• Title/Summary/Keyword: DEAD TREE

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Nearest Neighbor Query Processing for Moving object (이동 객체에 대한 최근접 질의처리)

  • 강혜영;김경숙;이기준
    • Proceedings of the Korean Information Science Society Conference
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    • 2001.10a
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    • pp.190-192
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    • 2001
  • 시간에 따라 공간적 위치가 연속적으로 변하는 객체를 이동객체라 한다. 이동객체에 대한 최근접 질의는 시간에 따라 거리도 달라지게 됨으로써 기존의 방법을 그대로 이용하기 어렵다. 본 논문에서는 이동객체에 대한 최근접 질의를 3D R-tree를 이용한 최근접 탐색방법에 시간적 요소를 추가하여 처리하였다. 또, 3D R-tree를 구성하는 노드의 크기에 따른 사장공간(Dead Space)이 최근접 질의에 미치는 영향을 분석하였다. 실험결과에 따르면 이동객체를 하나의 노드에 저장하면 사장공간이 증가하여 불필요한 노드를 접근함으로써 성능이 떨어지고 여러 개로 분할하여 저장하게 되면 색인의 크기가 커짐으로써 질의 처리 성능이 떨어지게 된다. 따라서, 이동객체에 대한 적절한 분할 및 병합 정책이 필요하다는 것을 알 수 있다.

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Regeneration Process of Subalpine Coniferous Forest in Mt. Jiri (智異山 亞高山帶 針葉樹林의 更新)

  • Kang, Sang Joon
    • The Korean Journal of Ecology
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    • v.7 no.4
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    • pp.185-193
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    • 1984
  • Regneration process of Abies koreana-Pinus koraiensis community consisted of a subalpione coniferous forest in Mt. Jiri, Korea, was studied in relation to age structure, especially to gap formation. The tall-tree layer (ca. 6.5m) is dominated by Abies koreana and Pinus koraiensis, while lower layer by the sapling and juveniles of A. koreana and Picea jezoensis below 2m tall. The ranges of DBH in A. koreana, P. koraiensis and P. jezonesis were 11.8cm~26.4m, 11.7cm~24.5 cm and 18.2cm~21.7 cm, respectively. The trees below 130 cm tall had contagious distribution, while tall and subtall trees had uniform distribution. The average tree ages of A. koreana, P. koraieniensis and P. jezoensis were 60~70 years, 70~80 years and 70~90 years, respectively. The saplings and juveniles below 20 years in tree ages were occupied over 80% of total trees. The coniferous trees in the gaps or around dead trees were composed of sapligs and juveniles which had emerged or invaded about 20 years before and after the gap formation. The Betula type regeneration of the coniferous forest took place in gaps which orginated from the failing down of a single or a few trees by longevity. Accordingly, it is clear that the subalpine coniferous forest composed of A. koreana of A. koreana, P. koraiensis and P. jezoensis in Mt. jiri was supporting by the regeneration pattern of Betula type.

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Effects of ectomycorrhizal fungi on soil-borne plant pathogenic fungi in red pine seedlings

  • Seo, Il-Won;Lee, Jong-Kyu
    • Proceedings of the Korean Society of Plant Pathology Conference
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    • 2003.10a
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    • pp.89.1-89
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    • 2003
  • Disease suppression by ectomycorrhizal(ECM) fungi has been demonstrated on red pine seedlings. Culturing of pathogenic fungi on petri plates containing culture filtrates of ECM fungi showed that culture filtrates of the ECM fungus Hebeloma cylindrosporum may inhibit the mycelial growth of all tested soil-borne plant pathogenic(SBPP) fungi upto 60%, In order to examine the effects of ECM fungi on SBPP fungi and on red pine seedlings, both symbiotic and pathogenic fungi were inoculated into the soil with red pine seedlings by three inoculation methods; pre-inoculation of SBPP fungi 10 days before inoculation of ECM fungi, simultaneous inoculation of both fungi, post-inoculation of SBPP fungi 60 days after inoculation of ECM fungi. Seedling mortality, seedling growth, and ectomycorrhizal formation by the combined treatments were examined and compared. Pine seedlings were dead by the pre-inoculation of pathogenic fungi, except Rhizina undulate which required 9-12 days, within 6 days after inoculation. Among pathogenic fungi tested, Fusarium oxysporum was the most pathogenic with the mortality of 44%. However, no dead seedlings were shown by simultaneous inoculation of both fungi or pre-inoculation of ECM fungi. In addition, pine seedlings treated by simultaneous or post-inoculation of SBPP fungi were relatively higher than those treated by pre-inoculation in diameter at root crown and the number of ectomycorrhizal roots. There were no significant differences among inoculation methods in root length and dry weight of treated seedlings. It means that ECM fungi somehow play a role in protecting primary roots of red pine seedlings against invasion by the SBPP fungi.

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Bacterial Microbiome Differences between the Roots of Diseased and Healthy Chinese Hickory (Carya cathayensis) Trees

  • Xiao-Hui Bai;Qi Yao;Genshan Li;Guan-Xiu Guan;Yan Fan;Xiufeng Cao;Hong-Guang Ma;Mei-Man Zhang;Lishan Fang;Aijuan Hong;Dacai Zhai
    • Journal of Microbiology and Biotechnology
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    • v.33 no.10
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    • pp.1299-1308
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    • 2023
  • Carya cathayensis is an important economic nut tree that is endemic to eastern China. As such, outbreaks of root rot disease in C. cathayensis result in reduced yields and serious economic losses. Moreover, while soil bacterial communities play a crucial role in plant health and are associated with plant disease outbreaks, their diversity and composition in C. cathayensis are not clearly understood. In this study, Proteobacteria, Acidobacteria, and Actinobacteria were found to be the most dominant bacterial communities (accounting for approximately 80.32% of the total) in the root tissue, rhizosphere soil, and bulk soil of healthy C. cathayensis specimens. Further analysis revealed the abundance of genera belonging to Proteobacteria, namely, Acidibacter, Bradyrhizobium, Paraburkholderia, Sphaerotilus, and Steroidobacter, was higher in the root tissues of healthy C. cathayensis specimens than in those of diseased and dead trees. In addition, the abundance of four genera belonging to Actinobacteria, namely, Actinoallomurus, Actinomadura, Actinocrinis, and Gaiella, was significantly higher in the root tissues of healthy C. cathayensis specimens than in those of diseased and dead trees. Altogether, these results suggest that disruption in the balance of these bacterial communities may be associated with the development of root rot in C. cathayensis, and further, our study provides theoretical guidance for the isolation and control of pathogens and diseases related to this important tree species.

A Study on the Spatial Information and Location Environment of Dead Coniferous Tree in Subalpine Zone in Jirisan National Park -Focus on Korean Fir(Abies koreana) in Banyabong, Yeongsinbong, Cheonwangbong- (지리산국립공원 아고산대 침엽수 고사개체 공간정보 구축 및 입지환경 분석 - 반야봉, 영신봉, 천왕봉 일원 구상나무를 중심으로-)

  • Park, Hong Chul;Moon, Geon Soo;Lee, Ho;Lee, Na Yeon
    • Korean Journal of Environment and Ecology
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    • v.34 no.1
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    • pp.42-54
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    • 2020
  • This study aimed to analyze the rate of increase and spread patterns of dead trees of the conifer (Abies koreana and others) in subalpine zones by using the high-resolution aerial images in Jirisan National Park around 10 years ago. Furthermore, factors affecting the death of conifer were identified by analyzing the altitude, topographical information, solar radiation, and moisture environment of the site where the dead trees are located. The number of dead trees per unit area increased by two to five times in the Banyabong peak, Yeongsinbong peak, and Cheonwangbong peak in Jirisan National Park over the past decade. The increase was about 2 times in the Banyabong peak, about 3.9 times in the Yeongsinbong peak, and about 5.2 times in the Cheonwangbong peak, indicating the most notable increase in the Cheonwangbong peak. It is estimated that dead trees commonly occurred in the environments where the soil moisture content was low due to the high slope, amount of evaporation was high due to strong solar radiation as the location faced south, and the soil was dry due to strong solar radiation and short rain retention time. In other words, dead conifer trees in subalpine zones were concentrated in dry location environments, and the tendency was the same more than ten years ago.

Changes for Stand Structure of Abies koreana Forest at the Yeongsil Area of Mt. Hallasan for Six Years (from 2011 to 2017) (한라산 영실 지역 구상나무림의 6년간(2011년과 2017년)의 임분구조 변화)

  • Song, Ju Hyeon;Han, Sang Hak;Han, Sang Hak;Yun, Chung Weon
    • Journal of Korean Society of Forest Science
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    • v.108 no.1
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    • pp.1-9
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    • 2019
  • This study was carried out to compare stand structure and dynamics in Abies koreana forest in Yeongsil area of Mt. Hallasan between 2011 and 2017 by analysing DBH distribution, tree vitality, importance value (IV) and species diversity through the national long-term ecological research project conducted by National Institute of Environmental Research. As a result of DBH distribution, A. koreana decreased in all DBH class except 20-25 cm and the number of individual decreased by 16.3 percent from 780 to 655. As a result of tree vitality of A. koreana, the number of standing alive (AS) decreased by 16.2 percent from 652 to 546, while that of standing dead (DS) increased by 15.8 percent from 106 to 126 and that of fallen dead (DF) increased by 193.7 percent from 16 to 47, respectively. Importance value of A. koreana decreased by 2.4 percent point from 45.9 % to 43.5 %. Species diversity increased by 0.006 from 0.513 to 0.519. The weakening of the A. koreana in the Yeongsil area of Mt. Hallasan could be considerably supported by many aspects such as DBH distribution, tree vitality and importance value. Therefore, Long-term ecological monitoring and continuously research in that area should be conducted to clarify the effects of ecosystem changes.

Estimation of Carbon Storage for Pinus rigida Stands in Muju (무주지역 리기다소나무 임분에 대한 탄소저장량 평가)

  • Seo, Yeon Ok;Jung, Sung Cheol;Lee, Young Jin
    • Korean Journal of Environment and Ecology
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    • v.30 no.3
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    • pp.399-405
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    • 2016
  • This study aimed to determine the total amount of carbon stored in the aboveground, belowground tree biomass, dead trees, and organic matter in the forest floor and soil of the 36-year-old Pinus rigida stands in Muju. A total of three plots were selected to measure the carbon stored in live trees, dead trees, forest floor, and soil. Results showed that the carbon stocks of P. rigida stands amounted to 51.0 ton C/ha in aboveground biomass and 29.6 ton C/ha in belowground biomass. The distribution ratios of carbon stocks were as follows: 41.0% in stem wood, 36.8% in roots, 12.8% in branches, 6.0% in stem bark and 3.4% in foliage. The carbon stocks in dead tree amounted to 0.65 ton C/ha while it was 6.40 ton C/ha in organic matter in forest floor. The total amount of carbon stocks found in soil was 51.62 ton C/ha: 20.27 ton C/ha at 0~10 cm depth, 12.83 ton C/ha at 10~20 cm depth, 12.27 ton C/ha at 20~30 cm depth, and 6.24 ton C/ha at 30~50 cm depth. It was also observed that, as the soil depth increased, the soil carbon stocks tended to decrease. Results showed that the total amount of carbon stocks of P. rigida stands in Muju was 139.27 ton C/ha; the highest portion of the cumulative carbon stocks was found to be in soil at 37.1%, followed by the aboveground biomass with 36.6%, belowground biomass with 21.3%, forest floor with 4.6 % and dead trees with 0.5 %. This study is expected to provide forest managers accurate estimates of carbon stored in the habitat of P. rigida stands in Muju.

Restoration Plan and Ecological Characteristics of Vegetation in the Area Adjacent to GeumJeong Mountain Fortress (금정산성 주변 식생의 생태적 특성과 복원방안)

  • Kim, Seok-Kyu
    • Journal of Environmental Impact Assessment
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    • v.19 no.3
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    • pp.231-245
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    • 2010
  • The the purpose of this study was to analyze of the vegetation structure and phytosociological changes in the area adjacent to GeumJeong Mountain Fortress for fifteen years. The result of this study was as follows; Of the 8 quadrates, site of the North Gate 2 was having a highest in the number of extinct trees, 15 kinds. This is probably due to trampling effect caused by climbers' steps. Site of the West Gate 1 and South gate 1 each had 8 kinds of extinct trees, respectively. The number of newly appeared trees was highest at site of the North Gate 1, (8 kinds) followed by the sites of South gate 1 and South gate 2, respectively (5 kinds). The highest decrease in number of tree species was observed in North Gate 1, therefore, there is a strong relationship between vegetation diversity and the number of users of the available spaces. In order to revitalize the unstable vegetation structure of the Area Adjacent to GeumJeong Mountain Fortress, Robinia pseudo-acacia has to be well maintained in the shrub tree layer, and vines, such as Smilax china, Humulus japonicus, and Pueraria thungergiana, should be removed. To recover natural vegetation, dead leaf layer should be protected, and more shrub trees need to be planted. In the understory and shrub tree layer, multi layer tree planting is highly recommended to recover natural vegetation and increase tree diversity. In order to improve bad soil condition caused by trampling effect of recreational users, special treatments to the soil structure are required, such as mulching and raking soil. Also, depending on its soil damage from users trampling, the areas in the park should be divided into usable areas and user limited areas by the sabbatical year system. To improve the soil acidity due to acidic rain, soil buffering ability should be improved by activating microorganisms in the soil by using lime and organic material.

Development of an Aerial Precision Forecasting Techniques for the Pine Wilt Disease Damaged Area Based on GIS and GPS (GIS와 GPS를 이용한 소나무재선충병 피해지 항공정밀예찰 기법 개발)

  • Kim, Joon-Bum;Kim, Dong-Yun;Park, Nam-Chang
    • Journal of the Korean Association of Geographic Information Studies
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    • v.13 no.1
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    • pp.28-34
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    • 2010
  • The spatial distribution characteristics of damaged trees by the pine wilt disease appear scattered spots spreading from single dead trees. That is the reason why it is difficult to early detect damage and to prevent from extensive damage. Thus, it is very important to forecast and analyze the damage occurrences, to establish strategies for prevention, and to supervise them. However, conventional survey which observes around roads or residential areas by naked eyes was impossible to investigate completely, missing target areas and dangerous areas. Therefore, aerial forecasting techniques on the damaged area were developed using GIS, GPS, and helicopters for an accurate observation of systematic and scientific approach in this study. Moreover, advantages of the techniques application were confirmed to survey 972 dead tree samples at 349 position-coordinates in 32 cities (about $28,810km^2$), 2005. This study is expected to apply widely to find dead trees and the causes, particularly by pine wilt disease.