• 제목/요약/키워드: Siderophore production

검색결과 107건 처리시간 0.026초

식물병원성 진균을 억제하는 근권세균의 항진균능과 식물생장촉진능 (Antifungal Activity and Plant Growth Promotion by Rhizobacteria Inhibiting Growth of Plant Pathogenic Fungi)

  • 정택경;김지현;송홍규
    • 미생물학회지
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    • 제48권1호
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    • pp.16-21
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    • 2012
  • 여러 식물의 근권에서 세균 균주들을 분리하여 이들의 항진균성 물질 생성능을 조사하였다. 분리균주 중 Fusarium oxysproum을 포함한 5가지 주요 식물병원성 진균에 대한 생장저해가 우수한 7개 균주를 16S rRNA 유전자 염기서열로 동정하였다. 이들 중 Paenibacillus peoriae RhAn32, Pseudomonas otitidis TK1과 Bacillus cereus TK2가 가장 넓은 생장 저해범위를 나타내었으며 항진균성 물질 중 siderophore 생성능은 P. otitidis TK1이 3.21 mM/ml로 가장 높았고 HCN은 Pseudomonas koreensis Rh2와 Rh7 균주만이 생성하였으며 Brevibacterium frigoritolerans EnA9와 P. peoriae RhAn32는 각각 1558.9와 $1436.7{\mu}M$ glucose/min/mg protein의 높은 chitinase 활성을 나타내었다. P. otitidis TK1과 P. peoriae RhAn32의 항진균능을 진균과의 공동배양을 통해 정량분석한 결과 세 종류의 Fusarium oxysproum의 생장을 유의성 있게 저해하였다. P. otitidis TK1은 식물생장을 촉진하는 호르몬인 auxin의 생성능도 가장 높았는데 이 균주를 4주 자란 토마토 유묘에 F. oxysporum f. sp. lycopersici와 동시에 접종하여 8주간 재배하였을 때 줄기와 뿌리 길이 및 습윤 중량이 비접종 대조군에 비해 각각 45.7, 64.9와 118%로 유의성 있게 증가하였다. 따라서 이 균주들은 유기합성농약을 대체하면서 식물생장을 촉진하는 미생물제로서의 적용이 가능할 것으로 기대된다.

잔디 근권에서 분리된 Actinomycetes균주의 생리학적 특성 (Physiological Characteristics of Actinomycetes Isolated from Turfgrass Rhizosphere)

  • 이정한;민규영;심규열;전창욱;곽연식
    • Weed & Turfgrass Science
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    • 제4권4호
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    • pp.348-359
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    • 2015
  • 방선균을 대상으로 생물적 방제 균주를 선발한 결과 총 248개의 균주가 분리되었다. 분리된 균주의 셀룰로스 분해능력은 S11 균주와 S4 균주의 투명환의 크기는 약 1.2mm로 셀룰로스 분해 능력이 가장 좋은 것으로 나타났다. 키틴분해 능력을 검정한 결과 S12 균주의 투명환의 크기가 2.1mm로 가장 키틴분해 능력이 우수한 것으로 나타났다. Skim milk agar 배지를 이용하여 15개 균주의 단백질 분해 능력을 검정한 결과 S2 균주가 접종된 배지의 투명환의 크기가 7.5mm로 단백질 분해 능력 가장 우수한 것으로 나타났다. Chrome azurol S agar 배지를 이용하여 병원균에 대한 중요한 항균 기작으로 알려져 있는 siderophore 생성정도를 조사한 결과 S1 균주의 투명환의 크기가 0.6mm으로 가장 높게 나타났다. 선발된 4개 균주가 분비하는 휘발성 물질의 달라스팟과 라지패취 병원균에 대한 항균활성 능력 검정한 결과 달라스팟의 경우 S8 균주가 94.8% 억제하는 것으로 나타났다. Rhizoctonia solani AG2-2균사생장에 미치는 영향은 S8 균주가 72.9%로 가장 높게 억제하였으며 다음으로 S2 균주가 62.1%로 S5 균주가 37.8%로 S12 균주가 27% 억제하는 것으로 나타났다.

Pseudomonas syringae pv. tabaci 에서 LuxR-type 전사조절자인 PsyR에 의한 병원성 유전자들의 조절 (A LuxR-type Transcriptional Regulator, PsyR, Coordinates Regulation of Pathogenesis-related Genes in Pseudomonas syringae pv. tabaci)

  • 최연희;이준승;윤소라;백형석
    • 생명과학회지
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    • 제25권2호
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    • pp.136-150
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    • 2015
  • Pseudomonas syringae pv. tabaci 11528은 담배를 숙주로 하여 wildfire disease를 일으키는 식물 병원성 세균이다. P. syringae pv. tabaci psyR deletion mutant를 이용하여 swarming motility, tabtoxin 생산능, siderophore 생산능, AHL 생산능 등의 phenotypic test를 수행하였다. psyR deletion mutant는 wild-type 균주보다 swarming motility가 증가하였고, tabtoxin 생산 또한 증가하였다. 하지만 siderophore와 AHL 생산능은 감소하였고 virulence 또한 지연되었다. 이러한 결과로 PsyR이 QS regulator로 작용한다는 사실과 더불어 병원성 유전자의 조절에도 관여한다는 것을 확인하였다. PsyR이 각각의 병원성 유전자의 발현을 조절하는 regulator들에게 미치는 영향을 전사단계에서 확인하기 위해 fur, gacA, psyI, prhI, prhA, hrpR, hrpA 유전자들을 정량적 real-time PCR (qRT-PCR) 방법으로 확인하였다. 또한 PsyR에 의한 병원성 유전자 조절이 DNA상에 직접적으로 결합하여 일어나는 것인지 아니면 다른 경로를 통해 간접적으로 일어나는 것인지를 확인할 필요가 있어 정제한 PsyR 단백질과 병원성 관련 유전자들의 upstream region 서열을 이용하여 electrophoretic mobility shift assay (EMSA)를 수행한 결과 본 연구에서 선정한 병원성 관련 유전자들이 PsyR에 의해 직접적으로 조절되지는 않는다는 사실을 밝혔다.

미네랄 가용화능을 갖는 Acinetobacter sp. DDP346의 생화학적 및 배양학적 특성 (Biochemical and cultural characteristics of mineral-solubilizing Acinetobacter sp. DDP346)

  • 김희숙;이송민;오가윤;김지윤;이광희;이상현;장정수
    • Journal of Applied Biological Chemistry
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    • 제64권4호
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    • pp.333-341
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    • 2021
  • 본 연구는 근권 토양 및 뿌리에 존재하는 근권 미생물 중 미생물 제제로 적합한 균주를 선별하기 위해서 미네랄 가용화능, 10종의 식물 병원성 곰팡이에 대한 항진균 활성 및 식물 생장 촉진 활성을 평가하였다. 결과적으로 불용성 인산, 탄산칼슘, 규소 및 아연 가용화능과 질소고정능, siderophore, indole-3-acetic acid와 aminocyclopropane-1-carboxylate deaminase 생성능 및 7종의 식물 병원성 곰팡이에 대해 항진균 활성을 갖는 DDP346을 선별하였다. 선별된 DDP346은 Acinetobacter pittii DSM21653 (NR_117621.1)와 99.9% 이상의 높은 상동성을 보였으며, 16S rRNA 염기서열을 바탕으로 계통도를 분석한 결과에서도 Acinetobacter pittii와 높은 유연관계를 나타내었다. DDP346의 생장 조건은 온도(10-40 ℃), pH (5-11) 염농도(0-5%) 범위로 확인하였다. 또한 pH 변화와 가용화된 인산 함량 간에 음의 상관계수(r2= -0.913, p <0.01)를 나타내는 것을 확인하였는데, 이는 배양 중에 생성되는 유기산에 의한 것으로 추정된다. 결과적으로 미네랄 가용화능, 식물 병원성 곰팡이에 대한 항진균 활성 및 식물 생장 촉진 활성 평가를 통해 Acinetobacter sp. DDP346을 다목적 미생물 제제로써 활용 가능성을 제시한다.

인삼종자로부터 분리된 내생균의 동정과 식물생장 촉진 관련 활성의 평가 (Identification of Endophytic Bacteria in Panax ginseng Seeds and Their Potential for Plant Growth Promotion)

  • 엄유리;김보라;정진주;정찬문;이이
    • 한국약용작물학회지
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    • 제22권4호
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    • pp.306-312
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    • 2014
  • Endophytes are microorganisms that live in the internal tissues of plants without harming the host plants. In this symbiotic relationship, the host plants provide nutrients and shelter to the endophytes, in turn, endophytes can promote the growth of host plants and act as a biological control agents against plant pathogens. Plant-microbe interactions like this are noted for natural methods for sustainable agriculture and environmental conservation. However, in spite of the infinite potential, there are only a few reports on the endophytes present in ginseng. In this study, we isolated and identified the endophytes from Panax ginseng seeds and evaluated the biological activities (IAA production ability, nitrogen fixation ability, phosphate solubilization capacity, siderophore production ability, and antifungal activities) of the endophyte isolates. Eight different endophytes were identified by 16S rRNA sequencing. Most of the endophytes have antibiotic and plant growth promoting (PGP) activities. Particularly, PgSEB5-37E have the highest antibiotic activity, both PgSEB5-37B and PgSEB5-37H have high PGP traits such as an abilities to produce IAA, solubilize phosphate and fix nitrogen. These results indicated that the endophytes from P. ginseng seeds may have applicable value to many industries. In order to use the isolated endophytes, quantitative analysis and field tests are needed to be performed.

Rhizobium sp. RH84에 의한 간척지 환경에서의 헤어리베치 생육촉진 (Hairy Vetch Growth-Promoting Rhizobium sp. RH84 and Application to Reclaimed Land)

  • 장종옥;권미경;박동진;성창근;김창진
    • Journal of Applied Biological Chemistry
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    • 제56권4호
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    • pp.235-239
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    • 2013
  • 녹비 작물인 헤어리베치의 간척지 적용을 위해 본 연구에서는 헤어리베치의 뿌리혹으로부터 분리 된 Rhizobium sp. RH84의 특성을 파악하고 이를 직접 간척지에 적용하여 헤어리베치의 생산량 증대에 이용하고자 하였다. 전보에서 분리 한 RH84의 형태학적, 생리학적 특성 및 식물생육촉진(PGP) 활성을 확인하기 위하여 옥신, 질소 고정능, 인산 가용능, sideropore 생산능을 분석하였다. 그 결과, RH84는 식물호르몬인 IAA를 $9.03{\mu}g/mL$ 생산하였고, 질소 고정 활성을 가진 균주이었다. 또한 염 농도가 0.3%인 간척지 토양에서의 헤어리베치 생장에 영향을 주며, 간척지 포장에서 약 56%의 헤어리베치 수확량을 증가시켰다. 따라서 Rhizobium sp. RH84 균주는 염 농도가 높은 간척지에서 녹비작물인 헤어리베치의 생장을 촉진시키며 수확량을 증가시키기 위한 균주임을 확인하였다.

Factors Relating to Induced Systemic Resistance in Watermelon by Plant Growth-Promoting Pseudomonas spp.

  • Lee, Yong-Hoon;Lee, Wang-Hyu;Lee, Du-Ku;Shim, Hyeong-Kwon
    • The Plant Pathology Journal
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    • 제17권3호
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    • pp.174-179
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    • 2001
  • The plant growth-promoting Pseudomonas strains, WR8-3 (Pseudomonas fluorescens), WR9-11 (Pseudomonas sp.) and WR9-16 (P.putida), which induced resistance systematically in watermelon to gummy stem rot were investigated on their induced systemic resistance(ISR)-related characteristics. The pyoverdine production was repressed in the standard succinate medium by increasing the concentration of $\textrm{FeCL}_3$. But the iron-binding ability on chrome azurol S agar media (CAS) was observed only in the strains, WR8-3 and WR9-16. When the two strains were mutated, the resulting iron-binding siderophore-negative mutants, WR8-3m and WR 9-16m, failed to promote the growth of watermelon and to induce resistance. The strains, WR8-3 and WR 9-16, slightly inhibited the growth of Didymella bryoniae at a low concentration of $\textrm{FeCL}_3$ on Kong's medium B, but not to exert control dffect. The strain WR9-11 showed antagonism in the concentration of $\textrm{FeCL}_3$ from 0 to $1,000\mu\textrm{M}$. When the crude lipoplysaccharide of each strain was treated in the rhizosphere of watermelon, mean lesion area was similar to that of the untreated control. The strains, WR9-11 and WR9-16 produced some level of hydrogen cyanide (HCN). Salicylic acid production was not detected in all of the strains.

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Isolation and Identification of Alkali-tolerant Bacteria from Near-Shore Soils in Dokdo Island

  • Namirimu, Teddy;Kim, Jinnam;Zo, Young-Gun
    • 한국미생물·생명공학회지
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    • 제47권1호
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    • pp.105-115
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    • 2019
  • Saline or alkaline condition in soil inhibits growth of most crop plants and limits crop yields in many parts of the world. Augmenting an alkaline soil with alkali-tolerant bacteria capable of promoting plant growth can be a promising approach in expanding fertile agricultural land. Near-shore environments of Dokdo Island, a remote island located in the middle of the East Sea, appear to have patches of seawater-influenced haloalkaline soil that is unsupportive for growth of conventional plants. To exploit metabolic capacities of alkali-tolerant bacteria for promoting plant growth in saline or alkaline soils, we isolated of alkali-tolerant bacteria from near-shore soil samples in Dokdo and investigated properties of the isolates. Alkali-tolerant bacteria were selectively cultivated by inoculating suspended and diluted soil samples on a plate medium adjusted to pH 10. Fifty colonies were identified based on their $GTG_5$-PCR genomic fingerprints and 16S rRNA gene sequences. Most isolates were affiliated to alkali-tolerant and/or halotolerant genera or species of the phyla Firmicutes (68%), Proteobacteria (30%) and Actinobacteria (2%). Unlike the typical soil bacterial flora in the island, alkali-tolerant isolates belonged to only certain taxa of terrestrial origin under the three phyla, which have traits of plant growth promoting activities including detoxification, phytohormone production, disease/pest control, nitrogen-fixation, phosphate solubilization or siderophore production. However, Firmicutes of marine origin generally dominated the alkali-tolerant community. Results of this study suggest that haloalkaline environments like Dokdo shore soils are important sources for plant growth promoting bacteria that can be employed in bio-augmentation of vegetation-poor alkaline soils.

Roles of Endophytic Fungi Isolated from Mangifera indica L. in Promoting Plant Growth

  • Kanyapat Sonsiam;Orlavanh Sonesouphap;Anyaporn Sangkaew;Pariyanuj Chulaka;Prakitsin Sihanonth;Chulee Yompakdee
    • Journal of Microbiology and Biotechnology
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    • 제34권9호
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    • pp.1857-1866
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    • 2024
  • Endophytic fungi have been shown to synthesize bioactive secondary metabolites, some of which promote plant growth through various mechanisms. In our previous study, endophytic fungi were isolated from mango trees (Mangifera indica L.). The present study examined fifty endophytic fungal isolates for mineral solubilization activity, ammonia production, and siderophore production. It was shown that these isolates could produce phytohormones indole-3-acetic acid and gibberellic acid, as well as inhibit plant pathogens, specifically Colletotrichum gloeosporioides and Lasiodiplodia theobromae. The results showed that all the isolated fungal endophytes exhibited various activities. Based on the findings, two fungal endophytes-Aureobasidium pullulans CY.OS 13 and Aspergillus tamarii CY.OS 144-were selected for dual inoculation in chili plants under pot-scale conditions to investigate their potential to improve growth-related traits such as seed germination, shoot and root length, biomass, and chlorophyll content. Seed treated with A. pullulans CY.OS 13 and/or A. tamarii CY.OS 144 showed a significant (p < 0.05) increase in seed germination and growth parameters of chili plants grown under pot-scale conditions. Particularly, chili plants whose seeds were injected with a combination of the two selected endophytic fungi showed the highest plant development traits. Therefore, the selected endophytic fungi have the potential to be used as biofertilizers, especially when combined. They could eventually replace chemical fertilizers because they are environmentally friendly, beneficial to humans, and can even promote sustainable agriculture.

Secondary Metabolites Production and Plant Growth Promotion by Pseudomonas chlororaphis and P. aurantiaca Strains Isolated from Cactus, Cotton, and Para Grass

  • Shahid, Izzah;Rizwan, Muhammad;Baig, Deeba Noreen;Saleem, Rahman Shahzaib;Malik, Kauser A.;Mehnaz, Samina
    • Journal of Microbiology and Biotechnology
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    • 제27권3호
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    • pp.480-491
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    • 2017
  • Fluorescent pseudomonads have been isolated from halophytes, mesophytes, and xerophytes of Pakistan. Among these, eight isolates, GS-1, GS-3, GS-4, GS-6, GS-7, FS-2 (cactus), ARS-38 (cotton), and RP-4 (para grass), showed antifungal activity and were selected for detailed study. Based on biochemical tests and 16S rRNA gene sequences, these were identified as strains of P. chlororaphis subsp. chlororaphis and aurantiaca. Secondary metabolites of these strains were analyzed by LC-MS. Phenazine-1-carboxylic acid (PCA), 2-hydroxy-phenazine, Cyclic Lipopeptide (white line-inducing principle (WLIP)), and lahorenoic acid A were detected in variable amounts in these strains. P. aurantiaca PB-St2 was used as a reference as it is known for the production of these compounds. The phzO and PCA genes were amplified to assure that production of these compounds is not an artifact. Indole acetic acid production was confirmed and quantified by HPLC. HCN and siderophore production by all strains was observed by plate assays. These strains did not solubilize phosphate, but five strains were positive for zinc solubilization. Wheat seedlings were inoculated with these strains to observe their effect on plant growth. P. aurantiaca strains PB-St2 and GS-6 and P. chlororaphis RP-4 significantly increased both root and shoot dry weights, as compared with uninoculated plants. However, P. aurantiaca strains FS-2 and ARS-38 significantly increased root and shoot dry weights, respectively. All strains except PB-St2 and ARS-38 significantly increased the root length. This is the first report of the isolation of P. aurantiaca from cotton and cactus, P. chlororaphis from para grass, WLIP and lahorenoic acid A production by P. chlororaphis, and zinc solubilization by P. chlororaphis and P. aurantiaca.