• 제목/요약/키워드: plant growth promoting substance

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Identification of FM001 as Plant Growth-Promoting Substance from Acremonium strictum MJN1 Culture

  • JUNG, JAE-HAN;DONG-MIN SHIN;WOO-CHUL BAE;SOON-KWANG HONG;JOO-WON SUH;SANGHO KOO;BYEONG-CHUL JEONG
    • Journal of Microbiology and Biotechnology
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    • 제12권2호
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    • pp.327-330
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    • 2002
  • A plant growth-promoting substance, FM001, was isolated from the culture broth of Acremonium strictum MJN1. The purification steps included solvent extraction, adsorption chromatography using Diaion HP20, TLC on silica, and HLPC using a C-18 column. The purified FM001 enhanced rice seedling growth by $11.1\%\;and\;34.0\%$ of the dried weight of the shoots and roots, and also radish growth by $26.5\%\;and\;23.7\%$ of the top length and dried weight. FM001 also significantly promoted the growth of red pepper by increasing $32.7\%$ of fruit weight and $11.3\%$ as regards the height. FM001 consisted of C, H, O, N, and S, and its molecular weight was determined to be 537.78 Da. The structure of FM001 resembled brassinosteriods, and it would appear to have great potential as an effective bio-fertilizer.

생물방제능과 식물성장촉진능을 동시에 가지는 Bacillus licheniformis K11의 non-siderophore 항진균 물질 및 cellulase의 생산조건 확인 (Confirmation of Non-Siderophore Antifugal Substance and Cellulase from Bacillus lichemiformis Kll Containing Antagonistic Ability and Plant Growth Promoting Activity)

  • 우상민;김상달
    • 생명과학회지
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    • 제17권7호통권87호
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    • pp.983-989
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    • 2007
  • Auxin, siderophore, 그리고 cellulase를 동시에 생산하는 생물방제균주 B. licheniformis Kll을 식물병원성진균을 대상으로 균사 성장억제능을 확인결과 6종의 식물병원성 진균에서 균사체 성장억제능을 확인하였으며, 그 중에서 토마토 시들음병을 유발하는 F. oxysporum(KACC 40037)에 가장 강력한 억제능을 나타내었다. 그리고 본 균주가 생산하는 항진균성 siderophore이외에 세포벽이 cellulose로 구성된 P. capsici의 cell wall을 분해하는 cellulase를 생산하는 것을 추가적으로 확인하였다. 뿐만아니라 B. licheniformis Kll은 nutrient broth(pH 8.0), $30{\circ}C$에서 96시간 배양시 토마토 시들음병에 대한 항진균 활성이 가장 높았고, 이는 cellulase의 활성과 sideropore의 최대 생산조건과는 상이하였다. 또한 탄소원과 질소원으로 starch와 urea를 각각 첨가시 항진균성 활성이 가장 높았고, 이 역시는 cellulase의 활성과 항진균성 siderophore의 최대 생산조건과 일치하지 않았다. 그리하여 본균주 B. licheniformis Kll은 식물성장촉진 물질은 auxin, 항진균성 siderophore와 cellulase를 생산함과 동시에 또 다른 강력한 항진균성 물질을 생산하는 것을 추가로 확인하였다.

Enhancement of Biocontrol Activity of Serratia plymuthica A21 -4 Toward Phytophthora Blight of Pepper by Amendment of Nutritional Condition

  • Shen, Shun-Shan;Kim, Chang-Guk;Park, Chang-Seuk
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.96.1-96
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    • 2003
  • Serratia plymuthim A21-4 strongly inhibits the mycelial growth, zoospore formation, and cystospore germination of Phytophthor spp and Pythium species. The bacterial isolate produced antifungal substance and chitinase. The bacteria also enhanced to plant growth remarkably in low nutritional condition. The application of cell suspension of A21-4 to pepper seedlings in greenhouse experiments and soil drenching in farmer's field was proved successfully to control the phythophthora blight of pepper. For the effective control, however, relatively high density of cell number(10$\^$9/cfu/$m\ell$) is required. Density effect was similar in plant growth promoting activity of A21-4. Though this investigation we improved the problem with changes of culture condition of bacteria and some nutritional amendment.

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Plant growth promoting rhizobacteria that decrease chromium toBicity in Brassica Juncec

  • M. Rajkumar;Lee, Kui-Jae;Lee, Wang-Hyu;R. Nagendran
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.105.2-105
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    • 2003
  • The aim of the present study was to assess the importance of siderophore producing rhizobacteria on the growth of Brassica juncea under chromium stress. Pseudomonas sp. (A4) produced an iron chelating substance siderophores in iron deficient medium. Under chromium stress condition Pseudomenas sp. (A4) markedly increased the root and shoot length and also biomass of Brassica juncea as compared to Pseudomonas sp. (A3). This plant growth promotion has been related to the microbial production of siderophores.

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Plant growth promoting rhizobacteria that decrease chromium toxicity in Brassica juncea

  • M. Rajkumar;Lee, Kui-Jae;Lee, Wang-Hyu;R. Nagendran
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2003년도 제10차 국제학술회의 및 추계정기 학술발표회
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    • pp.14-14
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    • 2003
  • The aim of the present study isto assess the importance of siderophore producing rhizosphere bacteria on the growth of Brassica junceaunder chromium stress. Pseudomonassp. (A4) produced an iron chelating substance siderophores in iron deficient medium. Under chromium stress condition Pseudomonassp. (A4) markedly increased the root and shoot length and also biomass of Brassica juncea as compared to Pseudomonas sp. (A3). This plant growth promotion has been related to the microbial production of siderophore.

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Plant growth promoting rhizobacteria that decrease chromium toxicity in Brassica juncea

  • M. Rajkumar;Lee, Kui-Jae;Lee, Wang-Hyu;R. Nagendran
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2003년도 심포지엄
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    • pp.20-29
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    • 2003
  • The aim of the present study isto assess the importance of siderophore producing rhizosphere bacteria on the growth of Brassica junceaunder chromium stress. Pseudomonassp. (A4) produced an iron chelating substance siderophores in iron deficient medium. under chromium stress condition Pseudomonassp. (A4) markedly increased the root and shoot length and also biomass of Brassica juncea as compared to Pseudomonas sp. (A3). This plant growth promotion has been related to the microbial production of siderophore.

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Plant growth promoting rhizobacteria that decrease chromium toxicity in Brassica juncea

  • M. Rajkumar;Lee, Kui-Jae;Park, Jun-Sik;Park, In-Suk;Lee, Wang-Hui
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2003년도 제10차 국제학술회의 및 추계정기 학술발표회
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    • pp.45-45
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    • 2003
  • The aim of the present study was to assess the importance of siderophore producing rhizobacteria on the growth of Brassica juncea under chromium stress. Pseudomonas sp. (A4) produced an iron chelating substance siderophores in iron deficient medium. Under chromium stress condition Pseudomonassp. (A4) markedly increased the root and shoot length and also biomass of Brassica juncea as compared to Pseudomonas sp. (A3). This plantgrowth promotion has been related to the microbial production of siderophore.

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들잔디 갈색퍼짐병의 생물학적 방제를 위한 길항 세균의 분리와 동정 (Isolation and Identification of Antagonistic Bacteria for Biological Control of Large Patch Disease of Zoysiagrass Caused by Rhizoctonia solani AG2-2 (IV))

  • 송치헌;;장태현;이용세
    • 아시안잔디학회지
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    • 제26권1호
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    • pp.8-16
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    • 2012
  • 한국 들잔디에 발생하는 Rhizoctonia solani에 의한 라지패치를 생물학적으로 방제하기위해 일반토양에서 길항미생물을 분리하여 in vitro와 in vivo에서 길항효과 및 병 발생억제효과를 검정하였다. 토양에서 분리한 216개 균주 중 15개 균주가 R. solani AG2-2 (IV)의 균사생장을 70%이상 억제하였으며, 온실실험 결과 11개 균주는 잔디의 생장을 촉진시켰으며, 병 발생 억제효과가 있었다. 분리한 길항미생물 중 H33 균주는 in vitro 및 in vivo에서 R. solani AG2-2 (IV)에 대한 길항효과가 다른 균주에 비해 높았으며, 공시한 17개 식물병원성 진균에 대해 길항효과가 높아 생물방제균으로 선발하였다. H33 균주를 ISP 배지에 배양한 후 배양적 특성 및 형태를 관찰한 결과 Streptomyces sp.로 동정되었으며, 16S rDNA를 분석한 결과 Streptomyces arenae와 99% 상동성을 보였다.

Pseudomonas koreensis에 의한 잡초제어활성물질인 HCN 생성과 이 균주의 식물성장 촉진 및 흰개미 살충 활성 (Production of HCN, Weed Control Substance, by Pseudomonas koreensis and its Plant Growth-Promoting and Termiticidal Activities)

  • 유지연;장은진;박수연;손홍주
    • 한국환경과학회지
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    • 제27권9호
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    • pp.771-780
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    • 2018
  • To develope a microbial weed control agent, HCN-producing bacteria were isolated, and their characteristics were investigated. A selected strain of WA15 was identified as Pseudomonas koreensis by morphological, cultural, biochemical and 16S rRNA gene analyses. The conditions for HCN production was investigated by a One-Variable-at-a-Time (OVT) method. The optimal HCN production conditions were tryptone 1%, glycine 0.06%, NaCl 1%, and an initial pH and temperature of 5.0 and $30^{\circ}C$, respectively. The major component for HCN production was glycine. Under optimal conditions, HCN production was about 3 times higher than that of the basal medium. The WA15 strain had physiological activities, such as indoleacetic acid that was associated with the elongation of plant roots and siderophore and ammonification inhibiting fungal growth, and produced hydrolytic enzymes, such as cellulase, pectinase and lipase. The strain was able to inhibit the growth of phytopathogenic fungi, such as Rhizoctonia solani, Botrytis cinerea and Fusarium oxysporum, by the synergistic action of volatile HCN and diffusible antimicrobial compounds. A microscopic observation of R. solani that was teated with the WA15 strain showed morphological abnormalities of fungal mycelia, which could explain the role of the antimicrobial metabolites that were produced by the WA15 strain. The volatile HCN produced by the WA15 strain was also found to have insecticidal activity against termites. Our results indicate that Pseudomonas koreensis WA15 can be applied as a microbial agent for weed control and also as a termite repellent. Furthermore, it could be applied as a microbial termiticidal agent to replace synthetic insecticides.

관상식물 삽목발근에 있어서 NAA, IBA 및 Ethychlozate의 발근촉진효과와 그 생리학적연구 (The Promotive Effect of NAA, IBA and Ethychlozate on Rooting Cuttings of Certain Ornamental Plants and Some Physiological Studies.)

  • 정해준;곽병화
    • 자연과학논문집
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    • 제1권
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    • pp.115-198
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    • 1987
  • The present studies were undertaken to elucidate the influence of auxins, auxin-like substance-ethychlozate ("Figaron"),and pH and sort of rooting media on rooted propagation of certainornamental woody plant cuttings, and to see possible changes in internal compositions characterizing after root-promoting treatment as the cutting stage proceeded. The experimental check-up srevealed and summarized as seen in the following;I. Effect of three different auxin treatments on rooting cuttings: 1) Promotive influence of auxin varied according to different concentration levels, hours of dipping treatment of the auxins, and kind of plants. The greatest effect was obtained for Forsythia ksreana with NAA and IBA, for Ligustrurn obtusifolium var. variegatum with NAA and ethychlozate, for Hydrangea macrophylla, Magnolia kobus, and Magnolia liliflora with NAA, lBA and ethychlozate also. The most effective level of the promotive agents was found 200mg/l for NAA, 1000mg/l for IBA, and 200mg/l for ethychlozate. For Weigela florida and Gardenia jasminoides, range of the most effective level was shown relatively wide spread. 2) NAA was more effective at its optimal level of the rooting agent than ethychiozate for Weigela florida, Viburnum awabuki, Forsythia koreana, Acer palmatum 'Nomura', Bouga invillea glabra, Elaeagnus umbellata, Prunus tomentosa, Ligustrum obtusifolium, Pyracantha coccinea, Cestrum noctu rnum, Hydrangea macrophylla, Codiaeum variegatum, Rhododen dron lateritium, and Ilex crenata var. macrophylla, and yet ethychlozate was found either as equally as effective or more so than NAA for Zebrina pendula, Hibiscus syriacus, Fatshedera lizei, Schefflera arboricola, Campsis grandiflo ra, Ixora chinensis, Euonymus japonica, and Magnolia liliflora. On the contrary, no the auxin effect was noted with Lagerstroemia indica, Trachelospermum asiaticum, and Syringa vulgaris. This probably indicates that these species are genetically different for the auxin response.II. Effect of different pH and sorts of cutting media on rooting cuttings: 1) Bougainvillea showed best in rooting for the number and dry weight at pH 6.5, more with ethychlozate than NAA, while Ligustrum did at pH 5.0 more with NAA than ethychlozate. pH 4.0 medium resulted in the best rooting for Rhododendron with NAA, more than ethychlozate. 2) Use of cutting medium with peat: perlite: vermiculite = 1:1:1 showed to give the greatest rooting percent and dry weight, apart from considering the number of roots. This apparently meant the fact that cutting medium has more to do with root growth than root differentiation. Rhododendron yet showed results with cutting media that use of peat: perlite = 2:1 mixed is more effective on rooting than using peat alone.III. Effect of auxinic treatments on rooting cuttings and change in some cutting compositions: 1) Under the climatic conditions of July having temperature $26.3\pm$$2.4^{\circ}C$for cutting bed, new roots of Magnolia started to show up generally 20 days after the cutting was made, whereas Cestrum did much earlier than that, namely 14 days after. 2) Although total carbohydrate content of Magnolia cuttings showed no marked change without auxin treatment, it did so with the treatment, especially 30 days after the start of cutting. Cestrum cuttings demonstrated a gradual in crease in total carbohydrate content as rooting took place, and the content became reduced more with auxin than with out, just about when rooting proceeded to 14 days after the start of cutting. 3) Magnolia generally showed an increase in total nitrogen content as rooting proceeded more, and Cestrum showed a decrease in total nitrogen of cuttings. The auxin treatment exhibited no pertinent relation with change in plant nitro gen when rooting is promoted with auxin treatment. 4) An abrupt drop of total sugar and reducing sugar was noticed as Magnolia rooting started, and this reduction was parti cularly outstanding with auxin treatment. Starch content also was decreased in the later stage of cutting with auxin treatment, and was rather increased without auxin. Although sugar content soon increased as cutting started with auxin treatment in the case of Cestrum, it became reduced after rooting took place. 5) Total phenol content increased with rooting, and this was especially true when rooting started. This increase was reversed somehow regardless of auxin treatment. A decrease in phenol of Magnolia was found more striking with auxin than without in the later stage of the cutting period. 6)Avena coleoptile test for auxin-like substances presented the physiologically active factor is more in easy-to-root Magnolia liliflora than hard-to-root Magnolia kobus, and the activity of auxin-like substances was much increased with auxin treatment. The increase in the growth promoting substances was markedly pronounced when rooting just started. The active growth substances decreased in the later stage of cutting, and certain inhibitory substances started appearing. Cestrum also showed physiologically similar growth promoting substances accompanying auxin-like active substances if auxin is treated, and some strong inhibitory substances seemed to appear in the later stage of cutting. 7) Mung-bean-rooting test indicated biologically that endogenous growth substances in Magnolia all promoted mung-bean rooting, and activity of the growth substances apparently stimulated mung-bean rooting with auxin more than without. Here auxin treatment seemed to give a rise to an increased activity of endogenous growth substances in cuttings. This activity was found much greater with either NAA or IBA than ethychlozate, and showed its peak of the activity when rooting first started taking place. Certain inhibitory substances for Avena coleoptile growth strongly promoted mung-bean rooting, and it was also much like in the case of Cestrum.

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