• 제목/요약/키워드: green macroalgae

검색결과 26건 처리시간 0.024초

Intensive land-based production of red and green macroalgae for human consumption in the Pacific Northwest: an evaluation of seasonal growth, yield, nutritional composition, and contaminant levels

  • Gadberry, Bradley A.;Colt, John;Maynard, Desmond;Boratyn, Diane C.;Webb, Ken;Johnson, Ronald B.;Saunders, Gary W.;Boyer, Richard H.
    • ALGAE
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    • 제33권1호
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    • pp.109-125
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    • 2018
  • Turkish towel (Chondracanthus exasperatus), Pacific dulse (Palmaria mollis, also known as Red ribbon seaweed), and sea lettuce (Ulva spp.) were cultivated in a land-based intensive culture system at the Manchester Research Station, USA from August 2013 to September 2014. Macroalgae were grown in tumble-aerated tanks, harvested bimonthly for seasonal growth calculations, and analyzed for protein, lipid, ash, and amino acid content. Growth rate of all three species exhibited a similar pattern, with the highest specific growth rates occurring during the summer months (Turkish towel: 7.8%, Pacific dulse: 8.2%, and sea lettuce: 6.2%). Growth of all three species was lowest around winter solstice; with negative growth only observed in sea lettuce. On a dry weight basis significant differences in protein content existed between the three species with highest values for sea lettuce ($29.5{\pm}1.4%$). Lipid content varied between species (0.95-2.78%) with significantly higher lipid observed in sea lettuce (0.58-4.82%). No significant differences were detected on a seasonal basis among each species. Essential amino acids accounted for $43{\pm}0.9$ to $47{\pm}1.2%$ of total amino acids with Turkish towel having the highest value. Turkish towel had a significantly higher taurine level ($0.82{\pm}0.27$) than the other macroalgae. The levels of persistent organic pollutants and heavy metals were low. The estimated annual product of the three species ranged from 50- to $70-mt\;dry\;weight\;ha^{-1}\;y^{-1}$, significantly higher than conventional crops. Land-based culture of these species can produce year-round harvest, consistent product quality, and low contaminant levels.

구멍갈파래(Ulva pertusa Kjellman)의 생태생리에 대한 생육기질의 효과 (The Effect of Substrate on Ecophysiological Characteristics of Green Macroalga Ulva pertusa Kjellman (Chlorophyta))

  • 최태섭;김광용
    • ALGAE
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    • 제20권4호
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    • pp.369-377
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    • 2005
  • Seashore joining with land and sea, which is typical habitat for marine macroalgae, is classified two types of shore as soft- and hard-bottom shore according to topographical (geological) and ecological features. We compared two of Ulva pertusa Kjellman from two contrasting habitats, sandy (soft-bottom, Haenam) and rocky shore (hard-bottom, Hadong) in terms of chlorophyll-a fluorescence and its parameters, and various photosynthetic pigment and nutrient content in the tissue of those. Both of habitats were different in the light environment such as light attenuation coefficient and even in nutrient concentration of ambient seawater. Electron transport rate (ETR) of Ulva from sandy shore was higher than from rocky shore. The range of photosynthetic pigment content in the tissue of U. pertusa was significantly much more in from sandy shore, and also nitrogen and phosphorus content were significantly higher except for carbon content. However, there were no significant differences in the ratio of among photosynthetic pigments, and N:P ratio was similar between each other, even though significantly different. Our result implied on the reason of why most of green tides in the worldwide concentrated and frequently occurred at sites with sandy, muddy and silty bottoms, being classified as soft-bottom shore.

DNA 바코드를 이용한 제주도 연안 파래대발생(green tide)을 형성하는 갈파래(genus Ulva) 군집구조 및 주요 종 구성의 시간적 변이 (Temporal variation in the community structure of green tide forming macroalgae(Chlorophyta; genus Ulva) on the coast of Jeju Island, Korea based on DNA barcoding)

  • 박혜진;변서연;박상율;이혁제
    • 환경생물
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    • 제40권4호
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    • pp.464-476
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    • 2022
  • 가속화되는 기후변화로 인해 전 세계 각지의 연안에서 해조류 대발생(macroalgal bloom)이 빈번하게 일어나고 있다. 특히, 녹조류의 대량 증식으로 인한 녹조(파래) 대발생(green tide) 현상은 지역 경제뿐만 아니라 연안 생태계 환경에도 막대한 피해를 주고 있다. 우리나라의 경우 2000년대부터 제주도 동북부 해안을 중심으로 파래대발생이 연중 지속적으로 관찰되며, 최근에는 남해와 동해 일대에서도 국지적으로 관찰되고 있다. 파래대발생의 원인 종은 갈파래속(Chlorophyta; genus Ulva)으로 알려져 있으며, 기후변화의 영향으로 해수 온도의 상승과 담지하수 및 인근지역 오염수 배출로 인한 질소와 인의 대량 유입으로 인한 영양염류 증가가 주요 원인으로 추정되고 있다. 갈파래속은 환경변화에 의해 형태적 발현의 가소성이 높은 표현형 적응성(phenotypic plasticity) 때문에 형태적 종 동정은 거의 불가능하다. 갈파래류 종 판별을 위해서는 분자유전학적 분석이 수행되어야 하나 현재 분자데이터를 이용한 갈파래 종 분포, 군집구조와 같은 생태조사연구는 매우 미흡한 실정이다. 파래대발생 피해 저감을 위해서는 파래대발생 주요 종들을 분자계통학적 분석을 통하여 정확하게 파악하는 것이 우선이다. 선행 연구에서는 2015년 파래대발생을 일으키는 주요 종 파악을 위해 핵 DNA ITS와 엽록체 DNA tufA (chloroplast elongation factor Tu) 유전자를 이용하여 분자계통학적 분석을 수행하였으며, 종 동정에는 tufa 유전자가 더 정확한 결과를 나타냈다. 따라서 본 연구에서는 tufA 유전자를 이용해 2015~2020년 제주도 연안에서 파래대발생을 일으키는 주요 구성 갈파래 종의 군집구조 및 종 다양성을 파악하고 종 구성의 시간적 변이를 확인하고자 하였다. 본 연구에서는 온대와 아열대 해역에서 주로 생장하는 것으로 알려진 큰갈파래와 구멍갈파래 종이 파래대발생의 주요 구성 종임을 확인하였다. 구멍갈파래는 2015년(35.75%)에서 2020년(36.18%) 기간 상대빈도의 변화가 거의 없고 안정적으로 유지되었으나, 큰갈파래의 경우 2015년(20.77%)에 비해 2020년(36.84%) 빈도가 대략 16% 증가하였다. 이러한 결과는 기후변화와 연관된 평균 해수면 온도의 상승에 큰갈파래의 높은 성장률 및 적응력과 관련이 있을 수 있으며, 제주도의 갈파래 군집을 구성하는 종 수는 2015년에는 9종이었으나 2020년에는 7종으로 감소하는 것으로 나타났다. 또한, 유럽 원산지 외래종인 긴통갈파래와 굽은갈파래가 2015년과 2020년 모두 제주 연안에서 관찰되어 이 두 종에 대한 향후 지속적인 모니터링이 필요하다. 본 연구의 결과는 우리나라 연안에서 발생하는 파래대발생의 저감을 위해 주요 종인 갈파래속(genus Ulva)에 대한 분자유전학적 데이터에 대한 정보를 제공하고자 한다.

자외선이 해조류에 미치는 영향에 관한 고찰 (Overview of UV-B Effects on Marine Algae)

  • 한태준
    • 환경생물
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    • 제17권1호
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    • pp.1-9
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    • 1999
  • 산업활동의 부산물인 chlorofluorocarbons(CFCs)와 같은 물질들의 대기권 유입으로 오존층의 파괴가 극심해짐에 따라 자외선의 지표유입량이 증가되는 추세를 보이는데, 특히 중파자외선의 증가는 DNA, 단백질, 지질 등에 의한 흡수를 통하여 생물학적 폐해를 야기할 수 있다는 점에서 주목된다. 최근 측정 결과 우리나라 동해안에서 해수표면에 도달되는 중파자외선 광량의 1%가 수심 l0 m까지 침투하는 것으로 나타났는데, 이는 해양생태계 생산성의 대부분이 해양 수심의 상위 2.5%에 해당되는 투광대에 의존한다는 점을 감안할 때 자외선에 의한 막대한 생태학적 폐해를 예견하게 해준다. 실내배양실험 연구에서 중파자외선은 대형해조류의 생장 및 광합성을 억제하고 광합성 색소를 파괴하는 등의 생물독성학적 효과를 보였다. 반면, 자외선의 피해로부터 해조류를 보호해 주는 몇 가지 기작이 밝혀진 바 있는데, 어린시기의 갈조류 다시마는 청색광에 의한 광재활성화 능력을 함유한 것으로 보이고, 한국산 녹조 구멍갈파래와 홍조 도박류에서는 자외선을 강하게 차단하는 흡수물질이 형성됨을 알 수 있었다. 그러나 이러한 적응기능들이 해조류에서 보편적으로 나타나는 것인지에 대해서는 좀 더 연구가 필요하다. 해양생태계는 대기 중 CO$x_2$를 이용하여 1년에 약 100 Gt의 유기물질을 생산해내고, 인류가 소비하는 식품의 30%를 제공한다는 점에서 자외선에 의한 생물량의 감소는 해조류 뿐만 아니라 먹이망에 의해서 복잡한 연결구조를 지닌 생태계 전체의 붕괴를 야기할 수 있는 심각한 사안이라고 할 수 있다. 따라서, 자외선에 대한 피해를 연구 평가하여 전략을 세우고 이를 예측하는 예보시스템을 개발할 필요성이 절실히 부각된다.

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Epiphytic Communities on Marine Plants of Seychelles, Indian Ocean, East Africa

  • Ivin, V.V.;Zvyagintsev, A.Yu.;Titlyanova, T.V.
    • Ocean and Polar Research
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    • 제22권1호
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    • pp.37-43
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    • 2000
  • Epiphytic communities on marine plants of Seychelles (Indian Ocean Island group associated with East Africa) were investigated in January - March of 1989 during the $15^{th}$ biological voyage of the research vessel cademic Alexander Nesmeyanov. A seagrass species, Thalassodendron ciliatum, and macroalgae (Sargassum spp. and Halimeda spp.) were tested for host substrates and biomass of their dominant epiphytes were assessed. Also, in order to understand the effect of shading and nutrient filtering by epiphytes, two series of photosynthetic rates were compared for Th. ciliatum host leaves having 10% and no epiphytes. Total of 84 species of algae and main taxons of benthic animals were identified from three different host plants. An average biomass of the epiphytes on Th. cihiatum was $184.6g\;kg^{-1}$ and dominant species were green alga Halimeda opuntia, red algae Dictyurus occidentalis and Gelidiella myrioclada. These dominant species and their biomass were remarkably varied with depth increment. On Sargassum spp., an average biomass of the epiphytes was $0.18g\;kg^{-1}$ and the maximum biomass was never exceeded $0.16g\;kg^{-1}$. In the case of Halimeda spp. an average biomass of the epiphytes was $8.0g\;kg^{-1}$, and dominant species were Peyssonnelia dubyi, sponges and decapods. Photosynthetic rates of Th. ciliatum were significantly reduced in the leaves having 10% epiphytes (1.72 times lower, t=6.718, p<0.001).

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추자도 조간대 해조류의 종조성과 생물량 (Species Composition and Biomass of Intertidal Seaweeds in Chuja Island)

  • 김명숙;김미량;정미희;김정하;정익교
    • ALGAE
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    • 제23권4호
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    • pp.301-310
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    • 2008
  • The marine benthic algal flora and biomass of Chuja Island, southern coast of Korea, was investigated. The collections of intertidal marine algae were made at two sites, Yecho of Hachujado and Hupo of Sangchujado, from October 2006 to July 2007. A total of 162 species, including 15 green, 47 brown and 100 red algae, were identified in this study. The occurrence of species according to season was abundant during spring to summer and less in autumn. The vertical distribution of intertidal zone in Chujado was characterized by Gloiopeltis spp., Myelophycus simplex, Ishige okamurae, Chondrus ocellatus, Grateloupia elliptica, Hizikia fusiformis and Sargassum spp. The average biomass of macroalgae was measured as 400 g wet wt m$^{-2}$. The dominant species based on the biomass were Sargassum yezoense, S. coreanum and Hizikia fusiformis. ESG II (ecological state group) as an opportunistic species, including sheet form, filamentous form, and coarsely branched form, occurred 85.8% in the intertidal seaweeds. These results provide a baseline for future monitoring studies in the Chuja Island.

Occurrence and pathogenicity of Pythium (Oomycota) on Ulva species (Chlorophyta) at different salinities

  • Herrero, Maria-Luz;Brurberg, May Bente;Ojeda, Dario I.;Roleda, Michael Y.
    • ALGAE
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    • 제35권1호
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    • pp.79-89
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    • 2020
  • Pythium species are ubiquitous organisms known to be pathogens to terrestrial plants and marine algae. While several Pythium species (hereafter, Pythium) are described as pathogens to marine red algae, little is known about the pathogenicity of Pythium on marine green algae. A strain of a Pythium was isolated from a taxonomically unresolved filamentous Ulva collected in an intertidal area of Oslo fjord. Its pathogenicity to a euryhaline Ulva intestinalis collected in the same area was subsequently tested under salinities of 0, 15, and 30 parts per thousand (ppt). The Pythium isolate readily infected U. intestinalis and decimated the filaments at 0 ppt. Mycelium survived on U. intestinalis filaments for at least 2 weeks at 15 and 30 ppt, but the infection did not progress. Sporulation was not observed in the infected algal filaments at any salinity. Conversely, Pythium sporulated on infected grass pieces at 0, 15, and 30 ppt. High salinity retarded sporulation, but did not prevent it. Our Pythium isolate produced filamentous non-inflated sporangia. The sexual stage was never observed and phylogenetic analysis using internal transcribed spacer suggest this isolate belongs to the clade B2. We conclude that the Pythium found in the Oslo fjord was a pathogen of U. intestinalis under low salinity.

통영 지역의 암반 조간대에서 배출수 유입으로 인한 해조 군집 구조와 엽체 내 질소 함량의 변화 (Changes of Tissue N Content and Community Structure of Macroalgae on Intertidal Rocky Shores in Tongyeong Area due to Sewage Discharge)

  • 강윤희;박상률;옥정현;이진애;정익교
    • 한국수산과학회지
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    • 제42권3호
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    • pp.276-283
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    • 2009
  • Enrichment in nutrients coming from urban sewage outfalls can lead to eutrophication in coastal areas, which can also change the species composition and community structure of macro algal communities. We investigated the structure of the macro algal community within three rocky shores in order to assess any possible differences in their characteristics. Site 1 was located near Tongyeong city's sewage outfall, Site 2 was located near a public beach area, and Site 3 faced open channel of the Ocean. All three sites were located within the same stretch of the coast, where Site 2 was located between sites 1 and 3. We measured the nutrient concentration in water and the tissue nitrogen content in macro algae samples. Nutrients in the water column surrounding site 1 were high in ammonium ($30.2\pm1.8{\mu}M$), nitrate ($26.2{\pm}0.1{\mu}M$), and phosphate ($2.7{\pm}0.1{\mu}M$) content, and were characterized by low numbers of macroalgal species and species and a low species diversity index. In contrast, site 3 exhibited relatively low nutrient concentration levels and a high number of macroalgal species and a high species diversity index. Comparative analysis showed that the tissue nitrogen content of macroalgae were significantly (P<0.05) affected by the nutrient concentration in the water column. The tissue nitrogen content of green algae within site 1 was higher than the others sites. However, the tissue nitrogen content of brown algae was similar at all three sites. Thus, the tissue nitrogen content of macro algae and the macro algal community structure of intertidal rocky shores were dependent on location and the performance of macroalgal communities was dependent on water quality.

Characterization of macroalgal epiphytes on Thalassia testudinum and Syringodium filiforme seagrass in Tampa Bay, Florida

  • Won, Boo-Yeon;Yates, Kim K.;Fredericq, Suzanne;Cho, Tae-Oh
    • ALGAE
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    • 제25권3호
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    • pp.141-153
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    • 2010
  • Seagrass epiphyte blooms potentially have important economic and ecological consequences in Tampa Bay, one of the Gulf of Mexico's largest estuaries. As part of a Tampa Bay pilot study to monitor the impact of environmental stresses, precise characterization of epiphyte diversity is required for efficient management of affected resources. Thus, epiphyte diversity may be used as a rational basis for assessment of ecosystem health. In May 2001, epiphytic species encompassing green, brown and red macroalgae were manually collected from dense and sparse seagrass beds of Thalassia testudinum and Syringodium filiforme. A total of 20 macroalgal epiphytes, 2 Chlorophyta, 2 Phaeophyta, and 16 Rhodophyta, were found on T. testudinum and S. filiforme seagrass at the four sampling sites (Bishop Harbor, Cockroach Bay, Feather Sound, and Mariposa Key). The Rhodophyta, represented by 16 species, dominated the numbers of species. Among them, the thin-crusted Hydrolithon farinosum was the most commonly found epiphyte on seagrass leaves. Species number, as well as species frequency of epiphytes, is higher at dense seagrass sites than sparse seagrass sites. Four attachment patterns of epiphytes can be classified according to cortex and rhizoid development: 1) creeping, 2) erect, 3) creeping & erect, and 4) erect & holding. The creeping type is characterized by an encrusting thallus without a rhizoid or holdfast base. Characteristics of the erect type include a filamentous thallus with or without a cortex, and a rhizoid or holdfast base. The creeping and erect type is characterized by a filamentous thallus with a cortex and rhizoid. A filamentous thallus with a cortex, holdfast base, and host holding branch is characteristics of the erect and holdfast attachment type. This study characterized each species found on the seagrass for epiphyte identification.

한국 서해안 학암포 해조상 및 군집구조의 장기모니터링 연구 (A Study on Long-term Monitoring of Seaweed Flora and Community Structure at Hakampo, Western Coast of Korea)

  • 허진석;한수진;최한길;남기완
    • 한국수산과학회지
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    • 제48권6호
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    • pp.969-976
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    • 2015
  • Macroalgal community structure was seasonally examined at Hakampo (Taean) in western coast of Korea from February 2007 to October 2010. Also, the effects of "Hebei Spirit" oil spill on the seaweed community structure were evaluated. A total of 101 macroalgal species were identified, comprising 12 green, 18 brown and 71 red algae. Species richness ranged 58-65 species with maximal in 2008 and minimal in 2009. Seaweed biomass ranged $75.81-102.06g\;dry\;wt./m^2$ (mean, $88.78g/m^2$) with maximal in 2008 and minimal in 2010. Vertical distribution from the high to low intertidal zone was Neorhodomela aculeata and Polyopes affinis; Corallina pilulifera and Chondrus ocellatus; Sargassum thunbergii and Ulva australis. Coarsely-branched seaweeds comprised the highest proportion of biomass ($37.17g/m^2$, or 41.86% of the total biomass) and ecological state group I (ESG I) seaweed biomass was between 81.67-85.44%. Also, ephemeral macroalgae including Ulva species sharply increased in species number and biomass within 1-2 year from the "Hebei Sprit" oil spill in the mid and low intertidal zone. Hakampo rocky shore is still good condition as evaluated based on macroalgal species number, biomass, and composition in functional form and ESG I seaweeds.