• 제목/요약/키워드: Aphanizomenon bloom

검색결과 22건 처리시간 0.026초

담수수계에서 남조류 증식억제의 기술적, 전략적 접근 (Technical and Strategic Approach for the Control of Cyanobacterial Bloom in Fresh Waters)

  • 이창수;안치용;나현준;이상협;오희목
    • 환경생물
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    • 제31권4호
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    • pp.233-242
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    • 2013
  • Cyanobacteria (blue-green algae) are not only the first oxygenic organisms on earth but also the foremost primary producers in aquatic environment. Massive growth of cyanobacteria, in eutrophic waters, usually changes the water colour to green and is called as algal (cyanobacterial) bloom or green tide. Cyanobacterial blooms are a result of high levels of primary production by certain species such as Microcystis sp., Anabaena sp., Oscillatoria sp., Aphanizomenon sp. and Phormidium sp. These cyanobacterial species can produce hepatotoxins or neurotoxins as well as malodorous compounds like geosmin and 2-methylisoborneol (MIB). In order to solve the nationwide problem of hazardous cyanobacterial blooms in Korea, the following technically and strategically sound approaches need to be developed. 1) As a long-term strategy, reduction of the nutrients such as phosphorus and nitrogen in our water bodies to below permitted levels. 2) As a short term strategy, field application of combination of already established bloom remediation techniques. 3) Development of emerging convergence technologies based on information and communication technology (ICT), environmental technology (ET) and biotechnology (BT). 4) Finally, strengthening education and creating awareness among students, public and industry for effective reduction of pollution discharge. Considering their ecological roles, a complete elimination of cyanobacteria is not desirable. Hence a holistic approach mentioned above in combination to addressing the issue from a social perspective with cooperation from public, government, industry, academic and research institutions is more pragmatic and desirable management strategy.

Seasonal Changes in Cyanobacterial Diversity of a Temperate Freshwater Paldang Reservoir (Korea) Explored by using Pyrosequencing

  • Boopathi, Thangavelu;Wang, Hui;Lee, Man-Duck;Ki, Jang-Seu
    • 환경생물
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    • 제36권3호
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    • pp.424-437
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    • 2018
  • The incidence of freshwater algal bloom has been increasing globally in recent years and poses a major threat to environmental health. Cyanobacteria are the major component of the bloom forming community that must be monitored frequently. Their morphological identities, however, have remained elusive, due to their small size in cells and morphological resemblances among species. We have analyzed molecular diversity and seasonal changes of cyanobacteria in Paldang Reservoir, Korea, using morphological and 16S rRNA pyrosequencing methods. Samples were collected at monthly intervals from the reservoir March-December 2012. In total, 40 phylotypes of cyanobacteria were identified after comparing 49,131 pyrosequence reads. Cyanobacterial genera such as Anabaena, Aphanizomenon, Microcystis and Synechocystis were predominantly present in samples. However, the majority of cyanobacterial sequences (65.9%) identified in this study were of uncultured origins, not detected morphologically. Relative abundance of cyanobacterial sequences was observed as high in August, with no occurrence in March and December. These results suggested that pyrosequencing approach may reveal cyanobacterial diversity undetected morphologically, and may be used as reference for studying and monitoring cyanobacterial communities in aquatic environments.

녹조현상 원인조류들의 염소처리에 의한 소독부산물 생성 및 microcystins 유출 (Effect of Chlorination on Disinfection Byproducts Production and Release of Microcystins from Bloom-forming Algae)

  • 박혜경;서용찬;조일형;박병황
    • 한국물환경학회지
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    • 제22권3호
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    • pp.513-520
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    • 2006
  • The effect of chlorination on disinfection byproducts (DBPs) production from bloom-forming freshwater algae including 7 strains of cyanobacteria and 6 strains of diatoms was investigated. The release and degradation of hepatotoxin (microcystins) by the chlorination on Microcystis under differential condition of the chlorination time and dose were also investigated. The disinfection byproducts formation potentials (DBPFP) of cyanobacterial species and diatoms were ranged from 0.017 to $0.070{\mu}mol\;DBPs/mg$ C and from 0.129 to $0.708{\mu}mol\;DBPs/mg$ C respectively. Among three major groups of DBPs, haloacetonitrils (HANs) was major product in most test strains except Aphanizomenon sp. and Oscillatoria sp. Haloacetic acids (HAAs) was less than 5 % of total DBPs. Chloroform and dichloroacetonitril (DCAN) were dominant compounds in trihalomethanes (THMs) and HANs respectively. After 4 hours chlorination of toxic Microcystis aeruginosa under the dose range of 0.5 to $10mg\;Cl_2/L$, the concentration of intracellular microcystins decreased, but dissolved dissolved microcystins concentration increased with the treatment of more than $3mg\;Cl_2/L$. However the total amount of microcystins was almost constant even at $10mg\;Cl_2/L$ of chlorination. To conclude, our results indicate that the chlorination causes algal cell lysis and release of intracellular microcystins in the intact form to surrounding waters.

Daily Variation of Phytoplankton and Water Quality in the Lower Nakdong River

  • Lee, You-Jung;Jung, Jong-Mun;Shin, Pan-Se;Joo, Gea-Jae
    • ALGAE
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    • 제20권2호
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    • pp.133-140
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    • 2005
  • Daily variation of phytoplankton community and environmental parameters were investigated at the lower Nakdong River (Mulgum) from January 2002 to December 2003 to investigate the dynamics of a phytoplankton community in detail. The daily results of water quality in this investigation showed pH (8.1 $\pm$ 0.7), DO (10.3 $\pm$ 2.7 $mg{\cdot}l^{-1}$), water temp. (18.8 $\pm$ 7.4°C), BOD (2.4 $\pm$ 1.0 $mg{\cdot}l^{-1}$), COD (5.3 $\pm$ 1.2 $mg{\cdot}l^{-1}$) and chl. a (43.5 $\pm$ 35.1 mg ${\cdot}m^{-3}$). The results of nutrient factors were the following: TN (3.1 $\pm$ 0.8 $mg{\cdot}l^{-1}$), NO3-N (2.5 $\pm$ 0.5 $mg{\cdot}l^{-1}$), TP (90 $\pm$ 48 ${\mu}g\;{\cdot}\;l^{-1}$), PO4-P (43 $\pm$ 30 ${\mu}g\;{\cdot}\;l^{-1}$). Dominant phytoplankton species during the study period were diatom (Stephanodiscus hantzschii, Aulacoseira granulata var. angustissima and A. italica) and cyanobacteria (Microcystis aeruginosa, Aphanizomenon flos-aquae). The small centric diatom, Stephanodiscus hantzschii, was repeatedly dominant from late fall to the following spring (mean and maximum cell density, 2.3 × 103 $\pm$ 3.8 × 103, 4.5 × 105 cells $ml^{-1}$, respectively). Pinnate diatom, Aulacoseira granulata var. angustissima and A. italica, were frequently observed all season except January to March. Cyanobacteria, Microcystis aeruginosa and Aphanizomenon flos-aquae, proliferated in summer of 2002 except in 2003 due to heavy precipitation. The dominant zooplankton species (March-early May) was rotifer (Brachionus, Keratella, Polyarthra) and cladocerans (Diaphanosoma). The daily observed dynamics of the phytoplankton community in the lower Nakdong River in this study may play an important role in increasing the detailed resolution of limnological information and serving as ecological data for future studies.

낙동강 중, 하류 및 덕동호의 시·공간적 남조류 군집 특성 (Spatio-temporal Characteristics of Cyanobacterial Communities in the Middle-downstream of Nakdong River and Lake Dukdong)

  • 박혜경;신라영;이혜진;이경락;천세억
    • 한국물환경학회지
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    • 제31권3호
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    • pp.286-294
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    • 2015
  • Temporal and spatial characteristics of cyanobacterial communities at the monitoring stations for Harmful Algal Bloom Alert System (HABAS) in Nakdong River and Lake Dukdong were investigated for two years (2013 to 2014). A total of 30 cyanobacterial species from 14 genera were found at the survey stations. Microcystis sp. showed maximum cell density in the total cyanobacterial community in August, 2014 at ND-2 and in September, 2013 at ND-3 station. Lynbya limnetica and Geitlerinema sp., non-target species for alert criteria showed maximum cell density at ND-1 (August, 2013) and Dam station of Lake Dukdong (September, 2014), respectively. Total cyanobacterial cell density and the relative abundance of four target genera (Microcystis, Anabaena, Aphanizomenon and Oscillatoria spp.) for alert criteria was relatively lower in the mesotrophic Lake Dukdong than at the eutrophic riverine stations of Nakdong River, indicating cyanobacterial density and the RA of target genera is affected by the trophic state of the monitoring stations. Simulating the alert system using phycocyanin concentration as an alert criterion resulted in the longer period of alert issued compared to the period of alert issued using the current criterion of harmful cyanobacterial cell density due to the influence of phycocyanin concentration from non-target cyanobacterial species.

용담호 녹조현상의 원인 남세균 연구 (1) 질소고정 남세균 Anabaena spiroides v. crassa 종주와 영양염 제한 (Bloom-forming Cyanobacteria in Yongdam Lake (1) Nutrient limitation in a Laboratory Strain of a Nitrogen-fixing Cyanobacterium, Anabaena spiroides v. crassa)

  • 박종우;김영길;허우명;김범철;이원호
    • 한국해양학회지:바다
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    • 제11권4호
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    • pp.158-164
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    • 2006
  • 2000년 12월부터 담수를 시작한 용담호는 총 저수량 8.2억톤으로 국내 5위의 대규모 다목적댐 호수로서, 새만금 담수호에 유입되는 하천수의 최상류에 위치한 인공호이다. 새만금 방조제가 완공되어 수문을 조작하면, 용담호의 계절적인 식물플랑크톤 군집변화는 신생 새만금호의 녹조현상을 좌우하는 한 요인이 될 것이다. 용담호의 초기 담수화 과정 중 2002-2003년 하계에 남세균 녹조현상이 나타났으며, 녹조현상을 일으킨 주요 속은 Anabaena, Microcystis, Aphanizomenon 등이었다. 이 가운데 사상체 남세균인 Anabaena속에는 영양세포 이외에 이질세포나 휴면세포 등의 특수기능 세포를 가진 종들이 포함되어 있다. 용담호 녹조현상이 나타난 현장의 시료에서 분리한 Anabaena spiroides v. crassa의 단종배양체인 KNU-YD0310종주를 확립하였으며, 실내배양 실험을 통하여 이 종주의 영양염 요구를 연구하였다. 질소영양염 제한 조건에서는 이질세포의 영양세포에 대한 비율이 높았으며, 질소제한 정도에 따라 그 비율은 더욱 증가하였다. 질소고정능이 있는 KNU-YD0310는 질소제한 조건에서도 성장이 지속되나, 인의 경우에는 초기의 공급 농도에 비례하는 성장을 나타내었다. 인영양염 제한 조건에서는 휴면세포의 형성량이 증가하여, 인 제한의 경우에는 실험 종주가 세포대사를 억제하여 부적합한 환경조건에서의 생존기간을 연장시키는 적응전략을 가진 것으로 판단된다. 이와 같은 Anabaena spiroides v. crassa의 생리 생태적 특성은 향후 새만금 담수호의 녹조현상 예방대책 수립을 위한 수서생태학적 기준으로 활용될 수 있을 것이다.

액체크로마토그래피-형광검출법에 의한 호소시료의 아나톡신-a 분석 (Analysis of anatoxin-a in aqueous and cyanobacterial samples from korean lakes by liquid chromatography with fluorescence detection)

  • 이인정;이철구;허성남;이재관
    • 분석과학
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    • 제24권3호
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    • pp.225-230
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    • 2011
  • 아나톡신-a는 Anabaena, Aphanizomenon, Oscillatoria 등의 남조류에서 생성되는 신경독소로 강한 독성을 나타낸다. 국내에서는 영천호 등의 호소에서 최근 Anabaena에 의한 수화현상이 늘어나고 안전한 상수원수의 확보를 위하여 아나톡신-a의 미량분석이 필요한 실정이다. 본 연구에서는 아나톡신-a를 고상추출한 뒤 4-fluoro-7-nitro-2,1,3-benzoxadiazole (NBD-F)로 형광 유도체화시켜 고성능액체크로마토그래프-형광검출기(HPLC-FLD)로 분석하였다. 시험방법 validation 결과 직선성, 회수율, 재현성에서 모두 좋은 값을 나타내었으며, 방법검출한계(MDL)은 조체 시료의 경우 $0.034\;{\mu}g/g$, 물 시료의 경우 $0.022\;{\mu}g/L$로 비교적 좋은 감도를 얻을 수 있었다. 국내 안동호, 영천호 및 대청호에서 채취한 조체와 물 시료에서 아나톡신-a의 농도를 분석한 결과 조체 시료에서는 $0.135\sim10.979\;{\mu}g/g$의 농도로 검출되었으며, 물 시료에서는 검출되지 않았다.

한국산 유독 남조류의 독소함량을 근거로 한 조류경보제 발령기준 검토 (Investigation of Criterion on Harmful Algae Alert System using Correlation between Cell Numbers and Cellular Microcystins Content of Korean Toxic Cyanobacteria)

  • 박혜경;김화빈;이재정;이재안;이혜진;박종환;서정관;윤석제;문정숙
    • 한국물환경학회지
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    • 제27권4호
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    • pp.491-498
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    • 2011
  • We investigated the ranges of total cellular microcystins content of cyanobacterial blooms collected in Korean lakes and rivers from 2005 to 2009. The amount and composition of microcystins of Korean cyanobacteria varied depending on the sampling water bodies and dominant cyanobacterial genera. Toxic cyanobacterial cell numbers equivalent to $1{\mu}g$ MCYSTs/L using total cellular microcystin content of Korean cyanobacteria were in the range of 2,348 to 66,980,638 cells/mL. Only four samples among forty nine samples showed less cell numbers than current criterion of Harmful Algae Alert System, 5,000 cells/mL indicating current criterion do not reflect properly the microcystins content of Korean cyanobacteria. Anabaena and Aphanizomenon spp. showed three to six times higher cell numbers equivalent to $1{\mu}g$ MCYSTs/L than Microcystis spp. To propose criteria of Harmful Algae Alert System for Korean toxic cyanobacteria, we calculated about 50% selective geometrical means of cyanobacterial cell numbers equivalent to $1{\mu}g$ MCYSTs/L in order of toxic content. The proposed criteria for Microcystis, Oscillatoria, Anabaena, and Aphanizomenon spp., are 10,000, 20,000, 40,000, and 80,000 cells/mL, respectively.

대청호에서 Geosmin, 2-MIB의 시간적·공간적 분포 특성 (Temporal and Spatial Distribution of Geosmin and 2-MIB in the Daecheong Reservoir)

  • 김교영;간종범;최인찬;홍선화;이준배;이수형;이재정
    • 한국환경농학회지
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    • 제34권1호
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    • pp.14-20
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    • 2015
  • BACKGROUND: Contamination of source water by odorous compounds are one of the problems related to the water quality management, especially in Korea where surface water is used as drinking water. Geosmin (1, 10-trans-dimethyl-trans-9-decalol) and 2-MIB (2-methyl isoborneol : 1,2,7,7-tetramethyl-exo-bicycloheptan-2-ol) are commonly recognized earthy-musty odor compounds produced by algae causing serious problems to the drinking water purification facilities. METHODS AND RESULTS: In this study, spatial and temporal distribution of the odor compounds, geosmin and 2-MIB were investigated along with the development of phytoplankton in the Daechung reservoir from July 2012 to October 2013. CONCLUSION: Concentrations and frequencys of detection of both compounds increased from April to October which were related to cyanobacterial bloom periods. However, concentrations of odor compounds were not related to the number of cyanobacteria. Concentrations of both cyanobacteria and geosmin showed similar trends with depth. Pearson correlation analyses showed that geosmin concentration exhibited significant correlation with the count of Anabaena macrospora and Aphanizomenon flos-aquae. On the other hand, 2-MIB concentration showed a significant correlation with the count of Anabaena smithii.

춘계 금강 하구에서 혼합영양 섬모류인 Myrionecta rubra (=Mesodinium rubrum) 개체군의 단주기 변동 (Semiweekly Variation of Spring Population of a Mixotrophic Ciliate Myrionecta rubra (=Mesodinium rubrum) in Keum River Estuary, Korea)

  • 이원호;명금옥;김형섭;정해진
    • ALGAE
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    • 제20권3호
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    • pp.207-216
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    • 2005
  • Myrionecta rubra, a mixotrophic ciliate, is a cosmopolitan red tide species which is commonly found in neritic and estuarine waters. M. rubra had long been listed as an “nculturable protist”until 2 different laboratory strains were finally established in 2 research groups at the beginning of this century, enabling us to perform initiative investigation into various aspect of the live M. rubra strains (Gustafson et al. 2000; Yih et al. 2004b; Johnson and Stoecker 2005). Field sampling was carried out on high tide at 2 fixed stations around Kunsan Inner Harbor (St.1 near the Estuarine Weir and St.2 off Kunsan Ferry Station) every other day for 4 months from mid-February 2004 to understand detailed figure of the recurrent spring blooms of M. rubra following the onset of the water gates operation of the Keum River Estuarine Weir on August 1994. With its maximum abundance of 272 cells mL$^{-1}$ in St.1, fluctuation pattern of the M. rubra population at the 2 stations was strikingly similar. Notable growth of M. rubra population started on late April, to cause M. rubra red tides during one month from mid-May in which “xceptionally low salinity days”without its red tide were intermittently inserted. High abundance of M. rubra over 50 cells mL$^{-1}$ was recorded at samples with their water temperature and salinity higher than 15${^{\circ}C}$ and 4.0 psu, respectively. During pre-bloom period when salinity fluctuation is moderate and the water temperature is cooler than 15°C, Skeletonema costatum, a chain-forming centric diatom, was most dominant. Cyanobacterial species such as Aphanizomenon flos-aquae and Phormidium sp. replaced other dominant phytoplankters on the days with “xceptionally low salinity”even during the main blooming period of M. rubra. To summarize, M. rubra could form spring blooms in Keum River Estuary when the level of salinity fluctuation was more severe than that for the dominant diatom Skeletonema costatum and milder than that for the predominance by freshwater cyanobacteria. Therefore, optimal control of the scale and frequency of freshwater discharges might lead us to partially modify the fluctuation pattern of M. rubra populations as well as the period of spring blooms by M. rubra in Keum River Estuary. Sampling time interval of 2 days for the present study or daily sampling was concluded to be minimally required for the detailed exploration into the spring blooms by M. rubra populations in estuaries with weirs like Keum River Estuary.