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      • KCI등재

        Plant co-occurrence patterns and soil environments associated with three dominant plants in the Arctic

        손덕주 한국생태학회 2023 Journal of Ecology and Environment Vol.47 No.1

        Background: The positive effects of Arctic plants on the soil environment and plant-species co-occurrence patterns are known to be particularly important in physically harsh environments. Although three dominant plants (Cassiope tetragona, Dryas octopetala, and Silene acaulis) are abundant in the Arctic ecosystem at Ny-Ålesund, Svalbard, few studies have examined their occurrence patterns with other species and their buffering effect on soil-temperature and soil-moisture fluctuation. To quantify the plant-species co-occurrence patterns and their positive effects on soil environments, I surveyed the vegetation cover, analyzed the soil-chemical properties (total carbon, total nitrogen, pH, and soil organic matter) from 101 open plots, and measured the daily soil-temperature and soil-moisture content under three dominant plant patches and bare soil. Results: The Cassiope tetragona and Dryas octopetala communities increased the soil-temperature stability; however, the three dominant plant communities did not significantly affect the soil-moisture stability. Non-metric multidimensional scaling separated the sampling sites into three groups based on the different vegetation compositions. The three dominant plants occurred randomly with other species; however, the vegetation composition of two positive co-occurring species pairs (Oxyria digyna-Cerastium acrticum and Luzula confusa-Salix polaris) was examined. The plant species richness did not significantly differ in the three plant communities. Conclusions: The three plant communities showed distinctive vegetation compositions; however, the three dominant plants were randomly and widely distributed throughout the study sites. Although the facilitative effects of the three Arctic plants on increases in the soil-moisture fluctuation and richness were not quantified, this research enables a deeper understanding of plant co-occurrence patterns in Arctic ecosystems and thereby contributes to predicting the shift in vegetation composition and coexistence in response to climate warming. This research highlights the need to better understand plant–plant interactions within tundra communities.

      • KCI등재

        Successional changes in plant composition over 15 years in a created wetland in South Korea

        손덕주,이효혜미,조강현,방정환,권오병,이은주 한국생태학회 2018 Journal of Ecology and Environment Vol.42 No.4

        Backgrounds: The main purpose of this research was to assess changes in vegetation structure, wetland index, and diversity index for a 15-year-old created wetland in Jincheon, South Korea. The created wetland consists of four sub-wetlands: a kidney-shaped wetland, a ditch, an ecological pond, and a square wetland. Vegetation and water depth data were collected at each site in 1999 and 2013, and Shannon diversity and wetland indices were calculated. Results: The total number of plant species increased from 18 in 1999 to 50 in 2013, and the ecological pond in 1999 and the ditch in 2013 presented the highest diversity indices (2.5 and 3.2, respectively). Plant species were less diverse in 1999 than in 2013, presumably because these initial wetlands were managed periodically for water purification and installation of test beds. The proportion of wetland plants, including obligate wetland and facultative wetland species, decreased from 83 to 56%, whereas upland plants, including obligate upland and facultative upland species, increased from 17 to 44%. After ceasing water supply, water depth in all four sub-wetlands declined in 2013. Thus, upland plants established more readily at these sites, resulting in higher diversity and lower wetland indices than in 1999. Conclusions: The major floristic differences between 1999 and 2013 were an increase in the number of upland plants and a decrease in wetland species. Although wetland indices were lower in 2013, the created wetland performed important ecosystem functions by providing habitats for wetland and upland plants, and the overall species diversity was high.

      • 능동 복제 기반 CORBA 객체 그룹 지원

        손덕주,신범주,남궁한,진성일,Son, Deok-Ju,Sin, Beom-Ju,Nam, Gung-Han,Jin, Seong-Il 한국정보처리학회 1999 정보처리학회논문지 Vol.6 No.11

        Supporting object group on distributed object system give merits such as load balancing, fault tolerance and high availability. In this paper, we describe a CORBA ORB that has been designed to support object group based on active replication. The ORB supports the operational model in which it uses the IIOP for communication between client and server and total ordered multicast protocol for consistency control among group members. And through extension of ORB, it provides functions required for support of object group. Since it provides transparency of object replication, the ORB is interoperable with the existing CORBA products. It make possible for existing server application to be easily extended to application supporting object group as adding interface functions which should be used for building applications is minimized. A prototype is implemented, and performance of the replicated object group is tested and compared with a single object invocation.

      • 조성 후 15년이 경과한 인공습지의 식물상과 식생구조

        손덕주,이효혜미,이은주,조강현,권동민,Son, Deokjoo,Lee, Hyohyemi,Lee, Eun Ju,Cho, Kang-Hyun,Kwon, Dongmin 응용생태공학회 2015 Ecology and resilient infrastructure Vol.2 No.1

        This study was conducted to investigate the flora and vegetation structure at a 15-year-old artificial wetland for the water purification in Jincheon, Korea. The percentage of species number of obligate wetland plants and facultative wetland plants totaled 40%, whereas that of obligate upland plants and facultative upland plants was 57%. This result showed that the artificial wetland in the study experienced terrestrialization. The number of annual and biennial plants that are pioneer vegetation in a successional stage was lower than that of perennial herbs as a result of the long-term stabilization of vegetation. From the results of DCA (detrended correspondence analysis), water depth played an important role on the classification of vegetation structure in an old artificial wetland. Species diversity was higher in the terrestrialized plant communities such as Iris pseudacorus and Aster koraiensis than in any other wetland communities. Plant communities could be classified according to the wetland indices; obligate upland for A. koraiensis community, facultative wetlands for Carex dispalata var. dispalata and I. pseudacorus community, and obligate wetlands for Nymphoides peltata, Nymphaea tetragona, Phragmites communis, Potamogeton maackianus, and Typha angustifolia community. In conclusion, this result suggests that wetland vegetation should be maintained against terrestrialization through the proper management of sedimentation and hydrological regime in an artificial wetland. 본 연구에서는 충북 진천에 위치한 총 면적 $3,000m^2$ 인 수질정화용 인공습지에서 조성 15년 후의 식물상과 식생구조를 파악하였다. 이곳 인공습지에서는 총 93종의 식물종이 출현하였고, 절대습지식물과 임의습지식물의 비율이 40%, 절대육상식물과 임의육상식물의 비율은 57%로 나타나 천이에 의하여 인공습지가 점차 육상화되었음을 확인할 수 있었다. 천이가 진행됨에 따라 천이 선구자 종인 1, 2년생 식물보다 다년생 식물의 종수 비율이 높아졌다. DCA (detrended correspondence analysis) 결과, 습지 군집 구조를 결정하는 중요한 환경요인은 수심이었다. 군집별 종다양성은 노랑꽃창포 군집, 벌개미취 군집 등의 육상화된 군집에서 높았다. 식물 군집별 습지지수는 벌개미취 군집은 육상, 삿갓사초 및 노랑꽃창포 군집은 임의습지, 노랑어리연꽃, 수련, 갈대, 새우가래 및 애기부들 군집은 절대습지로 나타났다. 결론적으로 인공습지에서는 천이에 의하여 식물 군집의 육상화가 진행되므로 퇴적과 수문 체계를 지속적으로 관리하여 습지식생을 유지할 필요가 있을 것으로 판단되었다.

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