• Title/Summary/Keyword: QUERCUS

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Vegetational History of the Mulyeongari Fen by Pollen Analysis in Jeju Island, Korea (제주도 물영아리늪 퇴적물의 화분분석에 의한 식생변천)

  • Lee, Chang-Su;Kang, Sang-Joon;Choi, Kee-Ryong
    • Journal of Environmental Science International
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    • v.20 no.3
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    • pp.341-350
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    • 2011
  • For the reconstruction of the past vegetational changes in Jeju Island, Korea, pollen analysis and radiocarbon dating on the sediments obtained from the Mulyeongari fen were carried out. By the results, the vegetational changes around the Mulyeongari fen from ca. 3,300 cal. yr BP to the present can be interpreted and reconstructed. The pollen record from the Mulyeongari fen was divided into two local pollen assemblage zones and three sub-pollen assemblage zones. Zone I (Quercus-Carpinus-Herbs Zone) was characterized by the predominance of Quercus(30~63%), Carpinus(9~35%) and herbs(40~424%). Zone II was characterized by three sub-pollen assemblage zones and the high occurrence ratio of the tree layer in comparison with Zone I. In Zone IIa (Quercus-Carpinus Zone), herbs(3~161%) were drastically decreased in predominance of Quercus(28~56%) and Carpinus(14~31%). In Zone IIb (Carpinus-Quercus Zone), Carpinus(36~48%) was preferentially increased but Quercus(29~39%) was slightly decreased. In Zone IIc (Quercus-Carpinus Zone), Carpinus(26~38%) was decreased inversely but Quercus(36~50%) was increased. In addition, Cyperaceae was also increased to 52%. Consequently, it is suggested that cool temperate southern/sub-montane vegetation composed of Quercus and Carpinus which was physiognomy of deciduous broad leaved forest was distributed around the Mulyeongari fen from ca. 3,300 cal. yr BP. In addition, Cyclobalanopsis(4~23%), Castanopsis(1~12%) and Myrica(under 1%) which are warm-temperate evergreen deciduous forest components were constantly appeared from this period. Accordingly, it can be inferred that the present vegetation type around the Mulyeongari fen was formed from ca. 180 cal. yr BP.

Structure of Forest Vegetation in Gongsanseong, Gongju-Shi (공주시 공산성의 산림식생 구조)

  • Cheong, Yongmoon;Kweon, Yongho;Lee, Sanghwa;Choi, Jaeyong;Song, Hokyung
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.10 no.2
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    • pp.16-25
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    • 2007
  • The purpose of the study is to analyse and classify the characteristics of Gongsanseong forest through phytosociological and quadrat method with 20 plot samples. In result, the forest was classified as Quercus acutissima community. The subcommunity was composed of Quercus aliena and Zelkova serrata. The average vegetation coverage of Quercus aliena subcommunity was upper tree layer (83%), lower tree layer (48%), shrub layer (39%), and herb layer (30%), while the average vegetation coverage of Zelkova serrata subcommunity was upper tree layer (76%), lower tree layer (52%), shrub layer (40%), and herb layer (45%). The order of importance value of the forest community with DBH 2cm above plants was Quercus acutissima (72.62), Quercus aliena (40.52), Prunus sargentii (19.81), Styrax japonica (19.39), Zelkova serrata (15.78), Robonia pseudoacacia (14.76), Quercus variabilis (13.83), Sorbus alnifolia (13.71), Platycarya strobilacea (10.74), Pinus densiflora (10.08), and Quercus serrata (9.31). According to breast diameter analysis results, it is expected that the importance value of Prunus sargentii and Zelkova serrata will be continuously increased while Quercus sp. is dominating the forest. With the result of ordination analysis, the relationship between the forest community and environmental factors could be affected by soil nutrition, moisture, and elevation etc.

Forest Vegetation on the South and North Slopes of Donghaksa Valley in Gyeryongsan National Park (계룡산 동학사계곡 남사면과 북사면의 산림식생)

  • Kim, Hyun-Sook;Kim, Ho-Jun;Lee, Kyoo-Seock;Song, Ho-Kyung
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.7 no.2
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    • pp.52-61
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    • 2004
  • This study has been carried out to classify forest vegetation in south and north slopes of Donghaksa valley for supplying basic data for conservation and restoration of the valley. With the phytosociological method, the forest of the south and north slopes of Donghaksa valley was classified as four groups; Quercus variabilis community, Quercus mongolica community, Pinus densiflora community and Carpinus laxiflora community. The dominant species were found in the order of Pinus densiflora, Quercus variabilis, Carpinus laxiflora, and Quercus mongolica. Comparing the north and south slopes, Quercus variabilis were the highest dominant species in the south and Carpinus laxiflora in the north. Pinus densiflora were the next dominant species in both south and north slopes. According to the DBH analysis result, Pinus densiflora and Quercus variabilis had density of normal distribution style among the entire community. Therefore, their dominance are expected to continue for now. But, Quercus mongolica and Carpinus laxiflora are expected to extend their influence in the future in terms of competition with Pinus densiflora. The correlation between each community and the environment according to DCCA ordination was examined in this study. The result told us that Quercus variabilis is distributed mainly on the south slope in a mid-steep and mid-altitude area. Quercus mongolica community appeared on the north slope in the steep high-altitude area that has high percentage in total nitrogen and CEC. Pinus densiflora community is distributed on both south and north slopes in a gentle slope and low-altitude area. Carpinus laxiflora is distributed on the north slope in a mid-steep and mid-altitude area.

Species Identification of Wooden Relics Excavated in Jedeok Bay, Jinhae (진해 제덕만 목재 유물의 수종식별)

  • Chong, Song-Ho;Park, Byung-Su;Koo, Ja-Oon;Jung, Eui-Do
    • Journal of the Korean Wood Science and Technology
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    • v.32 no.5
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    • pp.20-28
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    • 2004
  • 26 wooden relics excavated in Jedeok bay, Jinhae, Gyeongsangnam-do, Korea were identified. Wood species identified were consisted of 7 softwoods and 19 hardwoods. Softwoods identified were hard pines (Pinus spp.), while 19 hardwoods were consisted of 15 Lepidobalanus (Quercus spp.), 1 Cyclobalanopsis (Quercus spp.), 1 Meliosma oldhami Miq., 1 Platycarya strobilacea S. et Z., and 1 Carpinus spp., respectively. The wooden fences were composed of a variety of wood species such as hard pines (Pinus spp.), Lepidobalanus (Quercus spp.), Meliosma oldhami Miq. and Carpinus spp. Wooden members of ship were consisted of Lepidobalanus (Quercus spp.), and parts of ship body were hard pines(Pinus spp.). The other relics that uses were unknown were hard pines (Pinus spp.), Lepidobalanus (Quercus spp,), Cyclobalanopsis (Quercus spp.), and Platycarya strobilacea S. et Z.

The Effect of Raffaelea quercus-mongolicae Inoculations on the Formation of Non-conductive Sapwood of Quercus mongolica

  • Torii, Masato;Matsuda, Yosuke;Seo, Sang Tae;Kim, Kyung Hee;Ito, Shin-Ichiro;Moon, Myung Jin;Kim, Seong Hwan;Yamada, Toshihiro
    • Mycobiology
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    • v.42 no.2
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    • pp.210-214
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    • 2014
  • In Korea, mass mortality of Quercus mongolica trees has become obvious since 2004. Raffaelea quercus-mongolicae is believed to be a causal fungus contributing the mortality. To evaluate the pathogenicity of the fungus to the trees, the fungus was multiple- and single-inoculated to the seedlings and twigs of the mature trees, respectively. In both the inoculations, the fungus was reisolated from more than 50% of inoculated twigs and seedlings. In the single inoculations, proportions of the transverse area of non-conductive sapwood at inoculation points and vertical lengths of discoloration expanded from the points were significantly different between the inoculation treatment and the control. In the multiple inoculations, no mortality was confirmed among the seedlings examined. These results showed that R. quercus-mongolicae can colonize sapwood, contribute to sapwood discoloration and disrupt sap flows around inoculation sites of Q. mongolica, although the pathogenicity of the fungus was not proven.

Plant Community Structure of Evergreen Broad-Leaved Forest in Mt. Turyunsan, Korea (두륜산 상록활엽수림의 식물군집구조)

  • 오구균
    • Korean Journal of Environment and Ecology
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    • v.8 no.1
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    • pp.43-57
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    • 1994
  • The evergreen broad-leaved forest in Mt. Turyunsan was classified into four plant communities : Carpinus tschonoskii community, Carpinus tschonoskii - Quercus acute community, Quercus acuta community, Neolitisea sericea community. Quercus acuta, which had been appeared as a dominant species in most evergreen broad-leaved forest, was assumed to be succeed from Quercus serrata and Quercus variabilis through Carpinus tschonoskii, and would be succeed to Neolitsea serisea. Carpinus thschonoskii and Quercu serrata were assumed to be competitive with Quercus acuta, Camellia japonica, Neolitsea serisea and, Machilus thunbergii. It was assumed that Quercus acuta had a similiar ecological niche with Camellia japonica. Also it was assumed Neolitsea serisea had a similiar ecological niche with Lozoste lansifolia.

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Vegetation Structures Analysis and Management Plan Proposal for the Sungheung Fortress in Buyeo-the Old city of Baekje (백제의 고도(古都) 부여 성흥산성(聖興山城)의 식생구조 및 관리방안)

  • Yee, Sun;Song, Ho-Kyung
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.14 no.3
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    • pp.85-100
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    • 2011
  • Vegetation structure of Sungheung fortress in Buyeo was investigated to suggest a desirable management proposal. Forset communities by phytosociological method were classified into Pinus densiflora community, Quercus serrata community and Quercus aliena community. The importance value of Pinus densiflora, Quercus aliena, Quercus serrata, Quercus variabilis, Castanea crenata, Styrax japonica, Quercus acutissima and Prunus sargentii were 34.81, 13.57, 12.63, 6.73, 6.40, 4.70, 4.54 and 3.65. According to breast diameter analysis results, it is expected that the importance value of Pinus densiflora and Quercus spec. will be continuosly increased. It should be prepared that vegetation management plan over the castle wall should be considered before the repair or restoration of castle wall. Vegetation management around castle wall should be carried out according to the mid or long-term plan and it would be needed to consider the gradual changes from planted Pinus rigida to the historical vegetation of Pinus densiflora.

Vegetation Structures and Management Plan for Jangtaesan Natural Recreation Forest in Daejeon City (대전 장태산 자연휴양림의 식생구조 및 관리방안)

  • Kwon, Hyejin;Lee, Jihye;Shin, Changhwan;Choi, Jaeyong;Song, Hokyung
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.11 no.3
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    • pp.116-128
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    • 2008
  • Vegetation structure of Jangtaesan Natural Recreation Forest in Daejeon City was investigated to suggest a preferable management plan. Vegetation survey was carried out with thirty plots. Adopting phytosociological method, plant communities were classified into twinfolds of natural and afforested area. A natural forest were composed of Quercus mongolica, Quercus variabilis, and Pinus densiflora community. Afforested area were with Metasequoia glyptostroboides, Larix leptolepis, Pinus koraiensis, and Castanea crenata community. The importance value of Quercus mongolica, Quercus variabilis, Pinus densiflora, and Quercus serrata in natural forest were 59.69%, 48.32%, 39.10%, 21.53%, respectively. According to diameter of breast hieght analysis results, it is expected that the occupancy of Quercus mongolica, Pinus densiflora, and Quercus variabilis would be continuously increased. Based on the findings of the study, management plan for natural forest and afforested area was recommended in line with the progress of natural ecology.

Extractives from the barks of Querus acutissima and Quercus variabilis (상수리나무(Querus acutissima)와 굴참나무(Querus vcariabilis) 수피의 추출성분)

  • 김진규;이상극;함연호;배영수
    • Journal of Korea Foresty Energy
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    • v.21 no.1
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    • pp.41-48
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    • 2002
  • The barks of oak trees (Quercus acutissima and Quercus variabilis) were collected, extracted with acetone-$H_2O$ (7:3, v/v), fractionated with hexane, $CH^2C1^2$ EtOAc and -$H_2O$, then freeze dried to give dark brown powder. The EtOAc soluble mixtures of the trees were chromatographed on a Sephadex LH-20 column using a series of aqueous methanol and ethanol-hexane mixture as eluents. The structures of isolated compounds were characterized by $^1H$, $^13C$ and 2D-NMR spectroscopy and molecular weights were determined by FAB-MS spectra. The isolated compounds from Quercus acutissima were (+)-catechin, (+)-gallocatechin, gallic acid and taxifolin-3-O-$\beta$-D-glucopyranoside and the compounds from Quercus variahilis (+)-catechin, caffeic acid and taxifolin-3-O-$\beta$-D-glucopyranoside.

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Effects of Quercus dentata and Quercus acutissima Extracts on the Activations of Macrophage RAW264.7 Primed with $IFN-{\gamma}$ (곡피(?皮)와 상목피(橡木皮) 추출물이 대식세포 RAW264.7 활성화에 미치는 영향)

  • Jo, Jin-Hee;Seong, Nak-Sull;Lee, Young-Jong
    • The Korea Journal of Herbology
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    • v.21 no.1
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    • pp.89-100
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    • 2006
  • Objectives : The effects of methanol extracts from the cortex of Quercus dentata Thunb. and Quercus acutissima Carruth, on the activation of macrophage were examined. Methods : Methanol extracts of Quercus dentata (QD) and Quercus acutissima (QA) were applied to cell line RAW264,7 (macrophage), and their effects were examined. Results : 1. Extracts from QD and QA had no specific influence on the cell growth. 2. Extracts from QD and QA did not activate macrophage independently, but the addition of $IFN-{\gamma}$ facilitated the generation of macrophage's nitric oxide(NO). 3. QD and QA extracts increased the manifestation of iNOS gene, when macrophage was activated by $IFN-{\gamma}$. 4. QD and QA extracts increased the manifestation of $TNF-{\alpha}$ in macrophage, which took 2 hours. 5. QD and QA extracts increased the generation of $PGE_2$ in macrophage. Conclusion : QD and QA activate macrophage in the presence of $IFN-{\gamma}$. After activation is primarily facilated by $IFN-{\gamma}$, it works on macrophage secondarily for the manifestation of iNOS gene and for the generation of $TNF-{\alpha}$.

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