• Title/Summary/Keyword: Marine Environmental Science and technology

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Comparative Ecological Characteristics of Two Potentially Toxic Epiphytic Dinoflagellate Species, Ostreopsis sp. and Coolia canariensis, Native to Jeju Island

  • Mi Ryoung Oh;Hyung Seop Kim;Bora Jang;Jong Hyeok Kim;Keon Gang Jang;Jong Woo Park;Wonho Yih
    • Ocean and Polar Research
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    • v.45 no.2
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    • pp.57-69
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    • 2023
  • Growth responses along the gradient of water temperature, salinity, and light intensity and cytotoxicity against Artemia nauplii were explored using Ostreopsis sp. and Coolia canariensis strains, representing the two potentially toxic epiphytic dinoflagellate (EPD) species from Jeju coastal waters of Korea. Variation in maximum growth rate (GRmax) and maximum biomass yield (Ymax) along the environmental gradients was quite contrasting between the two strains, which appears to be reflected in the in situ abundance distribution of the corresponding genera. The more eurythermal characteristics of Ostreopsis sp. strain were in good agreement with the relative distribution of Ostreopsis spp. and Coolia spp. in 520 macroalgal samples collected from 6 stations. The more stenohaline C. canariensis strain was well matched by a markedly narrower range of salinities in the in situ distribution of Coolia spp. than the salinity range for Ostreopsis species. The differences in light adaptation between the high light-preferring Ostreopsis sp. strain and the more euryphotic C. canariensis strain were remarkably consistent with the distinct vertical profiles of Ostreopsis spp. and Coolia spp. abundance in the red alga Amphiroa sp. off Moom-seom. Cytotoxicity against Artemia nauplii in the Ostreopsis sp. preparation with 1000 cells ml-1 was similar to that in C. canariensis preparation with 12000 cells ml-1, which is noteworthy. Thus, the new potential cytotoxicity risks from C. canariensis along with the well-known toxic genus Ostreopsis may be introduced to Jeju coasts, which necessitates further exploration into the contrasting ecological niches occupied by EPD species in relation to their cytotoxicity.

On the Distribution of PCBs and Organochlorine Pesticides in Fish and Sediment of the Asan Bay (아산만해역 어류체내와 퇴적물중의 PCB와 유기염소계농약 분포)

  • Choi, Jin-Young;Lee, Sung-Gyu;Bang, Jae-Hyun;Yang, Dong-Beom;Hong, Gi-Hoon;Shin, Kyoung-Hoon
    • Ocean and Polar Research
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    • v.33 no.1
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    • pp.45-53
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    • 2011
  • Distribution of Polychlorinated biphenyls (PCBs) and organochlorine pesticides in sediments, seawater and fish tissues were examined. Concentrations of ${\Sigma}PCBs$ and ${\Sigma}DDTs$ in the intertidal sediments of Asan Bay ranged from $1.90{\sim}3.27\;ng\;g^{-1}$ dw (dry weight) and $0.51{\sim}1.26\;ng\;g^{-1}$ dw, respectively. ${\Sigma}PCBs$ concentrations in the tissue of greenling (Hexagrammos otakii), olive flounder (Paralichthys olivaceus) and finespotted flounder (Pleuronichthys cornutus) were $1.27{\pm}0.55$, $1.30{\pm}0.71$ and $1.19{\pm}0.43\;ng\;g^{-1}$ ww (wet weight), respectively. The profile of PCBs in the sediments and the 3 species of fish differed as witnessed by the dominance of tetra- to penta-chlorinated congeners in sediments while penta- to hexa-chlorinated congeners dominated in fish. ${\Sigma}DDTs$ concentrations were $0.67{\pm}0.52$, $0.79{\pm}0.61$, $1.58{\pm}1.05\;ng\;g^{-1}$ ww respectively in the tissue of greenling, olive flounder and finespotted flounder. The p,p'-DDE appeared to be the most important metabolite of DDT in studied fishes. The concentrations of PCBs and organochlorine pesticides measured in this study for fish were generally lower than those of previous studies. Compared to the pollutant concentration quality guidelines in marine fish, the environment of Asan Bay appears to be in a healthy state.

Analysis of Complete Mitochondrial Genomes of Three Gadus chalcogrammus Specimens (Teleostei; Gadiformes; Gadidae) from Korea and Japan

  • Lee, Chung Il;Jung, Hae Kun;Yoo, Hae-Kyun;Kim, Hyun-Woo;Park, Hyun Je;Kang, Chang-Keun;Shim, Jeong Hee;Kim, Keun-Yong;Park, Joo Myun;Yoon, Moongeun
    • Journal of Marine Life Science
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    • v.7 no.1
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    • pp.52-54
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    • 2022
  • Mitochondrial genomes of three specimens of Gadus chalcogrammus Pallas 1,814 from Korea and Japan were completely analyzed by the primer walking method. They were 16,570~16,571 bp in length, each comprising 13 protein-coding genes, two ribosomal RNA genes, and 22 transfer RNA genes. Their gene orders were identical to those of conspecific specimens, but exhibited unique haplotypes. In the phylogenetic tree, the juvenile Korean and adult Japanese specimens were separated from the dominant clade composed of specimens from Japan, Korea, the Bering Sea, and the Arctic, including the adult Korean specimen.

New Records of the Diatoms (Bacillariophyta) in the Brackish and Coastal Waters of Korea

  • Park, Joon Sang;Yun, Suk Min;Lee, Sang Deuk;Lee, Joon Baek;Lee, Jin Hwan
    • Korean Journal of Environmental Biology
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    • v.35 no.3
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    • pp.215-226
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    • 2017
  • A study on indigenous diatoms was carried out at 10 sites from May 2014 to December 2016 in marine and freshwater in Korea. Seventeen species of diatoms are new to Korea and they are divided into 3 classes, 4 subclasses, 10 orders, 14 families, and 16 genera. The nomenclatures, references, dimensions, specimens examined, local habitat, distribution in Korea, and photograph are reported here. Seventeen species found in marine, freshwater, and brackish water showed species-specific habitats.

Two new free-living marine nematodes of the genus Belbolla (Nematoda, Enoplida, Enchelidiidae) from a shallow subtidal benthic habitat of the outermost islands of Korea

  • Hyun Soo Rho;Hyo Jin Lee;Heegab Lee;Chang Geun Choi
    • Korean Journal of Environmental Biology
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    • v.39 no.4
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    • pp.423-434
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    • 2021
  • Two new free-living marine nematodes of the genus Belbolla Andrássy, 1973 belonging to family Enchelidiidae are newly described based on specimens obtained from a shallow subtidal sediment of the western and southern outermost islands of Korea. Belbolla koreensis sp. nov. differs from other species of the genus by the combination of the following characteristics: longer body length (3,080-3,462 ㎛ long), eight oesophageal bulbs in the posterior region of pharynx, well-developed two winged precloacal supplements (anterior precloacal supplement slightly longer than posterior one: 47-59 ㎛ vs. 43-46 ㎛ long), strongly arcuated, very thick, L-shaped spicule (122-127 ㎛ long, 1.7-1.9 anal body diameter(a.b.d.) long) with three separated blunt distal tips, and well-developed relatively long cylindrical shaped gubernacular apophysis with blunt teeth covering two thirds of the dorsal margin (57-58 ㎛ long, 0.8-0.9 a.b.d. long). Belbolla hoonsooi sp. nov. is characterized by the following combination of characteristics: longer body length (3,494 ㎛ long), eight oesophageal bulbs in the posterior region of pharynx, well-developed two winged precloacal supplements (anterior precloacal supplement slightly longer than posterior one: 43 ㎛ vs. 36 ㎛ long), strongly arcuated, L-shaped spicule (119 ㎛ long, 1.5 a.b.d. long) with three separated blunt distal tip, and well-developed relatively long inverted triangle shaped gubernacular apophysis with blunt teeth covering half of the dorsal margin (45 ㎛ long, 0.6 a.b.d. long). Detailed morphological characteristics and illustrations of two new Belbolla nematodes from the Korean seawaters were provided by differential interference contrast microscopy. Comparative tables on biogeographical and morphological characteristics of Belbolla species are also provided herein.

Marine Algicolous Endophytic Fungi - A Promising Drug Resource of the Era

  • Sarasan, Manomi;Puthumana, Jayesh;Job, Neema;Han, Jeonghoon;Lee, Jae-Seong;Philip, Rosamma
    • Journal of Microbiology and Biotechnology
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    • v.27 no.6
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    • pp.1039-1052
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    • 2017
  • Endophytic fungi have currently been acknowledged as the most promising source of bioactive compounds for drug discovery, and considerable progress has been made in exploring their diversity, species richness, and bioprospecting. Fungal endophytes from unique environmental settings offer a pool of potentially useful medicinal entities. Owing to the constant stresses imposed on macroalgae by marine environments, it is believed that algae and their associated endophytic symbionts represent a good source of structurally diverse bioactive secondary metabolites. Despite the proven significance of active metabolites of algal endophytes, little have been exploited. This review highlights the latest discoveries in algicolous endophytic research, with particular focus on the bioactive metabolites from algal endophytes. Compounds are classified according to their reported biological activities, like anticancer, antibacterial, antifungal, and antioxidant properties. Present experimental evidence suggests that a majority of the bioactive metabolites were reported from Phaeophyceae followed by Rhodophyceae and Chlorophyceae. An intensive search for newer and more effective bioactive metabolites has generated a treasure trove of publications, and this review partially covers the literature published up to 2016.

Numerical Investigation of Countermeasure Effects on Overland Flow Hydrodynamic and Force Mitigation in Coastal Communities

  • Hai Van Dang;Sungwon Shin;Eunju Lee;Hyoungsu Park;Jun-Nyeong Park
    • Journal of Ocean Engineering and Technology
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    • v.36 no.6
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    • pp.364-379
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    • 2022
  • Coastal communities have been vulnerable to extreme coastal flooding induced by hurricanes and tsunamis. Many studies solely focused on the overland flow hydrodynamic and loading mechanisms on individual inland structures or buildings. Only a few studies have investigated the effects of flooding mitigation measures to protect the coastal communities represented through a complex series of building arrays. This study numerically examined the performance of flood-mitigation measures from tsunami-like wave-induced overland flows. A computational fluid dynamic model was utilized to investigate the performance of mitigation structures such as submerged breakwaters and seawalls in reducing resultant forces on a series of building arrays. This study considered the effects of incident wave heights and four geometrically structural factors: the freeboard, crest width of submerged breakwaters, and the height and location of seawalls. The results showed that prevention structures reduced inundation flow depths, velocities, and maximum forces in the inland environment. The results also indicated that increasing the seawall height or reducing the freeboard of a submerged breakwater significantly reduces the maximum horizontal forces, especially in the first row of buildings. However, installing a low-lying seawall closer to the building rows amplifies the maximum forces compared to the original seawall at the shoreline.

Potential applications of radioprotective phytochemicals from marine algae

  • Oh, Jae-Young;Fernando, I.P. Shanura;Jeon, You-Jin
    • ALGAE
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    • v.31 no.4
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    • pp.403-414
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    • 2016
  • The use of ionizing radiation and radioactive elements is becoming increasingly popular with the rapid developments in nuclear technology, radiotherapy, and radio diagnostic methods. However, ionizing radiation can directly or indirectly cause life-threatening complications such as cancer, radiation burns, and impaired immunity. Environmental contamination with radioactive elements and the depletion of ozone layer also contribute to the increased levels of radiation exposure. Radioprotective natural products have particularly received attention for their potential usefulness in counteracting radiation-induced damage because of their reduced toxicity compared with most drugs currently in use. Moreover, radioprotective substances are used as ingredients in cosmetic formulations in order to provide protection against ultraviolet radiation. Over the past few decades, the exploration of marine algae has revealed the presence of radioprotective phytochemicals, such as phlorotannins, polysaccharides, carotenoids and other compounds. With their promising radioprotective effects, marine algae could be a future source for discovering potential radioprotective substances for development as useful in therapeutics.

Numerical simulation of tip clearance impact on a pumpjet propulsor

  • Lu, Lin;Pan, Guang;Wei, Jing;Pan, Yipeng
    • International Journal of Naval Architecture and Ocean Engineering
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    • v.8 no.3
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    • pp.219-227
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    • 2016
  • Numerical simulation based on the Reynolds Averaged Naviere-Stokes (RANS) Computational Fluid Dynamics (CFD) method had been carried out with the commercial code ANSYS CFX. The structured grid and SST $k-{\omega}$ turbulence model had been adopted. The impact of non-condensable gas (NCG) on cavitation performance had been introduced into the Schnerr and Sauer cavitation model. The numerical investigation of cavitating flow of marine propeller E779A was carried out with different advance ratios and cavitation numbers to verify the numerical simulation method. Tip clearance effects on the performance of pumpjet propulsor had been investigated. Results showed that the structure and characteristics of the tip leakage vortex and the efficiency of the propulsor dropped more sharply with the increase of the tip clearance size. Furthermore, the numerical simulation of tip clearance cavitation of pumpjet propulsor had been presented with different rotational speed and tip clearance size. The mechanism of tip clearance cavitation causing a further loss of the efficiency had been studied. The influence of rotational speed and tip clearance size on tip clearance cavitation had been investigated.

Community structure of marine benthic invertebrates recruited on artificial substrates in the Korean coast

  • Ye Ju Lee;Taekjun Lee;Jeongho Kim;Dong Gun Kim;Sook Shin
    • Korean Journal of Environmental Biology
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    • v.40 no.1
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    • pp.87-98
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    • 2022
  • In this study, the community structure of marine benthic invertebrates was examined to evaluate the differences between the west, south, and east coasts of Korea and to identify the indicator species representing each region. Acrylic attachment plate sets were installed in Jeongok, Mokpo, Tongyeong, Yangpo, and Gangreung, and the invertebrate fauna thus captured were identified. Monitoring was performed in each area from March 2017 to May 2018. Water depth, temperature, and salinity at each location were measured to determine the potential influence of abiotic factors on the community structure. As a result, the mean depth of plates installed and the water temperature were significantly different in each area. A total of 32 invertebrate species were identified in all localities, and the most significant difference in the species compositions was found between Mokpo and Gangreung. The community structure differed significantly with a change in the plate depth, and a larger number of indicator species appeared on shallower plates. Finally, we determined the community structure of benthic invertebrates in different geographical regions of the Korean ocean by characterizing the dominant invertebrate taxa and the indicator species at each site.