• 제목/요약/키워드: Ecosystem Control Structure

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A Study of Arctic Microbial Community Structure Response to Increased Temperature and Precipitation by Phospholipid Fatty Acid Analysis

  • Sungjin Nam;Ji Young Jung
    • Proceedings of the National Institute of Ecology of the Republic of Korea
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    • 제4권2호
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    • pp.86-94
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    • 2023
  • Climate change is more rapid in the Arctic than elsewhere in the world, and increased precipitation and warming are expected cause changes in biogeochemical processes due to altered microbial communities and activities. It is crucial to investigate microbial responses to climate change to understand changes in carbon and nitrogen dynamics. We investigated the effects of increased temperature and precipitation on microbial biomass and community structure in dry tundra using two depths of soil samples (organic and mineral layers) under four treatments (control, warming, increased precipitation, and warming with increased precipitation) during the growing season (June-September) in Cambridge Bay, Canada (69°N, 105°W). A phospholipid fatty acid (PLFA) analysis method was applied to detect active microorganisms and distinguish major functional groups (e.g., fungi and bacteria) with different roles in organic matter decomposition. The soil layers featured different biomass and community structure; ratios of fungal/bacterial and gram-positive/-negative bacteria were higher in the mineral layer, possibly connected to low substrate quality. Increased temperature and precipitation had no effect in either layer, possibly due to the relatively short treatment period (seven years) or the ecosystem type. Mostly, sampling times did not affect PLFAs in the organic layer, but June mineral soil samples showed higher contents of total PLFAs and PLFA biomarkers for bacteria and fungi than those in other months. Despite the lack of response found in this investigation, long-term monitoring of these communities should be maintained because of the slow response times of vegetation and other parameters in high-Arctic ecosystems.

함양 상림의 환경생태적 구조 분석 및 생태적 관리방안1 (Ecological Management of Sangnim Woods in Hamyang-gun, Korea by Analysis of Ecological Structure)

  • 한봉호;김종엽;조현서
    • 한국환경생태학회지
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    • 제17권4호
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    • pp.324-336
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    • 2004
  • 본 연구는 함양 상림 천연기념물의 식생구조, 환경피해도 등 환경생태적 구조를 분석하여 생태적 관리방안을 제시하고자 수행되었다. 식생구조에서 현존식생은 22개 유형으로 분류되었고 졸참나무-개서어나무군집(31.8%), 졸참나무군집(14.5%)이 넓게 분포하였다 주요 식물군집은 졸참나무군집, 졸참나무-개서어나무군집, 갈참나무군집, 상수리나무군집, 개서어나무군집, 개서어나무-졸참나무군집, 느티나무-졸참나무군집, 조경수식재지 등 8개 유형이었고, 층위발달 정도에 따라 13개 식물군집으로 세분되었으며, 대경목의 수령은 61∼77년생이었다. 환경피해도에서는 등급 3이 51,950$m^2$(32.8%), 등급 4는 5,583$m^2$(3.5%), 등급 5는 4,086$m^2$(2.6%)로 인위적 복원이 필요한 등급 3∼5의 총면적은 61.619$m^2$(38.9%)이었다. 현존식생, 식물군집구조, 환경피해도를 고려하여 비오톱을 유형화한 결과 총 14개 비오톱 유형으로 구분되었으며 이 중 관목층이 훼손된 참나무류 장령림(51,246$m^2$, 32.4%), 단층구조의 낙엽활엽수 장령림(19,906$m^2$, 12.6%)의 분포면적이 넓은 반면, 다층구조의 낙엽활엽수 장령림(2,085$m^2$, 1.3%)과 참나무류 장령림(14,943$m^2$, 9.4%)은 합계 10.7%에 불과하였다. 장기적으로 함양 상림 자연생태계의 안정화를 위하여 다층구조의 낙엽활엽수 장령림 및 참나무류 장령림은 보존대상으로서 이용객 통제와 아울러 보호 관리해 나가야 할 것이며, 관목층훼손 식생지와 단층구조 식생지는 소극적 복원지로서 군집유형별로 상림내 안정된 다층구조의 자연식생구조를 모델로 하여 생태적 천이발달을 유도하여야 할 것이다. 또한 잔디광장과 조경수식 재지는 적극적 복원지로서 다층구조의 참나무류군집과 낙엽활엽수군집 (개서어나무 우점)을 모델로 하여 관리해야 할 것이다.

영일만내의 유동과 수질특성에 관한 연구 (Study on Current and Water Quality Characteristics in Yongil Bay)

  • 김헌덕;김종인;류청로
    • 한국해양공학회지
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    • 제15권4호
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    • pp.28-37
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    • 2001
  • The water quality in Yongil Bay is getting worse due to the sewage and the waste water from the surrounding industrial complex. The study aims to simulate the current system that is necessary to build ecosystem model for the optium water quality control and clarify the correlation of current system characteristics with water quality in Yongil Bay. To clarify the characteristics of coastal water movement system and verify the applicability of the 3-D model, the current system was simulated using 3-D model baroclinic model which considers tidal current and density effects. As the results of numerical experiments, it is proved the 3-D model is the most applicable on appearing the current system of the stratificated Yongil Bay difference of density. Form the results of simulation considered tidal current only, it can be clarified that the water body flows in the inner bay through the bottom layer and flows out the outer bay through the surface layer in Yongil Bay. And the fresh water from the Hyongsan river and the thermal discharge form POSCO have a little effect on the current system in Yongil Bay, but the diffusion of heat and salt has an important effect upon the formation of the density stratification of the water quality distribution is closely related with the current structure characteristics as well as the tidal residual current system in Yongil Bay.

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금강 주요지점에서의 환경 인자와 남조류 세포수의 배타적 인과성분석 (Analysis of Exclusive Causality between Environmental Factors and Cell Number of Cyanobacteria in Guem River)

  • 김연화;이은형;김경현;김상현
    • 한국환경과학회지
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    • 제25권7호
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    • pp.937-950
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    • 2016
  • Algal blooming in 4 major rivers introduces substantial impacts to water front activity. Concentrations of algae are increasing at major points along the Geum River. Ecosystem food webs can be affected by algal blooming because blue-green algae release toxic materials. Even though there have been many studies on blue-green algae, its causality to environmental factors has not been completely determined yet. This study analyzed the exclusive correlation between various hydrometeorological, water quality, and hydrologic variables and the cell number of cyanobacteria to understand causality of blue-green algae in the Geum River. A prewhitening process was introduced to remove the autocorrelation structure and periodicity, which is useful to evaluate the effective relationship between two time series.

낙동강하구둑 수문운영에 따른 수질 영향 분석 (Analysis of the Water Quality by Various Gate Operation Effects at Nakdong Estuary Barrier)

  • 이상진;류경식;황만하;이상욱
    • 한국물환경학회지
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    • 제24권6호
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    • pp.651-658
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    • 2008
  • Estuary barrier is a hydraulic structure constructed to supply safely water as protecting chlorine penetration of sea water. However, the barrier brings about a problem which decreases original functions of estuary because hydraulic ecology was disrupted as obstructing natural water exchange between fresh water and sea water. It is important to supply Enough fresh water in the estuary ecosystem. But it is possible to reduce the problems brought from barrier throughout efficient water gate operation of estuary barrier. It was shown in this study that the environmental effect of estuary in Nakdong river was investigated according to the control of water level. Also, the basic information about the effective water gate operation was provided. The analysis results showed that the release rate of estuary was increased about 20% as changing the operational water levels. This helps supplying fresh water durably to the mixing zone. Also, CE-QUAL-W2 model was utilized to assess water quality. The values of BOD and COD were not changed in estuary area. From the result, it was analyzed the effect of water quality according to the water gate operation was not indicated.

The Research of Beach Deformation after Construction of the Jetties

  • Park, Sang-Kil;Han, Chong-Soo;Roh, Tae-Young;Park, O-Young;Ahn, Ik-Seong;Lee, Ji-Hun
    • International Journal of Ocean System Engineering
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    • 제1권4호
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    • pp.185-191
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    • 2011
  • This research was described the prevention of coastal topographical change and sediment diffusive concentration incoming from small estuary after construction jetties. This structure is constructed to decrease sediment deposition incoming from the upstream river due to the urbanization and industrial development and to minimize effects on the coastal ecosystem. The physical modeling and numerical modeling for waves were conducted to analyze the configuration of Imrang sand beach deformation without and with construction of jetty. The specification of the installed jetty, which is able to control sedimentation concentration was decided based on the prediction of the Imrang beach area changes by space and time. As a result, the jetties constructed in the estuary retarded the rate of sand sediment, so that the effect area of sand sedimentation was obviously decreased. In addition, the measured field data indicated that the sediment deposition inside of dikes could be controlled and the right side area of jetties could be preserved without sediment deposition.

Response of a Miscanthus sinensis Grassland in an Early Successional Old-Field to Fertilization

  • Song, Jong-Suk
    • Journal of Plant Biology
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    • 제37권1호
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    • pp.1-8
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    • 1994
  • The effects of fetilization on the structure and function of an early successional Miscanthus sinensis grassland were investigated in an old-field ecosystem at Honjo city, Saitama Prefecture, Japan from 1981 to 1982. Compared to control plot, life form composition of treatment plot was characterized by a decrease of phanerophytes and an increase of hemicryptophytes. Fertilization had a beneficial effect on the growth in aboveground phytomass of M. sinensis, the dominant species. However, it did not cause a change in the total number of stems of M. sinensis. Annual increment of patch diameter of M. sinensis was estimated to be 6-8 cm on an average and there was no significant differecne in the growth rate of patch size between fertilized and nonfertilized plots. To estimate the aboveground phytomass of M. sinensis, several non-destructive parameters were examined. As a result, the patch size showed a high correlation with aboveground phytomass. Thus the patch size was suggested to be most applicable to its estimation. Diversity indices based on phytomass data of component species were increased slightly by fertilizatin, because relative dominance of some other species, especially of Artemisia princeps increased, while that of M. sinensis decreased. Fertilizer application resulted in a decrease in the total number of species.

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Bacterial community structure of paddy fields as influenced by heavy metal contamination

  • Tipayno, Sherlyn;Samaddar, Sandipan;Chatterjee, Poulami;Halim, MD Abdul;Sa, Tongmin
    • 한국작물학회:학술대회논문집
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    • 한국작물학회 2017년도 9th Asian Crop Science Association conference
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    • pp.245-245
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    • 2017
  • Heavy metal pollution of agricultural soils affects land productivity and has impact on the quality of surrounding ecosystem. Soil microbial community parameters are used as reliable indices for assessing quality of agricultural lands under metal stress. This study investigated bacterial community structure of polluted and undisturbed paddy soils to elucidate soil factors that are related to alteration of bacterial communities under conditions of metal pollution. No obvious differences in the richness or diversity of bacterial communities were observed between samples from polluted and control areas. The bacterial communities of three locations were distinct from one another, and each location possessed distinctive set of bacterial phylotypes. The abundances of several phyla and genera differed significantly between study locations. Variation of bacterial community was mostly related to soil general properties at phylum level while at finer taxonomic levels concentrations of arsenic and lead were significant factors. According to results of bacterial community functional prediction, the soil bacterial communities of metal polluted locations were characterized by more abundant DNA replication and repair, translation, transcription and nucleotide metabolism pathway enzymes while amino acid and lipid metabolism as well as xenobiotic biodegradation potential was reduced.Our results suggest that the soil microbial communities had adapted to the elevated metal concentrations in the polluted soils as evidenced by changes in relative abundances of particular groups of microorganisms at different taxonomic resolution levels, and by altered functional potential of the microbial communities.

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농경지의 이용형태가 토양성 절지동물 군집 및 다양성에 미치는 영향 (Effect of Agricultural Land Use on Abundance, Community Structure and Biodiversity of Epigeic Arthropods)

  • 어진우;김명현;남형규;송영주
    • 한국환경농학회지
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    • 제38권3호
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    • pp.139-144
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    • 2019
  • BACKGROUND: Epigeic arthropods participate in ecological functions as predators, decomposers and herbivores. The purpose of this study was to investigate the responses of some dominant arthropods in rice fields to different forms of agricultural land management. METHODS AND RESULTS: The abundance of microarthropods was compared between rice fields and uplands in the non-growing season. Collembola, Oribatida and Mesostigmata were more abundant in the upland fields than in the paddy fields. The community composition and diversity of epigeic arthropods were compared between fallow and rice fields. The total abundance and species richness of spiders and ground beetles were not significantly different in the two types of agricultural fields. The abundance of Arctosa kwangreungensis was greater in fallow fields than in cultivated fields. The community structure of arthropods was compared between paddy fields with and without barley. The cropping system altered the community composition of spiders but not their biodiversity. Barley cultivation increased the abundance of ground beetles but decreased that of spiders. We suggest that this contrast was partly due to the availability of plants that provided shelter and food for ground beetles. CONCLUSION: These results show that soil use intensity and cropping system alter the community composition of epigeic spiders and ground beetles. This could result in ecosystem-level alterations with respect to the control of pests and weeds. Our results also suggest that biodiversity of ground-dwelling arthropods may not increase during short fallow periods.

안동시 소나무재선충병 피해지에 대한 생태학적 특성 (Ecological Characteristics of Pine Wilt Disease affected areas in Andong city, Korea)

  • 김성열;박준성;문건수;최재용
    • 한국환경복원기술학회지
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    • 제24권5호
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    • pp.35-53
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    • 2021
  • A field survey was carried out targeting 59 pine wilt disease control areas distributed in Andong, and the ecological characteristics of the areas affected by pine wilt disease were analyzed using vegetation information, ecological information, and land use information. Vegetation characteristics of Pine wilt disease affected forest area showed a 3-layer vegetation structure, high percentage of accidental occurrence species (37%) and secondary vegetation species (59.6%), appearing 12 taxa naturalized plants and 3 taxa ecosystem disturbance organisms designated by the Ministry of Environment. Ecological information of Pine wilt affected area showed frequent occurrence of water stress in south and west slopes, low lying grounds in mountains, and in well-drained soils. Also, surrounding the area has been used as roads, tombs, and cultivation where intensive human activities were the cause of disturbance and stress to the pine forest. It was analyzed that the pine forest in Andong city suffered extensive damage due to the onset of pine wilt disease while the pine trees were weakened due to continuous human activities. Conclusively, the spread and onset of pine wilt disease are worsened by artificial factors than natural environmental conditions.