 다르게 나타났다. 2000년 8월 초순의 경우 C2, C5, C6에서 리터 당34, 62, 57세포를 각각 출현했으며, 8월 중순에는 C3에서 최고 547 세포가 보였다. C. polykrikoides 출현밀도와 DNA 및 단백질 함량과는 양성적인 상관관계를 보였다. 특히 C. polykrikoides 세포밀도가 아주 낮을 경우에 높은 상관값을 나타내었다. 따라서 DNA 및 단백질 함량변화 기법은 C. polykrikoides 조기적조를 쉽게 예측 할 수 있는 중요한 도구도 이용될 수 있다.

분자생물학적 방법을 이용하여 마비성 패류 독소를 생산하는 알렉산드륨 타마렌스 시스트 탐색 (Molecular probe for identification of cysts of resting cyst of PSP-producer Alexandrium tamarense (Dinophyceae))

  • Cho, Eun-Seob
    • 생명과학회지
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    • 제13권2호
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    • pp.163-167
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    • 2003
  • 알렉산드륨 적조생물 속에서 마비성 패류독소를 생산하는 종을 신속하게 동정하므로 패류양식의 독성 모니터링과 방제에 중요한 역할을 할 수 있다. 자연상태에서 영양세포가 출현하기 전 알렉산드륨 타마렌스의 휴면포자만을 신속하게 분리 동정한다는 것은 근본적인 마비성 패류독소 모니터링 및 예측에 큰 역할을 할 수 있다. cTAM-Fl DNA probe은 알렉산드륨 타마렌스의 영양세포 뿐만 아니라 primuline으로 염색하여 메타놀로 고정한 휴면포자에도 반응이 되었다. 영양세포와 휴면포자에 반응되는 DNA probe 위치는 핵내의 말단 부위에 보였다. DNA probe가 세포내로 삽입되는데 가장 적합한 온도와 시간은 50-$54^{\circ}C$, 40-60분이 좋았다.

Dynamics of Microalgae Along the Coastal Areas of Sooyoung Bay, Busan, South Korea

  • Prasad, Binod;Thiyam, General;Lee, Dong-Gyu;Kim, Moo-Sang;Cho, Man-Gi
    • 한국해양바이오학회지
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    • 제5권4호
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    • pp.40-45
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    • 2011
  • Microalgae are one of the major, sustaining components of ecosystem processes and are responsible for biogeochemical reactions that drive our climate changes. Despite this, many marine microalgae are poorly described and little is known of their abundance and distribution along the coastal areas of Sooyoung Bay, Busan, South Korea. The present study has been conducted from November, 2011 to August, 2009 with the objective to provide an overview of the taxonomy diversity and abundance of microalgae along the coastal areas of the Sooyoung Bay. Water samples were collected from different sites, which were located by using a GPS tracker. Chlorophyll fluorescence of the water samples were measured by using ToxY-PAM dual-channel yield analyzer. The chlorophyll fluorescence values were relatively higher during the spring and summer and even in the region near to the sea port. Similarly the abundance of microalgae was higher near the port but diversity index had lower values. The temperature and pH values were same at all the sites. However, only the temperature varied during the sampling period, with higher values during summer and lower in winter. From the preliminary results, the following class of microalgae were found; Bacillariophyceae, Dinophyceae, Silicoflagellate and Cryptophyceae. With a future ongoing work, microalgae are being isolated to establish single cell culture and for identification using light microscopic observations, photography and molecular approaches.

Amphidinium stirisquamtum sp. nov. (Dinophyceae), a new marine sand-dwelling dinoflagellate with a novel type of body scale

  • Luo, Zhaohe;Wang, Na;Mohamed, Hala F.;Liang, Ye;Pei, Lulu;Huang, Shuhong;Gu, Haifeng
    • ALGAE
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    • 제36권4호
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    • pp.241-261
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    • 2021
  • Amphidinium species are amongst the most abundant benthic dinoflagellates in marine intertidal sandy ecosystems. Some of them produce a variety of bioactive compounds that have both harmful effects and pharmaceutical potential. In this study, Amphidinium cells were isolated from intertidal sand collected from the East China Sea. The two strains established were subjected to detailed examination by light, and scanning and transmission electron microscopy. The vegetative cells had a minute, irregular, and triangular-shaped epicone deflected to the left, thus fitting the description of Amphidinium sensu stricto. These strains are distinguished from other Amphidinium species by combination characteristics: (1) longitudinal flagellum inserted in the lower third of the cell; (2) icicle-shaped scales, 276 ± 17 nm in length, on the cell body surface; (3) asymmetrical hypocone with the left side longer than the right; and (4) presence of immotile cells. Therefore, they are described here as Amphidinium stirisquamtum sp. nov. The molecular tree inferred from small subunit rRNA, large subunit rRNA, and internal transcribed spacer-5.8S sequences revealed that A. stirisquamtum is grouped together with the type species of Amphidinium, A. operculatum, in a fully supported clade, but is distantly related to other Amphidinium species bearing body scale. Live A.stirisquamtum cells greatly affected the survival of rotifers and brine shrimp, their primary grazers, making them more susceptible to predation by the higher tropic level consumers in the food web. This will increase the risk of introducing toxicity, and consequently, the bioaccumulation of toxins through marine food webs.

Five phototrophic Scrippsiella species lacking mixotrophic ability and the extended prey spectrum of Scrippsiella acuminata (Thoracosphaerales, Dinophyceae)

  • Ji Hyun You;Jin Hee Ok;Hee Chang Kang;Sang Ah Park;Se Hee Eom;Hae Jin Jeong
    • ALGAE
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    • 제38권2호
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    • pp.111-126
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    • 2023
  • Mixotrophic dinoflagellates act as primary producers, prey, and predators in marine planktonic food webs, whereas exclusively autotrophic dinoflagellates are primary producers and prey. Species of the dinoflagellate genus Scrippsiella are commonly found in marine ecosystems and sometimes cause harmful red tides. Among the 28 formally described Scrippsiella species, S. acuminata has been found to be mixotrophic and two unidentified species have been found to be mixotrophic. To determine whether the other species in this genus are similarly mixotrophic, the mixotrophic ability of S. donghaiensis SDGJ1703, S. lachrymosa SLBS1703, S. masanensis SSMS0908, S. plana SSSH1009A, and S. ramonii VGO1053 was explored using 15 potential prey items, including 2-㎛ fluorescently labeled microspheres (FLM) and heterotrophic bacteria (FLB), the cyanobacterium Synechococcus sp., and various microalgal prey species. The ability of S. acuminata to feed on FLM and FLB was also investigated. We found that S. donghaiensis, S. lachrymosa, S. masanensis, S. plana, and S. ramonii did not feed on any potential prey tested in this study, indicating a lack of mixotrophy. However, S. acuminata fed on both FLM and FLB, confirming its mixotrophic ability. These results lowered the proportion of mixotrophic species relative to the total number of tested Scrippsiella species for mixotrophy from 100% to 29-38%. Owing to its mixotrophic ability, S. acuminata occupies an ecological niche that is distinct from that of S. donghaiensis, S. lachrymosa, S. masanensis, S. plana, and S. ramonii.

Lack of mixotrophy in three Karenia species and the prey spectrum of Karenia mikimotoi (Gymnodiniales, Dinophyceae)

  • Jin Hee Ok;Hae Jin Jeong;An Suk Lim;Hee Chang Kang;Ji Hyun You;Sang Ah Park;Se Hee Eom
    • ALGAE
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    • 제38권1호
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    • pp.39-55
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    • 2023
  • Exploring mixotrophy of dinoflagellate species is critical to understanding red-tide dynamics and dinoflagellate evolution. Some species in the dinoflagellate genus Karenia have caused harmful algal blooms. Among 10 Karenia species, the mixotrophic ability of only two species, Karenia mikimotoi and Karenia brevis, has been investigated. These species have been revealed to be mixotrophic; however, the mixotrophy of the other species should be explored. Moreover, although K. mikimotoi was previously known to be mixotrophic, only a few potential prey species have been tested. We explored the mixotrophic ability of Karenia bicuneiformis, Karenia papilionacea, and Karenia selliformis and the prey spectrum of K. mikimotoi by incubating them with 16 potential prey species, including a cyanobacterium, diatom, prymnesiophyte, prasinophyte, raphidophyte, cryptophytes, and dinoflagellates. Cells of K. bicuneiformis, K. papilionacea, and K. selliformis did not feed on any tested potential prey species, indicating a lack of mixotrophy. The present study newly discovered that K. mikimotoi was able to feed on the common cryptophyte Teleaulax amphioxeia. The phylogenetic tree based on the large subunit ribosomal DNA showed that the mixotrophic species K. mikimotoi and K. brevis belonged to the same clade, but K. bicuneiformis, K. papilionacea, and K. selliformis were divided into different clades. Therefore, the presence or lack of a mixotrophic ability in this genus may be partially related to genetic characterizations. The results of this study suggest that Karenia species are not all mixotrophic, varying from the results of previous studies.