황해 식물플랑크톤의 계절별 군집 구조와 해양환경 요인과의 상관관계를 파악하기 위하여 2019년 계절별로 15개 정점에 대해 조사하였다. 동계와 춘계에는 규조류가 높은 출현율을 나타내었으며, 하계와 추계에는 20μm 이하의 미동정 미소편모조류가 높은 출현율 을 나타내었다. 이는 낮은 농도의 영양염류로 인한 것으로, 특히 인산염의 경우 검출 한계까지 낮게 나타남에 따라 식물플랑크톤 성장에 심각한 저해 현상을 가져온 것으로 판단된다. 성층이 강화되는 하계와 추계 표층 혼합층에서 초미소형 크기의 식물플랑크톤 기여도가 높 았으며, 중복분석 결과 초미소형 크기의 식물플랑크톤은 영양염(질산염, 인산염) 및 수심에 대해 강한 음의 상관성을 나타내고 있었다. 결 론적으로 하계와 추계 성층 강화로 인한 표층 혼합층 내에서의 영양염 감소는 영양염류의 요구량이 낮은 상대적으로 크기가 작은 식물플 랑크톤 성장에 유리한 환경을 제공하며, 식물플랑크톤 군집 구조는 소형화가 진행된 것으로 판단된다.
This investigation was conducted three times (April, August, and October) from 2023 at five surveyed sites in Gonyangcheon estuarine wetland. A total of benthic macroinvertebrates belonging to 59 taxa 44 families 21 orders in 8 classes of 4 phyla were collected. The numbers of benthic macroinvertebrates species in each surveyed site were from 10 (St.1) to 41 (St.2). As a community indices analysis, the average DI is 0.78 (±0.12), H' is 1.6 (±0.68), R′ is 0.96 (±0.39), and J´ is 0.61 (±0.24). Community indices tended to decrease as the diversity and abundance decreased downstream. Total ecological score of benthic macroinvertebrates community (TESB), an average score of 35.47 (±15.86). The Habitat of Clithon retropictum and Ellobium chinense belonging to endangered species II, were identified at st.3~st.5.
Community composition and abundance of aquatic invertebrates are important for ecological functions. Community characteristics of insects and gastropods were compared in five regions to investigate the effect of geological factors in surveys conducted between June and August to analyze seasonal changes in invertebrate communities. Underwater traps were used to obtain a constant collection effect. Insect communities were dominated by Hydrochara affinis, Rhantus suturalis and Sigara nigroventralis, and nMDS analysis demonstrated the separation of their communities by region. H. affinis and Sternolophus rufipes were not found in Haenam and Cheolwon, respectively. The results showed the effects of regional temperature on the distribution of aquatic insects. Pomacea canaliculata, Hippeutis cantori and Austropeplea ollula were dominant in the gastropod community. The seasonal variation in the abundance of P. canaliculata was the most pronounced, and its abundance in August was 38.2 times higher than in June. The abundances of several species including Hippeutis cantori were negatively correlated with that of P. canaliculata. These results suggest that P. canaliculata is a pivotal factor that drives seasonal changes in gastropod community.
Small ponds, which exhibit unstable succession pattern of plankton community, are less well studied than large lakes. Recently, the importance of small ponds for local biodiversity conservation has highlighted the necessity of understanding the dynamics of biological community. In the present study, we collected zooplankton from three small reservoirs with monthly basis and analyzed their seasonal dynamics. To understand the complicated zooplankton community dynamics of small reservoirs, we categorized zooplankton species into four groups (LALF Group, Low Abundance Low Frequency; LAHF Group, Low Abundance High Frequency; HALF Group, High Abundance Low Frequency; HAHF Group, High Abundance High Frequency) based on their occurrence pattern (abundance and frequency). We compared the seasonal pattern of each group, and estimated community diversity based on temporal beta diversity contribution of each group. The result revealed that there is a relationship between groups with the same abundance but different occurrence frequencies, and copepod nauplii are common important component for both abundance and frequency. On the other hand, species included with LALF Group throughout the study period are key in terms of monthly succession and diversity. LALF Group includes Anuraeopsis fissa, Hexarthra mira and Lecane luna. However, groups containing species that only occur at certain times of the year and dominate the waterbody, HALF Group, hindered to temporal diversity. The results of this study suggest that the species-specific occurrence pattern is one key trait of species determining its contribution to total annual biodiversity of given community.
To assess the influence of environmental factors on the phytoplankton community structure and total phytoplankton biomass during four seasons in 2014, we investigated the abiotic and biotic factors at 25 stations in the Busan coastal region. The phytoplankton community and total phytoplankton biomass were strongly dependent on the discharge from the Nakdong River, and the high density of phytoplankton was related with the introduction of the Tsushima Warm Current (TWC), particularly in the thermohaline fronts of the fall season. The relationship between the salinity and nutrient (Dissolved inorganic nitrogen=DIN: R 2=0.72, p<0.001 and Dissolved inorganic silicon=DSi: R 2=0.78, p<0.001) highly correlated with the river discharge, implying that those nutrients have played a crucial role in the growth of diatom and cryptophyta. The total phytoplankton biomass was highest in the summer followed by autumn, spring, and winter. Diatom and cryptophyta species were dominant species during the four seasons. Additionally, there were strong positive correlations between Chlorophyll a and total phytoplankton biomass (R 2=0.84, p<0.001), cryptophyta (R 2=0.76, p<0.001) and diatom (R 2=0.50, p<0.001), respectively. In particular, we found that there were significant differences in the nutrients, phytoplankton community compositions, and total phytoplankton biomass between the inner and the outer coastal region of Busan, depending on the amount of river discharge from the Nakdong River, particularly during rainy seasons. Therefore, the seasonal change of TWC and river discharge from the Nakdong River serve an important role in determining phytoplankton population dynamics in the Busan coastal region.
A survey was conducted to analyze seasonal dynamics of the phytoplankton community at 22 stations on the surface and bottom layers in the Anma Islands of Yeonggwang (AIY) in the southern West Sea, Korea from the spring of 2020 to the winter of 2021, using a marine survey vessel Ed Ocean. Based on the survey results, there were 87 phytoplankton species in 52 genera, diatoms accounted for 67.8%, dinoflagellates 26.5%, silicoflagellates 3.5%, and cryptomonads and euglenoids accounted for 1.1% each. By season, it was simple in spring and relatively varied in winter. The phytoplankton standing crop on the surface was low (28.8±30.1 cells mL-1) in summer and high (87.0±65.1 cells mL-1) in spring. In the phytoplankton community, diatoms showed a high share (over 80%) throughout the year, and Skeletonema costatum-ls was the dominant species with a dominance of more than 60% in spring and winter, and 34.6% and 24.2% in summer and autumn, respectively. The diversity expressing the characteristics of the community structure was high (2.79±0.45) in autumn and low (1.82±0.18) in spring, unlike the phytoplankton standing crop. However, the dominance was high at (0.86±0.08) in spring and low (0.44±0.13) in autumn. Based on the results of principal component analysis (PCA) using environmental and phytoplankton-related factors, it was estimated that the biological oceanographic environmental characteristics seen through the phytoplankton community in the AIY were dominated by nutrients supplied from open seawater and surface sediments by seawater mixing, such as tidal mixing.
The seasonal variation in the zooplankton community and hydrographic conditions were examined in three regions (inner, central, and outer regions) of Gamak Bay, Korea. Zooplankton samples were collected over a period of 12 months from January to December 2006. The hydrographical parameters of temperature, salinity, chlorophyll-a concentrations, dissolved oxygen, and chemical oxygen demand were measured. The total zooplankton density varied from 411 to 58,485 ind. m-3, with peaks in early summer. A total of 65 taxa accounted for approximately 86.9% of the annual mean zooplankton density: Noctiluca scintillans (30.9%) Paracalanus parvus s. l. (24.3%), Acartia omorii (11.9 %), Eurytemora pacifica (5.7%), cladocerans (4.1%), cirriped larvae (3.8%), Oithona similis (3.7%), and Pseudevedne tergestina (2.5%). Copepods dominated numerically throughout the year and comprised 54.3% of the total zooplankton. Most of the dominant copepods showed a well-defined seasonal pattern. The density and diversity of zooplankton in Gamak Bay were influenced by the hydrographic environment that was subject to significant spatial and temporal variations. Multivariate statistics showed that seasonal temperature was the most significant predictor of zooplankton taxa, density, and diversity, as well as the density of dominant taxa. Our results suggest that fluctuations in the zooplankton populations, particularly copepods, followed progressive increments in the temperature and COD concentrations.
본 연구는 제주 연안에 서식하는 중형저서동물 군집의 특성과 계적적 변동을 알아보고자 수행되었다. 제주도 조간대 지역에서 20개의 조사지점을 선정하였으며, 2017년 4월부터 2019년 2월까지 총 8회의 조사를 수행하였다. 조사결과, 조사지점 당 중형저서동물의 밀도는 733~2,505 inds. 10 cm-2였으며, 2017년 4월에 밀도가 가장 높았고 2019년 2월에 가장 낮았다. 모든 조사지점에서 Nematode 가 우점하고 있는 것으로 나타났으며, copepod와 nauplius가 그 다음 우점 분류군으로 조사되었다. 생태계 건강성을 나타내는 Nematods/Copepods ratio (N/C ratio)는 2017년 4월에 가장 낮은 값인 0.02, 2019년 2월에 가장 높은 값인 87.40으로 산출되었으며, 이는 조사지점의 건강성이 악화 되었음을 의미한다. Multi-Dimensional Scaling (MDS) 분석 결과는 제주 연안의 중형저서동물 군집구조는 지역적 차이보다는 계절적 변동에 의해 더 크게 영향을 받고 있음을 나타냈다. 제주도의 중형저서동물 군집의 계절적 변동 특성을 보다 명확히 이해하기 위해서, 추가적인 군집조사와 환경 인자와의 상관관계 분석이 후속 연구로 필요할 것으로 판단된다.
This study was conducted to survey the insect pests on 30 varieties of Hibiscus syriacus. Insect pests were investigated on May, July and September in Suwon and Busan, respectively. In addition, change of insect pests on H. syriacus in Seoul was weekly investigated from May to September. As a result, 11 species 116 individuals were observed in Suwon, and 10 species of them were classified as insect pests. Also, 10 species 496 individuals were observed in Busan, and 7 species of them were classified as insect pests. In Seoul, 12 species 181 individuals were observed. Abundance and species richness of insect pests were depend of the study regions but not by H. syriacus varieties. Aphis gossypii was dominant in early May but they were dramatically disappeared since middle May. Other insect pests such as Rehimena surusalis, Haritalodes derogate, and Plautia stali were occurred from July to september.
Seasonal succession of zooplankton community and species composition was studied from 2003 to 2014 in a deep reservoir, Lake Soyang, in monsoon climate region, Korea. Annual precipitation was concentrated more than 70% between June and September and it showed remarkably that seasonal variation in water quality. Seasonal variation of water quality in Lake Soyang appeared to be more significant than annual variations, and the inflow of turbid water during the summer rainfall was the most important environmental factor. Zooplankton sepecies composition in Lake Soyang showed obvious tendency through two periods (May to June and August to October) every year. Small zooplankton (rotifer; Keratella cochlearis, Polyarthra vulgaris) dominated in spring and mesozooplankton such as copepods and crustaceans were dominant in summer and fall. Zooplankton biomass showed the maximum in September after monsoon rainfall, and chlorophyll showed a similar seasonal variation and it showed a high correlation (r=0.45). The increase of zooplankton biomass is considered to be a bottom-up effect due to the increase of primary producers and inflow of nutrients and organic matter from rainfall. In this study, we found that the variation of zooplankton community was affected by rainfall in monsoon climate region and inflow of turbid water was an important environmental factor, which influenced the water quality, zooplankton seasonal succession in Lake Soyang. It was also considered to be influenced by hydrological characteristics of lake and environment of watershed. In conclusion, seasonal succession of zooplankton species composition was the same as the PEG model. But seasonal succession of zooplankton biomass differed not only in the temperate lake but also in the monsoon region.
진해만에서 출현하는 자어에 대한 계절별 군집 변동을 파악하기 위해 2015년과 2016년의 2월(겨울철), 5월(봄철), 8월(여름철), 그리고 11월(가을철)까지 계절별로 수행하였다. 조사기간 동안 출현한 자어는 종 수준까지 총 24과 28종이 출현하였다. 조사기간 동안 출현한 우점종은 청어(Clupea pallasii), 꼼치(Liparis tanakae), 돛양태과 sp. (Callionymidae sp.), 청보리멸(Sillago japonica), 세줄베도라치(Ernogrammus hexagrammus), 그리고 멸치(Engraulis japonica)로 나타났으며, 이들 6종은 조사기간 중 출현한 자어 전체 출현개체수의 77.6%를 차지하였다. 우점종 중 청어와 꼼치는 2015년과 2016년의 겨울철에 출현한 반면에 청보리멸은 여름철에 출현하였다. 종 다양도 지수는 2월과 8월에 높았고 5월에 낮게 나타났다. 조사기간 동안 출현한 자어의 출현개체수를 바탕으로 nMDS 분석을 실시한 결과 계절에 따른 4개의 그룹으로 구분되었다. 본 연구결과 진해만의 자어 군집은 계절에 따른 수온변화와 산란에 참여하는 어종에 따라서 변동하였으며, 잠도와 칠전도 북부해역에서 높은 출현량을 보여 이 지역이 진해만의 주요 산란장으로 이용되고 있음을 의미한다.
The purpose of this study was to investigate the seasonal distribution of phytoplankton as prey for oysters and to characterize the environmental factors controlling their abundance from June 2016 to May 2017, in the northeast coast between Tongyeong and Saryang Island, particularly for the oyster farming area. During the survey period, water temperature changed from 7.54°C in February to 29.5°C in August. The abnormal high temperature persisted during one month in August. Salinity was low due to summer rainfall and typhoon. The lowest level was 30.68 psu in September, and it peaked at 34.24 psu in May. The dissolved oxygen (DO) concentration ranged from 6.0-9.45 mg L-1, and the DO concentration in the surface layer was like that in the bottom layers. The seasonal trends of pH were also like those of DO. The pH ranged from 7.91 to 8.50. Nitrate with nitrite, phosphate, and silicate concentrations ranged from 0.14 μM to 7.66 μM, from 0.01 μM to 4.16 μM, and from 0.27 μM to 20.33 μM, respectively. The concentration of chlorophyll a (Chl. a) ranged from 0.37 μg L-1 to 2.44 μg L-1 in the surface layer. The annual average concentration was 1.26 μg L-1. The annual mean phytoplankton community comprised Bacillariophyta (69%), Dinophyta (17%), and Cryptophyta (10%), respectively. Dinoflagellate Prorocentrum donghaiense in June was the most dominant at 90%. In the summer, diatom Chaetoceros decipiens, Rhizosolenia setigera and Pseudo-nitzschia delicatissima were dominant. These species shifted to diatom Chaetoceros spp. and Crytophyta species in autumn. In the winter, high densities of Skeletonema spp. and Eucampia zodiacus were maintained. Therefore, the researchers thought that the annual mean Chl. a concentration was relatively lower to sustain oyster feeding, implying that the prey organism (i.e., phytoplankton) was greatly controlled by continuous filter feeding behavior of oyster in the vicinity area of the oyster culture farm.
암반생물막의 군집구조와 생물량의 시, 공간적인 변화를 확인하기 위하여, 파도에 대한 노출이 다른 고사포와 격포에 서 11월부터 2011년 9월까지 격월로 암반조각을 채집하였다. 군집구조는 채집된 암반조각을 칫솔로 긁어 광학현미경 하에서 미세조류의 분류군별 개체수를 계수하여 분석하였고, 생물량은 NDVI, VI, 엽록소 a 농도를 측정하여 확인하였 다. 고사포와 격포의 조간대 암반생물막에서 가장 우점하는 분류군은 Aphanotece spp., Lyngbya spp.를 포함하는 남조류 였으며, 환경스트레스가 적은 조간대 하부에서는 규조류의 출현율이 높게 나타났다. 암반생물막에서 우점하는 규조류는 Navicula spp., Achnanthes spp.와 Licmophora spp.로 확인되었다. 식생지수와 엽록소 a 농도는 격포에 비해 고사포 생물막에서 높게 나타났다. 식생지수인 NDVI와 VI는 고사포에서 각각 0.49-0.40(평균 0.43), 2.64-3.22(평균 2.90)였으 며, 격포의 암반생물막은 NDVI와 VI가 각각 0.32-0.41(평균 0.38), 2.03-2.86(평균 2.48)으로 확인되었다. 엽록소 a의 농도는 고사포에서 12.79-32.87 ㎍/㎠(평균 22.84 ㎍/㎠)였고, 격포에서는 11.14-18.25 ㎍/㎠(평균 15.48 ㎍/㎠)로 식생지수와 마찬가지로 1월(겨울)에 최대, 3월(봄)에 최소인 계절 변화를 보였다. 엽록소 a 농도는 NDVI, VI와 양의 상관관계를 보여 비파괴적인 식생지수 측정방법이 파괴적인 엽록소 a 추출 방법을 대체할 수 있음을 알려준다. 결론적으 로 암반생물막은 여름보다 겨울에, 조간대 상부보다 중부와 하부에서, 파도에 보호된 해안보다 노출된 해안에서 높은 값을 보였다.
This study was carried out to investigate insect community structure from different habitats. We performed day and night collection at three different habitats (mountain, coast and rural area) of island Deokjeok, island Soya and island Mungap from May to September in 2014. A total of 3,482 individuals of 725 species, 119 families belonging to 10 orders were collected and identified. A dominant species was Corymbia rubra (Cerambycidae) despite a very low percentage of the species among the catches. Results of ANOVA test showed a significant effect of habitats typeon species diversity. Also, combination of seasons and habitats types were significantly influential with species abundance and species diversity. Indicator species analysis (ISA) result identified 121 significant (p < 0.05) indicator species; one species for the habitats cluster, 93 species for the season cluster and 27species for combination of habitats with seasons.
본 연구는 2010년 4월부터 2011년 12월까지 영산강 수계의 4개의 지점을 선정하여 수질과 일차생산량을 나타내는 식물플랑크톤의 현존량과의 관계를 규명하기 위하여 물리 화학적 환경요인 (수온, 용존산소량, pH, 총질소, 총인, 부유물질), 식물플랑크톤의 현존량, Chlorophylla의 농도를 조사하였다. 조사기간 동안 식물플랑크톤의 종 조성은 규조강 43종, 녹조강 93종, 남조강 16종, 기타 강 22종으로 총 174종으로 조사되었다. 식물플랑크톤의 개체군 밀도는 275 cells∙mL-1~58,600 cells∙mL-1으로 조사되었다. 봄철과 가을철에는 Cyclotella sp., Stephanodiscus sp.와 같은 규조강, 여름철에는 Scenedesmus quadricauda, Pediastrum biwae 및 Coelastrum sp.와 같은 녹조강과 Aulacoseira granulata와 같은 규조강이 우점하였으며, 가을과 겨울에는 Cyclotella sp., Stephanodiscus sp.와 같은 규조강과 Aphanizomenon sp., Oscillatoria sp.와 같은 남조강이 우점하는 것으로 조사되었다. Chlorophyll-a의 농도는 식물플랑크톤 현존량의 월별 변동과 대부분 같은 경향으로 변화하였다.
섬진강 하구역의 계절별 일차생산력의 변화는 하계 8월 에 가장 높은 일차생산력을 보이고 있으며, 수온과 광 조 건이 향상되고 주변 육지로부터 유입되는 영양염의 영향 으로 높은 결과를 보이고 있다. 특히 섬진강 하구역의 상 류정점들은 육상기원 영양염의 유입이 다른 정점들에 비 해 활발하게 이루어 짐으로 더 높은 생산력을 보이고 있다. 식물플랑크톤 색소 조성 결과 diatoms의 지표색소인 Fucoxanthin이 조사시기와 정점에 상관없이 높은 농도 를 나타냈다. 이는 현미경 종 동정 결과와 일치함을 보이 고 있으며 일차생산력과 보조색소 분석 결과 그리고 종 동정 결과를 비교하여 볼 때 규조류 (Skeletonema costatum) 가 일차생산력에 가장 크게 기여하는 것으로 사료 된다. 본 연구를 통해 자연형 하구인 섬진강에서 시 공간적 일차생산력 변동을 확인할 수 있었으며 또한 식물플랑크 톤의 대략적인 군집구조와 일차생산력 계절 변동을 평가 할 수 있었다. 이러한 연구결과는 향후 섬진강 하구 내 생태 모니터링에 대한 기초자료로 활용될 수 있을 것으 로 판단되며 수계 내 건강성 평가 및 수질관리를 위한 연구에 유용한 자료로 활용될 것으로 사료된다.
진동만 잘피밭에서 서식하는 대형 부착해조류는 총 3종이었으며, 출현종은 갈조류의 Scytosiphon lomentaria, Colpomenia sp., 그리고 홍조류의 Gracilaria sp., 으로 구성되어 있었다. 한편 미세 부착해조류는 Cocconeis scutellum와 Cocconeis placentula가 우점하였다. 잘피에 부착하여 서식하는 부착해조류의 현존량은 계절 변동이 뚜렷하게 나타났다. 대형 부착해조류는 2003년 11월에 3.3 g DW/m2, 미세 부착해조류는 2003년 6월에 43,153 cells/m2를 보이며 가장 높게 나타났다. 다른 해역의 잘피밭(광양만, 동대만 및 앵강만)과 비교해보면, 본 조사해역의 잘피밭에서 서식하는 부착해조류의 종 다양성 및 현존량이 매우 낮게 나타나 특이하였다. 이와 같은 결과는 잘피밭의 물리학적인 환경특성(예를 들면 조류 및 유속), 잘피 자체의 생물학적인 특성, 그리고 수질의 악화에 기인하였다.
강원대학교 학술림내 연엽산 일대의 딱정벌레목 군집에 관한 연구를 위하여 2004년 4월부터 9월까지 총 6회의 조사를 실시하였다. 연엽산 일대에 4개의 지점을 정하여 light trap, pitfall trap, 그리고 sweeping의 3가지 방법으로 조사한 결과 총 48과 358종 3053개체가 출현하였다. 가장 많은 종이 출현한 과는 Carabidae로 50종이 출현하였고, 다음으로 Chrysomelida 가 40종 그리고 Curculionidae