• Title/Summary/Keyword: Lotus corniculatus var. japonicus

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Isolation and Characterization of Ilhizobium loti from Lotus corniculatus var. japonicus (벌노랑이로부터 Rhizobium loti 의 분리 동정 및 그 특성)

  • 소병인;이강련;윤경하;고상균;이영록
    • Korean Journal of Microbiology
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    • v.30 no.6
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    • pp.450-455
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    • 1992
  • Five strains of the fast-growing endosymbionts were isolated from the nodules of Lotus eorniculatus var. japonicus inhabited in Taejeon. From morphological and physiOlogical characteristics and nodulation test, the isolated strains were identified as Rhizobium loti. Compared to the control plant, both Lotus cornieulatus var. japonieus and Lotus corniculatus seedlings inoculated with the isolated strains. grew normally due to effective root nodule. The reisolated endosymbiont from the induced root nodule was confirmed identical to those of the first isolates by investigating antibiotic resistance and morphological characteristics. Three strains among the isolates. R. loti TUS I. TUS5 and TUS6 produced a ca1cof1uorbinding exopolysaccharide.

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Cyanogenoc polymorphism in the leaves of locus corniculatus var. japonicus regel(leguminosae) in the south korea (韓國産 벌노랑이 ( Lotus corniculatus var. japonicus Regel : Leguminosae ) 잎의 靑酸生成 多型現狀)

  • Moon, Tae-Young
    • The Korean Journal of Ecology
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    • v.15 no.1
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    • pp.75-80
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    • 1992
  • The populations of the legume lotus corniculatus var. japonicus regel were polymorphic for the character of leaf cyanogenesis. The distribution of the related phenotypes was investigated at ten different sites scattered in south Korea. The frequencies of leaf-cyanogenic plants were respectively and in percentage (the number of the samples) ; ch'onmasan(2 sits) 98.00%(200), 99.44%(180); ch'onggyesan 92.30%(104) ; myongjisan 97.00%(100); songnisan 98.00%(100); kyeryongsan 92.50%(120) ; chilgapsan 91.82%(110); hwasan 96.00(100); chirisan(2 sites) 46.67%(105),68.59%(156): χ2=309.25, df=9, p 0.001. the factors that may be responsible for the distribution of the phenoytypes are discussed.

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Study on the Early Growth and Anthesis Characteristics of Some Turf Type Grasses and Wildflower Species for Mixture Combination of Wildflower Pasture (야생화초지 혼파조합을 위한 몇 가지 잔디형 및 야생화 초종의 초기생육과 개화특성에 관한 연구)

  • Lee, Byong-Chul;Lee, In-Duk;Lee, Hyung-Suk
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.27 no.3
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    • pp.173-182
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    • 2007
  • The purpose of this study was to compared the early growth pattern, stem, leaf and root weight, DM yield, flowering characteristics and preference for selection of turf type grasses and wild flower species in mixtures combination for wildflower pasture. The experimental design included five species of turf grasses and 11 species of wildflower : turf type grass species{Kentucky bluegrass(Midnight), tall fescue(Millennium), perennial ryegrass(Palmer III), redtop(Barricuda) and creeping bentgrass(Crenshaw)}, wildflower species {Chrysanthemum leucanthemum L. Coreopsis lanceolata L., Rudbeckia bicolor Nutt.., Dianthus chinensis L., Chrysanthemum lindicum L., Lotus corniculatus var. Japonicus Regel, Veronica linariaefolia Pallas, Aster koraiensis Nakai., Chrysanthemum zanadskii var. latilobum (Maxim.) Kitamura, Lythrum anceps Makino and Iris pallassi var. chinensis Lodd}. The field trials were carried out on the experimental pasture plots of Chungnam National University from January 2005 to December 2006. The appropriate species of turf grass which have a mixture possibility with wildflower are thought to be Kentucky bluegrass. Compared with Kentucky bluegrass, on the other hand, species such as Chrysanthemum leucanthemum L., Lotus corniculatus var. Japonicus Regel, Chrysanthemum zanadskii var. latilobum Maxim.) Kitamura and Lythrum anceps Makino have shown advantageous aspects of fast early growth pattern and highly weights of stem, leaf and root. Futhermore, these wild flowers were in harmony and no overlap on flower color, flowering periods and flowering longevity, and highly preference by Korean native goats. For the establishment of wildflower pasture in Korea, therefore, it is important to select the appropriate species of turf glasses, which have a weak competition against wild flowers, and then to make mixture combination of those turf glasses with the various wild flowers which have a strong competition against turf glasses but have a different anthesis characteristics among themselves.

Study on the Growth Characteristics, Botanical Composition and Fauna Distribution of Wildflower Pasture (야생화 도입 초지의 생육특성, 식생비율 및 동물상에 관한 연구)

  • 김득수;이인덕;이형석
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.21 no.4
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    • pp.233-246
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    • 2001
  • The purpose of this study was to suggest the possibility of utilizing the wildflower pasture for promoting public interest. Growth characteristics, botanical composition, fauna distribution on wildflower pastures were observed. The experimental design included two treatments: native wildflower pasture(NWP, turf grasses 6 species + native wildflower 11 species) and introduced wildflower pasture(lWP, turf grasses 6 species + introduced wildflower 9 species). The field trials were carried out on the experimental pasture plots at Chungnam National University from 1997 to 2000. The results obtained are as follows: 1. The flowering of wildflower was maintained continuously from May to September, and the colors of wildflowers; varied seasonally during this period. With native flowers, however, Hemerocallis fulva, Belamcanda chinenis and Aster koraiensisi showed problems in lately germination and early establishment. Meanwhile, Introduced wildflower showed not only excellent germination and early establishment compared to native flowers species but also maintained brighter colors. But Coreopsis tinctoria, Achillea mi/lefolium and Rudbeckia bicolor had colonized at a higher height or possessed stronger rhizome. 2. The appropriate species of turf grass which maintained continuous seasonal distribution are thought to be tall fescue, perennial ryegrass. Kentucky bluegrass in NWP and IWP. 3. Botanical composition of wild flower in NWP was arranged in the order of Achillea sibirica > Lotus corniculatus var. Japonicus > Dianthus chinensis > Plantago asiatica > Taraxacum pla~ycarpum > Viola mandshurica > Aster koraiensis > Vicia tetasperma > Lespedeza stipulacea > Hemerocallis fulva, respectively. The highest seasonal distribution of native wildflower, Achillea sibirica was in spring and summer, Lotus corniculatus var. Japonicus was in autumn. Botanical composition of wild flower in IWP was arranged in the order of Achillea millefolium Coreopsis tinctoria > Silene armeria > Coreopsis lanceolata > Rudbeckia bicolor > Sanguisorba oficinalis > Centaurea cyanus > Chrysanthemum leucanthemum > Dianthus petraeus, respectively. The highest seasonal distribution of introduced wildflower, Silene armeria was in spring, Achillea millefolium was in summer, and Coreopsis tinctoria was in autumn.

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On the Accumulation of Minerals with the Plant Species in a Reclaimed Land (干拓地 植物의 無機營養素 蓄積에 對하여)

  • Min, Byeong Mee
    • The Korean Journal of Ecology
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    • v.13 no.1
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    • pp.9-18
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    • 1990
  • For reaserching the factors of plants micro-distribution, accumulation of 5 minerals-total-nitrogen, phosphorus, potassium, sodium and calcium-for 19 plant species was investigated in reclaimed land, in western coast of Korea, In the five minerals, sodium contents were quite different among the species. Plant species were divided into 4 groups based on the sodium accumulation and accumulation site in plant tissue: Na accumultion type above-ground part>below-ground part : Triglochin maritimum, Chenopodium virgatum, Atriplex subcordata, Salicornia herbacea, Suaeda japonica, suaeda asparagoides, Limonium tetragonum, Aster tripolium, Artemisia scoparia, Sonchus brachyotus above-ground partbelow-ground part : Zoysia sinica, amagrostis epigeiosa bove-ground part

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Studios on the Host Range of Cucumber Mosaic Virus in Korea (한국에서의 오이모자익 바이러스의 기주범위에 관한 연구)

  • Chung B. J.;Park H. C.;Lee S. H.
    • Korean journal of applied entomology
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    • v.14 no.4 s.25
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    • pp.185-192
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    • 1975
  • Various plant species, as many as 145 species in 43 families, were tested for susceptibility to the ordinary strain of the cucumber nosaic virus for two years from 1973 to 1974. Inoculations were made by mechanical method using carborundum. Plants in 71 species belonging to 27 families were infected. Of these species, systemic mosaic developed on the new leaves of plants in 57 species belonging to 24 families. Twenty-four species of plants, previously not reported as hosts of the CMV, were found to be infected in this experiment. These are Stellaria aquatica, Achyrauthes japonica, Agerratum houstonianum, Centipeda minima, Gillardia pulchella, Henisteptalyrate, Ixeris dentata, Saussurea uchiyamana, Brassica campestris, Lepidiumapetalum, Lobelia chinensis, Chenopodium bryoniaefolium, Carex neofilipes, Acalypha austalis, Amphicarpaea edgeworthii, Lotus corniculatus var japonicus, Phaseolus angularis, Sedum aizoom var heterodontum, Mosla punctulata, Perilla frutescens var japonica, Teucrium japonicum,. Linum usitatissimum, Mazus japonicus, Verbena hybrida. Twenty-three species reported to be susceptible by previous workers, but negative results were obtained in our experiment with Allium cepa, Celosia cristat, Daucus carota var. sativa, Artemisia asiatica, Callistenphus chinensis, Erigeron canadensis, Helianthusannuus, Tagetes eracta, Impatiens balsamina, Raphanus sativus, Ipomea batatas, Glycine max, Phaseolus vulgaris, Lilium longifolium, Papaver gomniferum, Sorghum vulgare, Triticum aestivum, Zea mays, Rumex coreanus, Potulaca grandiflora.

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A Study on Selection of Wild plants for the Rooftop Revegetation (옥상녹화를 위한 몇몇 야생초본류 선정에 관한 연구)

  • Moon, Seok Ki;Lee, Eun Yeob;Guak, Moon-Ki
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.5 no.3
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    • pp.31-39
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    • 2002
  • The main purpose of this study is to select the appropriate wild plants on the rooftop. For the purpose of the experiments, 14 wild plants(12 korean native wild plants and 2 naturalized wild plants) were chosen. As the results of the experiments, the wild plants growing on the culture soil(perlite) Among the 14 kinds of wild plants, such as Chrysanthemum boreale, Taraxacum mongolicum, Aster Koraiensis, Aster yomena, Oenothera odorata, Oenothera lamarckiana, Patrinia scabiosaefolia showed good effects on growth of above ground parts. Therefore, these plants will effective for the rooftop revegation. Callistephus chinensis and Lotus corniculatus var. Japonicus showed good height growth, wherase covering rate was worst. Chrysanthemum boreale, Platycodon grandiflorum, Patrinia scabiosaefolia were plant height, wherase covering rate was not good. As the results of the experiments, the wild plants growing on the culture soil(vermiculite) Taraxacum mongolicum, Aster Koraiensis, Oenothera lamarckiana, Aster yomena showed good effects on growth of above ground parts. Consequently, korean native wild plants such as Taraxacum mongolicum, Aster Koraiensis, Aster yomena and naturalized wild plants such as Oenothera odorata, Oenothera lamarckiana were effective wild plants for rooftop revegetation.

Optimal Amount of Seeding and Wild Herbaceous Plants for the Rooftop Revegetation (옥상녹화용 야생초본류와 적정 파종량에 관한 연구)

  • Lee Eun-Yeob;Shin Byung-Chuel;Jo Tae-Dong
    • Journal of Environmental Science International
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    • v.13 no.12
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    • pp.1009-1013
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    • 2004
  • The purpose of this study is to select the appropriate wild herbaceous plants on the rooftop. For the purpose of the experiments, 14 wild herbaceous plants were chosen. As the results of the experiments, the wild herbaceous plants growing on the culture soil(perlite) Among the 14 kinds of wild herbaceous plants, such as Chrysanthemum boreale, Taraxacum mongolicum, Aster Koraiensis, Aster yomena, Oenothera odorata, Oenothera lamarckiana, Patrinia scabiosaefolia showed good effects on growth of above ground parts. Therefore, these plants will effective for the rooftop revegetation. Callistephus chinensis and Lotus corniculatus var. Japonicus showed good height growth, wherase covering rate was worst. Chrysanthemum boreale, Platycodon grandiflorum, Patrinia scabiosaefolia were plant height, wherase covering rate was not good . For the expected number of seedings more than 3,000 per square meter, many seedings got withered to death while the survivors were suppressed to grow slow in the early stage due to the densityproblem.

The Ecological Vegetation by the Neutralizing Treatment Techniques of the Acid Sulfate Soil (특이산성토의 중화처리기법에 따른 생태적 녹화)

  • Cho, Sung-Rok;Kim, Jae-Hwan
    • Journal of the Korean Society of Environmental Restoration Technology
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    • v.22 no.1
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    • pp.47-59
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    • 2019
  • This study was composed of four treatments [no treatment, phosphate + limestone layer treatment, phosphate + sodium bicarbonate + cement layer treatment, and phosphate + sodium bicarbonate + limestone layer treatment] for figuring out vegetation effects on the acid drainage slope. Treated acid neutralizing techniques were effective for neutralizing acidity and vegetative growth in order of [first: phosphate + sodium bicarbonate + limestone layer treatment, second: phosphate + sodium bicarbonate+cement layer treatment, third: phosphate + limestone layer treatment and fourth: no treatment] on the acid drainage slope. We found out that sodium bicarbonate treatment was additory effect on neutralizing acidity and increasing vegetaive growth besides phosphate and neutralizing layer treatments. In neutralizing layer treatments, Limestone layer was more effective for vegetation and acidity compared to cement layer treatment. Cement layer showed negative initial vegetative growth probably due to high soil hardness and toxicity in spite of acid neutralizing effect. Concerning plants growth characteristics, The surface coverage rates of herbaceous plants, namely as Lotus corniculatus var. japonicus and Coreopsis drummondii L were high in the phosphate + sodium bicarbonate + limestone layer treatment while Festuca arundinacea was high in the phosphate + sodium bicarbonate + cement layer treatment. We also figured out that soil acidity affected more on root than top vegetative growth.