• Title/Summary/Keyword: ornamental plant

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Distribution and Host Plants of Parasitic Weed Cuscuta pentagona Engelm. (기생식물 미국실새삼의 분포 및 기주식물상)

  • Hwang, Sunmin;Kil, Jihyon;Lee, Chang-Woo;Kim, Youngha
    • Korean Journal of Plant Resources
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    • v.26 no.2
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    • pp.289-302
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    • 2013
  • Surveys were conducted to study nationwide distribution and identify habitats and host plants of Cuscuta pentagona Engelm. as a parasite. The major habitat types were arable land near agricultural waterways (54.3%), open field near roadside (41.3%) and artificial grassland (4.3%). The investigated host plants of Cuscuta pentagona consist of total 130 taxa: 10 varieties, 1 subspecies, 119 species, 95 genera, and 37 families. Among them, 30 taxa were alien plants. As for the useful plants, there were 59 taxa of edible ones (45.4%), 54 taxa of medicinal ones (41.5%), 13 taxa of ornamental ones (10%), 13 taxa of industrial ones (10%), and 9 taxa of pasture ones (6.9%). On arable land, it caused damage particularly to the growth of agricultural crops such as Oryza sativa L. (Rice) and fruits such as Malus pumila Mill. (Apple) etc. Its growth and distribution may cause economic loss for crops because of the close location of the arable land.

Phytoremediation of Soils Contaminated with Heavy Metal by Hosta longipes in Urban Shade (도시 내 음지 중금속 오염지에 대한 비비추의 식물정화 효과)

  • Ju, Jin-Hee;Yoon, Young-Han
    • Journal of Environmental Policy
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    • v.12 no.4
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    • pp.119-132
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    • 2013
  • Hosta longipes is one of the most popular ornamental perennials in use in Korea today, and is mainly used as a groundcover plant in urban shaded places. In this study, the pytoremediation effect of Hosta longipes was tested using four concentrations (Control, 100, 250 and $500mg{\cdot}kg^{-1}$) of Cd, Pb and Zn in soil. The plants were planted in $300mm{\times}200mm{\times}250mm$ drainless-containers, which were filled with a artificial amended soil for 7 months. The results showed that the contents of heavy metals cadmium and lead in the shoot of Hosta longipes increased with increasing heavy metal concentration levels exception of zinc. The amount of zinc, cadmium, and lead accumulated in roots were increased with heavy metal concentration levels up in soil. The shoot/root ratios(TF; translocation factor) values were found to be more than 80% of total Zn, Cd, and Pb take up by Hosta longipes. These results indicated that root is the major part for accumulation of heavy metal. The removal contents of zinc, cadmium, and lead increased significantly with the increasing heavy metal concentration in the soil, which was planted with Hosta longipes. The heavy metal concentration accumulation in plant/soil ratios (BF; bioaccumulation factor) values for three metals were found to be more than 30% in cadmium and lead, but lower in zinc treatments. The different responses of Hosta longipes suggest that in heavy metal contaminated soils the plant adsorbs available metals depending on the concentration soils in which they are present. Therefore, this species can be an efficient phytoremediator for soils contaminated with cadmium and lead in urban shaded places.

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Growth Responses of Various Ferns on Shading and Fertilizer Application (차광 및 시비처리에 따른 여러 양치류의 생육반응)

  • Shim, Myung-Syun;Kim, Young-Jae;Lee, Dong-Sok;Kwon, Yeong-Han;Kim, Sung-Sik;Kang, U-Tchang
    • Journal of Bio-Environment Control
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    • v.20 no.2
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    • pp.109-115
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    • 2011
  • This study was carried out to investigate the plant growth of various ferns affected by the shading and fertilizer application and to recommend the appropriate levels of light intensity. Evergreen ferns like Dryopteris nipponensis Koidz., Cyrtomium falcatum (L. f.) Presl, Onychium japonicum (Thunb.) Kunze and deciduous ferns like Athyrium niponicum (Mett.) Hence, Thelypteris decursive-pinnata Ching, Athyrium brevifrons Kodama ex Nakai were used in this experiment. Evergreen ferns showed the best growth in the shading level of 30~60%. The plant growth and ornamental value (leaf color) of these plants were improved according to the fertilizer application in appropriate shading levels. The survival rate remained constantly in all treatments. Deciduous ferns showed the best growth in different shading levels from 0 to 60%. Some treatments showed improved growth according to fertilizer application, whereas survival rate was in the other treatments. There were differences in plant growth of evergreen and deciduous ferns according to fertilizer application, and additional researches must be executed to explain these reponses.

Investigation of the Medicinal Plant Resources (약용식물(藥用植物)의 유전자원수집(遺傳資源蒐集)과 이용(利用)에 대(對)한 조사(調査))

  • Lee, Joon Tak
    • Current Research on Agriculture and Life Sciences
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    • v.8
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    • pp.71-82
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    • 1990
  • In order to collect the plant genetic resources in Korea, the medicinal plants were surveyed from 1987 to 1989 in Kyungbuk province and at the several areas in Kyuognam and Choongbuk province. The medicinal plants of 456 species in 118 families were investigated in these regions. Among them, 249 species were belonged to 19 families, Compositae, Liliaceae, Leguminosae, Poiygonaceae, Labiatae, Rosaceae, Umbelliferae, Gramineae, Solanaceae, Cucurbitaceae, Ranunculaceae, Cruciferae, Rutaceae, Araliaceae, Araceae, Moraceae, Scrophulariaceae, Caryopyhllaceae, and Convolvulaceae, and others were belonged to 99 families. They have been used mostly for urination, gastroenteric disoder, robustness, antiphlogistic, anodyne, cough medicine, fever remedy, hemostatic, and 9 species of them have been used for anticancer medicine. The medicinal plant resources which were planted in the fields, gardens, parks, roadsides, and glass house, were 93 species for ornamental, 50 for medicine, 27 for vegetable, 14 for food, 5 for vegetable fruit, 13 for fruit, 5 for oil, 6 for tea, 9 for shade, and 14 for other purposes. Most of investigated plants were perennial, and flowered from June to August. The root parts were most frequently used as medicine, and other parts were used in the order of leaf and stem, whole plants, flower, seed, and fruit. Among the 456 species, 191 species in 87 families were investigated to be important medicinal plants.

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Distribution of Resource Plants in the Wolmyung Park, Gunsan City (군산시 월명공원일대 자원식물의 분포 현황)

  • Oh, Hyun-Kyung;Kim, Young-Ha;Beon, Mu-Sup
    • Korean Journal of Plant Resources
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    • v.20 no.2
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    • pp.133-144
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    • 2007
  • The vascular plants at the Wolmyung Park was listed 479 taxa: 105 families, 317 genera, 417 species, 1 subspecies, 55 varieties and 6 forms. 479 taxa listed consists of 291 taxa of edible plants (60.8%), 335 taxa of medicinal plants (69.9%), 234 taxa of ornamental plants (48.9%) and 243 taxa of the others (50.7%). Based on the list of the rare plants by the Forest Research Institute, 4 taxa were recorded in the investigated areas; Aristolochia contorta (Preservation priority order, No. 151), Magnolia kobus (No. 187), Prunus yedoensis (No. 110), Berchemia racemesa (No. 67) and based on the list of Korean endemic plants, 9 taxa were recorded; Cephalotaxus koreana, Carex okamotoi, Populus tomentiglandulosa, Prunus yedoensis, Forsythia koreana, Asperula lasiantha, Weigela subsessilis, Adenophora triphylla var. hirsuta, Aster koraiensis. Specific plant species by floral region were total 31 taxa; Prunus yedoensis, Berchemia racemosa in class V, Magnolia kobus, Wistaria floribunda in class IV, 4 taxa (Spiraea salicifolia, Acer palmatum, Asperula lasiantha, etc.) in class III, Caryopteris incana in class II, 22 taxa (Clematis patens, Orixa japonica, Euscaphis japonica, Grewia biloba var. parviflora, etc.) in class I. The naturalized plants in this site were 14 families, 35 genera, 44 species, 2 varieties, 46 taxa and naturalization rate was 9.6% of all 479 taxa vascular plants.

Distribution and Characteristics of Plants Resources in Mt. Jo-bong (Yangyang-gun, Gangwon-do) (조봉(강원, 양양) 식물자원의 분포와 특성)

  • Han, Jun-Soo;Cheon, Kyeong-Sik;Kim, Kyung-Ah;Ok, Gil-Hwan;Jung, Hee-Jin;Yoo, Ki-Oug
    • Korean Journal of Plant Resources
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    • v.26 no.1
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    • pp.119-142
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    • 2013
  • This study was carried out to investigate the distribution and characteristics of plants resources in Mt. Jo-bong (Yangyang-gun, Gangwon-do) from April, 2011 to October, 2012. The vascular plants were summarized as 500 taxa; 92 families, 296 genera, 434 species, 6 subspecies, 49 varieties, and 11 forma. Among the investigated 500 taxa, 13 Korean endemic, 14 rare plants, 1 endangered and 75 specially designated plants by Ministry of Environment were included. The naturalized plants were 32 taxa and percent of naturalized plant species and urbanization index were estimated 6.4% and 10%, respectively. Usefulness of plants of 500 taxa listed consists of 193 taxa (38.6%) of edible plants, 155 taxa (31.0%) of medicinal plants, 86 taxa (17.2%) of pasture plants, 58 taxa (11.6%) of ornamental plants, 16 taxa (3.2%) of timber plants, 14 taxa (2.8%) of fiber plants, 4 taxa (0.8%) of industrial plants and 2 taxa (0.4%) of miscellaneous plants.

The Flora of Vascular Plants in Mt. Galjeongok-bong Protected Area for Forest Genetic Resource Conservation, Baekdudaegan, Korea (백두대간 갈전곡봉 산림유전자원보호구역의 관속식물상)

  • Byeon, Jun Gi;Oh, Seung Hwan;Lee, Kyu Song;Yun, Ju Eun;Jang, Jeong Won;Jeong, Jong Bin;Yang, Jong Cheol;Kim, Hyuk Jin
    • Korean Journal of Plant Resources
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    • v.27 no.5
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    • pp.477-484
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    • 2014
  • This study was carried out to investigate the vascular plants of the Mt. Galjeongok-bong (1204 m) Protected Area for Forest Genetic Resource Conservation. The vascular plants collected 12 times (from March 2007 to October 2012) were consisted of total 385 taxa; 82 families, 232 genera, 335 species, 4 subspecies, 43 varieties and 3 forms respectively. Among them, 9 taxa Korean endemic plants and 21 taxa of Korean rare plants were investigated in addition to 89 taxa of specially designated plants announced by the Ministry of Environment. The naturalized plants were 9 taxa, therefore naturalized ratio was 2.3%. 385 taxa listed consists of 152 taxa (39.5%) of edible plants, 123 taxa (31.9%) of medicinal plants, 120 taxa (31.2%) of pasture plants, 52 taxa (13.5%) of ornamental plants, 16 taxa (4.2%) of timber plants, 4 taxa (1.0%) of fiber plants and 3 taxa (0.8%) of industrial plants.

Floristic study of Mt. Dosol and its adjacent areas (Yanggu-gun, Gangwon-do) (도솔산(강원, 양구)일대의 관속식물상)

  • Kim, Kyung-Ah;Han, Jun-Soo;Cheon, Kyeong-Sik;Park, Yong-Ho;Kang, Jong-Soo;Yoo, Ki-Oug
    • Korean Journal of Plant Taxonomy
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    • v.44 no.1
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    • pp.59-76
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    • 2014
  • This study was carried out to investigate flora of Mt. Dosol(Yanggu-gun, Gangwon-do). The vascular plants were summarized as 510 taxa, including 89 families, 281 genera, 438 species, 3 subspecies, 61 varieties and 8 forms. Among the investigated 510 taxa, 21 Korean endemic, 24 rare plants, 1 endangered plant and 122 specially designated plants by the Ministry of Environment were also included. The naturalized plants were 27 taxa. The percent of naturalized plants species and urbanization index were estimated as 5.3% and 8.4%, respectively. Usefulness of plants of 510 taxa listed consists of 201 taxa(39.4%) of edible plants, 186 taxa(36.5%) pasture plants, 144 taxa(28.2%) of medicinal plants, 56 taxa(11.0%) of ornamental plants, 16 taxa(3.1%) of timber plants, 8 taxa(1.6%) of miscellaneous plants and 4 taxa(0.8%) of fiber plants.

A Study on Utility and Appreciation of the Plants in "Poetry of the South" - Focusing on Qu-Yuan's Poetry - (초사(楚辭)에 나타난 식물 소재의 활용 및 향유 방식 - 굴원(屈原)의 시문을 중심으로 -)

  • Yun, Jia-Yan;Sung, Jong-Sang
    • Journal of the Korean Institute of Traditional Landscape Architecture
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    • v.32 no.4
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    • pp.50-60
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    • 2014
  • This study aims to sort out the plants in "Poetry of the South" what is in the written by Qu Yuan in the Kingdom of Chu and to analyze the utility and appreciation of plants. The conclusions are as follows. First, there were 80 plant names and 56 plant species were sorted out, and these results can confirm that the plants were existed in the 340-277 BC. Second, through analyzing the utility of the plants, herba lycopi, basil etc. as the garden plants; lotus, chrysanthemum etc. as the ornamental plants; galangal and cannabis sativa as the present; basil, musa basjoo, etc. as the sacrifice plants. Third, through analyzing the appreciation of the plants, golden birch, chrysanthemum etc. for gustatory appreciation; herba lycopi and pine tree etc. for tactile appreciation; bamboo for sensory appreciation. Forth, through analyzing the token of the plants, calamus and basil etc. are the symbol of personal character noble; wormwood and caltrop etc. are the symbol of villain. Based on the research of "Poetry of the South", it can help to understand the plants culture in 340-277 BC, and it will be a useful information for the plant design.

Current status and prospects of chrysanthemum genomics (국화 유전체 연구의 동향)

  • Won, So Youn;Kim, Jung Sun;Kang, Sang-Ho;Sohn, Seong-Han
    • Journal of Plant Biotechnology
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    • v.43 no.3
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    • pp.272-280
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    • 2016
  • Chrysanthemum is one of the top floriculture species with ornamental and medicinal value. Although chrysanthemum breeding program has contributed to the development of various cultivars so far, it needs to be advanced from the traditional phenotype-based selection to marker-assisted selection (molecular breeding) as shown in major cereal and vegetable crops. Molecular breeding relies on trait-linked molecular markers identified from genetic, molecular, and genomic studies. However, these studies in chrysanthemum are significantly hampered by the reproductive, genetic, and genomic properties of chrysanthemum such as self-incompatibility, inbreeding depression, allohexaploid, heterozygosity, and gigantic genome size. Nevertheless, several genetic studies have constructed genetic linkage maps and identified molecular markers linked to important traits of flower, leaf, and plant architecture. With progress in sequencing technology, chrysanthemum transcriptome has been sequenced to construct reference gene set and identify genes responsible for developments or induced by biotic or abiotic stresses. Recently, a genome sequencing project has been launched on a diploid wild Chrysanthemum species. The massive sequencing information would serve as fundamental resources for molecular breeding of chrysanthemum. In this review, we summarized the current status of molecular genetics and genomics in chrysanthemum and briefly discussed future prospects.