• Title/Summary/Keyword: In vivo antifungal activity

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Phytopathogenic Activities of Essential Oils and Their Main Compounds (식물오일과 그 성분들의 살균활성)

  • Choi, Won-Sik;Kim, Kwan-Young;Jang, Do-Yeon;Um, Dae-Yong;Kim, Tae-Jun;Jung, Bong-Jin
    • The Korean Journal of Pesticide Science
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    • v.10 no.3
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    • pp.201-209
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    • 2006
  • Antifungal activities of 43 different plant oils were evaluated against different phytopathogenic fungi. Thyme oil showed highest antifungal activity among the tested oils. The major of thyme oil were found to be thymol, carvacrol, bomeol, p-cymene and linalool. Thymol and carvacrol were found to be responsible for thyme's antifungal activity. The spore germination assay was conducted on Alternaria mail and Botrytis cinerea. Thymol and carvacrol strongly inhibited spore germination in the fungi test. In addition, thymol and carvacrol showed a curative effectiveness to gray mold disease on cucumber crop. The antifungal activities of alkylphenol and alkylaniline compounds, which has similar molecular structure to that of thymol or cavacrol, were also tested. It was found that alkylphenol compounds also show higher inhibition to spore germination. Thus, thymol, carvacrol and alkylphenol compounds can be used an potent antifungal agents.

Study on Antifungal Activity of Aloe arborescens M. for a Potential Bio-Pestcide (알로에(Aloe arborescens M.)의 항진균성 검정을 통한 생물농약 가능성 탐색)

  • Ko, Seong-Wook;So, In-Sup;Huh, Moo-Ryong
    • Journal of agriculture & life science
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    • v.43 no.3
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    • pp.35-44
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    • 2009
  • Antifungal activity reaction to Aloe peel and juice extracted by several solvents and concentrations against three plant pathogenic fungi as collectrichum gloeosporioides, Fusarium oxysporum, and F. solani were investigated. The Antifungal activity of Aloe extracts varied with the kinds of solvents. In case of C. gloesporioides and F. solani, it's the highest in water, second in methanol, and third in ethanol. It showed that Antifungal activity of Aloe peel and juice extracts based on concentration was much more excellent in juice extracts than peel extracts against C. gloeosporioides, F. solani. Effect of Antifungal against F. oxysporum by juice extracts did not appear at a concentration of $100{\mu}l/L$ and then shows 9.5% of inhibition rate at $100,000{\mu}l/L$ while against C. gloeosporioides it starts to react at $100{\mu}l/L$ and then reaches at 29.3% of the highest inhibition rate at a concentration of $100,000{\mu}l/L$ out of three plant pathogenic fungi. The effect of control efficacy against Fusarium wilt caused by F. oxysporum by juice extracts of foliar spray tends to increase and the more the concentration of juice extracts increases, the higher the effect of control efficacy against Fusarium wilt disease. Foliar spray at a concentration of 10g/L has a 62% of control efficacy compared with control treatment, which foliar spray of Aloe juice extracts can be the more effective method in order to prevent Fusarium wilt disease caused by F. oxysporum.

Antifungal Activity of Silver Salts of Keggin-Type Heteropolyacids Against Sporothrix spp.

  • Mathias, Luciana Da Silva;Almeida, Joao Carlos De Aquino;Passoni, Luis Cesar;Gossani, Cristiani Miranda David;Taveira, Gabriel Bonan;Gomes, Valdirene Moreira;Vieira-Da-Motta, Olney
    • Journal of Microbiology and Biotechnology
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    • v.30 no.4
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    • pp.540-551
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    • 2020
  • Sporotrichosis is a chronic and subacute mycosis causing epidemiological outbreaks involving sick cats and humans in southeastern Brazil. The systemic disease prevails in cats and in humans, with the symptoms restricted to the skin of immunocompetent individuals. Under these conditions, the prolonged treatment of animals and cases of recurrence justify the discovery of new treatments for sporotrichosis. This work addresses the antifungal activity of silver salts of Keggin-type heteropolyacid salts (Ag-HPA salts) such as Ag3[PW12O40], Ag6[SiW10V2O40], Ag4[SiW12O40] and Ag3[PMo12O40] and interactions with the antifungal drugs itraconazole (ITC), terbinafine (TBF) and amphotericin B (AMB) on the yeast and mycelia forms of Sporothrix spp. Sporothrix spp. yeast cells were susceptible to Ag-HPA salts at minimum inhibitory concentration (MIC) values ranging from 8 to 128 ㎍/ml. Interactions between Ag3[PW12O40] and Ag3[PMo12O40] with itraconazole and amphotericin B resulted in higher antifungal activity with a reduction in growth and melanization. Treated cells showed changes in cell membrane integrity, vacuolization, cytoplasm disorder, and membrane detachment. Promising antifungal activity for treating sporotrichosis was observed for the Ag-HPA salts Ag3[PMo12O40] and Ag3[PW12O40], which have a low cost, high yield and activity at low concentrations. However, further evaluation of in vivo tests is still required.

Purification and Characterization of a Novel Antifungal Protein from Paenibacillus macerans PM1 Antagonistic to Rice Blast Fungus, Pyricularia oryzae

  • Bae, Dong-Won;Kawk, Weon-Sik;Lee, Joon-Taek;Son, Dae-Young;Chun, Sung-Sik;Kim, Hee-Kyu
    • Journal of Microbiology and Biotechnology
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    • v.10 no.6
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    • pp.805-810
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    • 2000
  • An antifungal protein antagonistic to the rice blast fungus, Pyricularia oryzae was purified from Paenibacillus macerans PM-1 by ammonium sulfate fractionation, Q Sepharose Fast Flow column chromatography, Phenyl Sepharose CL-4B column chromatography and Superose 12 gen filtration. An apparent molecular mass of the purified antifungal protein was determined as 8 kDa by SDS-PAGE and 9 kDa by analytical gel filtration, respectively, suggesting that the purified protein is a monomer. The antifungal protein was stable at pH range from 7-12 and up to $100^{\circ}C$. The protein was also stable at 0.1-1% Tween 20 and Triton X-100. The N-terminal amino acid sequence of the antifungal protein was Thr-Glu-Leu-Pro-Leu-Gly-Ile-Val-Met-Asp-Lys-Tyr-Thr-Asp-Ala-Phe-Lys-Phe-Asp-Met-Phe. Comparison of the determined sequence with other peptide and DNA sequences did not reveal homology at all. Therefore, the purified antifungal protein was speculated to be a novel protein. The condidial germination in vitro of P. oryzae KJ301:93-39 by the purified protein ($5.9{\mu} g/ml$) was limited to $9{\pm}3.2%$ only, compared with $69{\pm}2.4%$ of the control. Ungerminated conidia were swollen at basa and mid cell by the purified protein. In vivo bioassay for inhibition of conidial germination of P. oryzae KJ 301, one of the most predominating racesin Korea. the purified protein ($5.9{\mu} g/ml$)strongly inhibited the conidial germination. The conidia, even though germinated, could not develop any further to produce appressoria efficiently.

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Antagonistic and Plant Growth Promoting Activity of Bacillus species Isolated from Brackish Environment

  • Kamala-Kannan, Seralathan;Lee, Kui-Jae;Oh, Byung-Taek
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2010.05a
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    • pp.6-6
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    • 2010
  • Bacteria of the Bacillus sp. are well known to possess antagonistic activity against numerous plant pathogens. In the present study, 11 Bacillus sp. were isolated from the brackish environment and assayed for antagonistic activity under in vitro and in vivo conditions. Among the 11 isolates tested, 9 isolates effectively inhibited the growth of various plant pathogens, namely Phytophthora capsici, Phytophthora citropthora, Phytophthora citricola, Phytophthora sojae, Colletotricum coccodes, Colletotricum gloeosporioides, Colletotricum acutatum, Rhizoctonia solani, Fusarium solani, Fusarium graminearum, Pyricularia sp. and Monilina sp. The effective isolates were further screened for Phytophthora blight suppression in Capsicum annuum L. under green house conditions. The isolate SB10 exhibited the maximum (72.2%) reduction in disease severity. The antifungal compounds from the isolate were isolated and characterized. The isolated compounds exhibited high thermo stability ($100^{\circ}C$ for 30 min). Matrix-Assisted Laser Desorption Ionization-Time of Flight investigation of the antifungal compounds revealed three lipopeptide complexes, the surfactins, the iturins, and the fengycins.

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A Synthesis of New 2-Iminothiazolines and Their Antifungal Activities (II) (새로운 2-이미노티아졸린 유도체의 합성과 항균활성 (II))

  • Nam, Kee-Dal;Choi, Gyung-Ja;Cho, Kwang-Yun;Hahn, Hoh-Gyu
    • Applied Biological Chemistry
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    • v.41 no.6
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    • pp.471-476
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    • 1998
  • A synthesis and the screening of new 2-iminothiazolines (IV) of which structures are modified based on a lead compound, thiazoline for development of new agrochemical fungicide were described. Bromination of acetoacetanilides (I) which were prepared by the reaction of diketene with anilines gave the corresponding ${\gamma}-bromoacetoactanilide\;(II)$. Treatment of II with N-phenyl-N'-methyl thiourea (III) afforded IV, structure of which was confirmed by various spectroscopic methods. Antifungal activity of the new IV was tested against six kinds of typical plant diseases (in vivo). The IV with aromatic substituents showed remarkable activity against the Pyricuraria oryzae at 250 ppm in primary screening. The candidates with control value over 90% in primary screening were selected and further tested for second screening at lower concentrations. The IV which has an electron-withdrawing substituent such as halogen, especially fluorine in aryl group showed a higher activity as compared to those with electron-donating group and meta substituent was for optimal position.

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Antifungal Activity of Decursinol Angelate Isolated from Angelica gigas Roots Against Puccinia recondita (당귀로부터 분리한 decursinol angelate의 밀 붉은녹병에 대한 항균활성)

  • Yoon, Mi-Young;Kim, Young-Sup;Choi, Gyung-Ja;Jang, Kyoung-Soo;Choi, Yong-Ho;Cha, Byeong-Jin;Kim, Jin-Cheol
    • Research in Plant Disease
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    • v.17 no.1
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    • pp.25-31
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    • 2011
  • Rust causes significant losses in the yield and quality of various crops. The development of new effective and environmentally benign agents against the pathogen is of great interest. In the course of searching a natural antifungal compound from medicinal plants, we found that the methanol extract of Angelica gigas roots had a potent control efficacy against wheat leaf rust (WLR) caused by Puccinia recondita. The antifungal substance was isolated from the methanol extract by silica gel column chromatography, alumina column chromatography and $C_{18}$ preparative HPLC. It was identified as decursinol angelate by EI-MS and $^1H$-NMR data. In in vivo test, decursinol angelate effectively suppressed the development of WLR and red pepper anthracnose (RPA) among the 6 plant diseases tested. In addition, the wettable powder-type formulation of ethyl acetate extract of A. gigas roots significantly suppressed the development of WLR. The crude extract containing decursinol angelate and the chemical appear to be a potential candidate for control of WLR. In addition, this is the first report on the in vivo antifungal activity of decursinol angelate against WLR as well as RPA.

Antifungal Activity of Benzoic Acid from Bacillus subtilis GDYA-1 against Fungal Phytopathogens (Bacillus subtilis GDYA-1로부터 분리한 benzoic acid의 식물병원성 곰팡이에 대한 항균활성)

  • Yoon, Mi-Young;Seo, Kook-Hwa;Lee, Sang-Heon;Choi, Gyung-Ja;Jang, Kyoung-Soo;Choi, Yong-Ho;Cha, Byeong-Jin;Kim, Jin-Cheol
    • Research in Plant Disease
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    • v.18 no.2
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    • pp.109-116
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    • 2012
  • A bacterial strain antagonistic to some fungal phytopathogens was isolated from the stem of a Persimmon tree in Yeongam, Korea. This bacterium was identified as Bacillus subtilis by 16S rRNA gene sequencing and designated as B. subtilis GDYA-1. In in vivo experiment, the fermentation broth exhibited antifungal activities against Magnaporthe oryzae on rice plants, Phytophthora infestans on tomato plants, and Puccinia recondita on wheat plants. We isolated one antifungal compound and its chemical structure was determined by mass and $^1H$-NMR spectral data. The antifungal substance was identified as benzoic acid. It inhibited mycelial growth of M. oryzae, Rhizoctonia solani, Sclerotinia sclerotiorum, and P. capsici with minimum inhibition concentration (MIC) values, ranging from 62.5 to 125 ${\mu}g/ml$. Moreover, the substance effectively suppressed Phytophthora blight of red pepper caused by P. capsici in a pot experiment. To the author's knowledge, this is the first report on the antifungal activity of benzoic acid against phytopathogenic fungi. Benzoic acid and B. subtilis GDYA-1 may contribute to environmental-friendly protect crops from phytopathogenic fungi.

Phenazine and 1-Undecene Producing Pseudomonas chlororaphis subsp. aurantiaca Strain KNU17Pc1 for Growth Promotion and Disease Suppression in Korean Maize Cultivars

  • Tagele, Setu Bazie;Lee, Hyun Gu;Kim, Sang Woo;Lee, Youn Su
    • Journal of Microbiology and Biotechnology
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    • v.29 no.1
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    • pp.66-78
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    • 2019
  • In this study, strain KNU17Pc1 was tested for its antifungal activity against Rhizoctonia solani AG-1(IA), which causes banded leaf and sheath blight (BLSB) of maize. KNU17Pc1 was tested further for its broad-spectrum antifungal activity and in vitro plant growth promoting (PGP) traits. In addition, the in vivo effects of KNU17Pc1 on reduction of BLSB severity and seedling growth promotion of two maize cultivars under greenhouse conditions were investigated. On the basis of multilocus sequence analysis (MLSA), KNU17Pc1 was confirmed as P. chlororaphis subsp. aurantiaca. The study revealed that KNU17Pc1 had strong in vitro antifungal activity and was effective toward all in vitro PGP traits except phosphate solubilization. In this study, for the first time, a strain of P. chlororaphis against Colletotrichum dematium, Colletotrichum gloeosporioides, Fusarium oxysporum f.sp. melonis, Fusarium subglutinans and Stemphylium lycopersici has been reported. Further biochemical studies showed that KNU17Pc1 was able to produce both types of phenazine derivatives, PCA and 2-OH-PCA. In addition, solid phase microextraction-gas chromatography-mass spectrometry (SPME-GC-MS) analysis identified 13 volatile organic compounds (VOCs) in the TSB culture of KNU17Pc1, 1-undecene being the most abundant volatile. Moreover, for the first time, Octamethylcyclotetrasiloxan (D4), dimethyl disulfide, 2-methyl-1,3-butadiene and 1-undecene were detected in P. chlororaphis. Furthermore, this study reported for the first time the effectiveness of P. chlororaphis to control BLSB of maize. Hence, further studies are necessary to test the effectiveness of KNU17Pc1 under different environmental conditions so that it can be exploited further for biocontrol and plant growth promotion.

Construction of a Recombinant Bacillus velezensis Strain as an Integrated Control Agent Against Plant Diseases and Insect Pests

  • Roh, Jong-Yul;Liu, Qin;Choi, Jae-Young;Wang, Yong;Shim, Hee-Jin;Xu, Hong Guang;Choi, Gyung-Ja;Kim, Jin-Cheol;Je, Yeon-Ho
    • Journal of Microbiology and Biotechnology
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    • v.19 no.10
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    • pp.1223-1229
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    • 2009
  • To construct a new recombinant strain of Bacillus velezensis that has antifungal and insecticidal activity via the expression of the insecticidal Bacillus thuringiensis crystal protein, a B. thuringiensis expression vector (pHT1K-1Ac) was generated that contained the B. thuringiensis cry1Ac gene under the control of its endogenous promoter in a minimal E. coli-B. thuringiensis shuttle vector (pHT1K). This vector was introduced into a B. velezensis isolate that showed high antifungal activities against several plant diseases, including rice blast (Magnaporthe grisea), rice sheath blight (Rhizotonia solani), tomato gray mold (Botrytis cinerea), tomato late blight (Phytophthora infestans), and wheat leaf rust (Puccinia recondita), by electroporation. The recombinant B. velezensis strain was confirmed by PCR using cry1Ac-specific primers. Additionally, the recombinant strain produced a protein approximately 130 kDa in size and parasporal inclusion bodies similar to B. thuringiensis. The in vivo antifungal activity assay demonstrated that the activity of the recombinant B. velezensis strain was maintained at the same level as that of wild-type B. velezensis. Furthermore, it exhibited high insecticidal activity against a lepidopteran pest, Plutella xylostella, although its activity was lower than that of a recombinant B. thuringiensis strain, whereas wild-type B. velezensis strain did not show any insecticidal activity. These results suggest that this recombinant B. velezensis strain can be used to control harmful insect pests and fungal diseases simultaneously in one crop.