• Title/Summary/Keyword: Conidial germination and sporulation

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Effects of Plant Extracts on Conidial Germination, Mycelial Growth and Sporulation of Fungi Isolated From Poultry Feed

  • Islam, M. Rafiqul;Alam, Shahidul;Rahman, M. Ziaur;Chowdhury, S.P.;Begum, M.F.;Akhter, Nargis;Alam, M.S.;Han, Kee-Don;Lee, Min-Woong
    • Mycobiology
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    • v.31 no.4
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    • pp.221-225
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    • 2003
  • Effect of ethanolic extracts of Lawsonia inermis, Azadirachta indica, Vinca rosea, Tagetes patula, Ocimum sanctum, Colocasia antiquorum, Adhatoda vasica, Moringa oleifera, Datura metel and Curcuma longa leaf on conidial germination, mycelial growth and sporulation of Aspergillus flavus, A. niger and A. fumigatus were examined. The conidial germination of A. flavus and A. fumigatus were most inhibited by the extract of L. inermis, while that of A. niger was inhibited by A. indica. Other tested plant extracts have a good effect on conidial germination on the selected fungi. The highest mycelial growth of A. flavus(37 mm) was found in V. rosea, but in case of A. niger and A. fumigatus it(38 and 39 mm) was found in D. metel. The lowest(4, 9 and 6 mm) respectively mycelial growth of these fungi found in L. inermis. The highest sporulation($75{\times}10^4/ml$) of A. flavus was counted in V. rosea, but in case of A. niger and A. fumigatus those($45{\times}10^4$ and $55{\times}10^4/ml$) were in D. metel and the lowest($5{\times}10^4,\;12{\times}10^4\;and\;9{\times}10^4/ml$) respectively sporulation of these fungi counted in L. inermis plant extract medium.

Effects of Temperature, Relative Humidity, pH and Triazole Fungicides on Sporulation anc Conidial Germination of Uncinula necator (포도 흰가루병균(Uncinula necator)의 분생포자 형성과 발아에 미치는 온도, 습도, pH 및 Trizole 살균제의 영향)

  • Oh, Jeung-Haing
    • Korean Journal Plant Pathology
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    • v.13 no.4
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    • pp.210-214
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    • 1997
  • The experiment was conducted to obtain basic informations on the effects of key environments and fungicides on the sporulation, conidial germination and hitial growth of the hyphae of grape powdery mildew fungus Uncinula necator. Maximum sporulation occurred at RH 75~96% in vitro adiusted with sulfuric acid solution. Conidial germination and initial growth of the hyphae were better at 5% water agar than distilled water, and best at $26^{\circ}C$ and pH 5.0 of the substrates. Germination occurred equally well at light intensity of below 100 lux or dark condition, which was better at water agar supplemented with leaf extract 30% than pure water agar. The water agar supplemented with triazole fungicides reduced conidial germinations and initial growth of the hyphae signifcantly, in proportion to the increase in concentration of the fungicides, but the maguitude of reduction depended on the fungicides. Particularly in myclobutanil, reduction rate was very low as increased in concentration.

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Factors Affecting Sporulation, Germination, and Appressoria Formation of Epicoccosorus nematosporus as a Mycoherbicide Under Controlled Environments

  • Hong, Yeon-Kyu;Cho, Jae-Min;Lee, Bong-Choon;Uhm, Jae-Youl;Kim, Soon-Chul
    • The Plant Pathology Journal
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    • v.18 no.1
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    • pp.50-53
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    • 2002
  • To develop Epicoccosorus nematosporus as a mycoherbicide of Eleocharis kuroguwai, the optimum temperature and humidity for sporulation of the pathogen were studied. Conidial production was most abundant at $28^{\circ}C$ with RH 60%, which yielded 661 mg in 9 cm Petri dish. Light intensity of 3,000 up to 7,500 lux was effective in stimulating conidial production of E. nematosporus on oatmeal agar, Light intensity affected sporulation more significantly than temperature. In the pot test, at least 12 h of dew period at $20^{\circ}C$ and $25^{\circ}C$ was required to achieve satisfactory conidial germination and appressorial formation. Few were killed at 8 h of dew period regardless of temperature. Sixteen hours of a single dew treatment immediately after inoculation killed more plants than did two or three repetitive dew treatments of 8-12 h.

Evaluation of Electrolyzed Oxidizing Water as a Control Agent of Cucumber Powdery Mildew

  • Lee, Yong-Hwan;Cha, Kwang-Hong;Ko, Sook-Ju;Park, In-Jin;Park, Boung-In;Seong, Ki-Young
    • The Plant Pathology Journal
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    • v.16 no.4
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    • pp.206-210
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    • 2000
  • The effect of the electrolyzed oxidizing water on Sphaerotheca fuliginea was investigated with germination and sporulation of the fungal conidia. The sporulation was inhibited by the electrolyzed oxidizing water of pH 2.5, 3.5, and 4.5, but was not inhibited by the distilled water adjusted pH with 1N-HCL solution. However, the electrolyzed oxidizing water did not affect conidial germination. The oxidation-reduction potential at pH 2.5 and pH 3.5 of electrolyzed oxidizing water were 1130 mV and 1060 mV, respectively, but those of distilled water adjusted with HCL solution were 550 mV and 490 mV, respectively. When the electrolyzed oxidizing water of ORP over 1100 mV was sprayed on cucumplanting, the disease severities of powdery mildew were about 8.5% and 19.2%, respectively. Disease severity of a standard control (triflumizole 30% WP, $500\textrm{mg}\textrm{/L}$) was about 3.0%, while that of plants without electrolyzed oxidizing water was to 45.8%.

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Biocontrol Activity of Volatile-Producing Bacillus megaterium and Pseudomonas protegens Against Aspergillus and Penicillium spp. Predominant in Stored Rice Grains: Study II

  • Mannaa, Mohamed;Kim, Ki Deok
    • Mycobiology
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    • v.46 no.1
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    • pp.52-63
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    • 2018
  • In our previous studies, Bacillus megaterium KU143, Microbacterium testaceum KU313, and Pseudomonas protegens AS15 have been shown to be antagonistic to Aspergillus flavus in stored rice grains. In this study, the biocontrol activities of these strains were evaluated against Aspergillus candidus, Aspergillus fumigatus, Penicillium fellutanum, and Penicillium islandicum, which are predominant in stored rice grains. In vitro and in vivo antifungal activities of the bacterial strains were evaluated against the fungi on media and rice grains, respectively. The antifungal activities of the volatiles produced by the strains against fungal development and population were also tested using I-plates. In in vitro tests, the strains produced secondary metabolites capable of reducing conidial germination, germ-tube elongation, and mycelial growth of all the tested fungi. In in vivo tests, the strains significantly inhibited the fungal growth in rice grains. Additionally, in I-plate tests, strains KU143 and AS15 produced volatiles that significantly inhibited not only mycelial growth, sporulation, and conidial germination of the fungi on media but also fungal populations on rice grains. GC-MS analysis of the volatiles by strains KU143 and AS15 identified 12 and 17 compounds, respectively. Among these, the antifungal compound, 5-methyl-2-phenyl-1H-indole, was produced by strain KU143 and the antimicrobial compounds, 2-butyl 1-octanal, dimethyl disulfide, 2-isopropyl-5-methyl-1-heptanol, and 4-trifluoroacetoxyhexadecane, were produced by strain AS15. These results suggest that the tested strains producing extracellular metabolites and/or volatiles may have a broad spectrum of antifungal activities against the grain fungi. In particular, B. megaterium KU143 and P. protegens AS15 may be potential biocontrol agents against Aspergillus and Penicillium spp. during rice grain storage.

Effects of Atmospheric Ozone on the Rice Blast Pathogen Pyricularia grisea

  • Hur, Jae-Seoun;Kim, Ki-Woo;Kim, Pan-Gi;Yun, Sung-Chul;Park, Eun-Woo
    • The Plant Pathology Journal
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    • v.16 no.1
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    • pp.19-24
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    • 2000
  • The direct effects of acute $\textrm{O}_3$ on the growth, sporulation and infection of Pyricularia grisea, rece blast pathogen, were investigated to understand the interactions between ozone and the pathogen. Acute exposure of 200 nl $\textrm{l}^{-1}$ ozone for 8 h significantly reduced conidia germination on water atar. Ozone exposure of 200 nl $\textrm{l}^{-1}$ for 8h per day for 5 days had no effect on increase in colony diameter, but severely damaged actively growing aerial mycelia. However, the damage to mycalia was recovered during the following 16 h exposure of unpolluted air. Conidial production was also stimulated by the acute ozone exposure for 5 days. The conidia exposed to the acute ozone for 5 days normally germinates but slightly reduce appressoria formation on rice leaf. However, the conidia produced by artificial stimulation under the same ozone concentration for 10 days showed significant reduction in appressorea for mation on a hydrophobic film. This study suggests that the acute ozone could ingibit appressoria formation as well as vegetative growth of the pathogen, resulting in decrease in rece blast development in the field during summer when high ozone episodes could occur occasionally.

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Effect of Water Activity and Temperature on Growth, Germination, Sporulation, and Utilization of Carbon Source of Penicillium oxalicum (PENOX) as a Biocontrol Agent(BCA) for control of Clover(Trifolium repens L.) (토끼풀(Trifolium repens L.) 방제용 생물제제 Penicillium oxalicum (PENOX)의 발아, 생장, 포자생성 및 탄소원이용에 미치는 수분활성 및 온도의 영향)

  • Lee, Hyang-Burm;Kim, Chang-Jin
    • The Korean Journal of Pesticide Science
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    • v.4 no.3
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    • pp.68-74
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    • 2000
  • Penicillium oxalicum (PENOX) has shown the potential as a biocontrol agent(5CA) for control of a weed, clover(Trifolium repens L.) in grass plots. The bioherbicidal activity may be due to germinative and growth capacities and substrate availability of the agent over a range of environmental factors. The influences of different water activities($0.94{\sim}0.995\;a_w$) and temperatures($18{\sim}30^{\circ}C$) on mycelial growth, conidial germination, sporulation oil 2% MEA(malt extract agar) adjusted to different water activities with glycerol, and carbon source utilization using BIOLOG GN MicroPlate were determined in vitro. Decreases in $a_w$ on MEA caused a reduction in mycelial growth and conidial germination depending on temperature. The mycelial growth of PENOX was greatest at $30^{\circ}C/0.995\;a_w$. At some lowered water activity($0.97\;a_w$), the growth was similar between 25 and $30^{\circ}C$, and considerably decreased at lowered temperature($20^{\circ}C$). The germination rate was also greatest at $30^{\circ}C/0.995\;a_w$. Lag phase times for PENOX at $18^{\circ}C$ on MEA were >6hrs at tile whole $a_w$ level tested, and at 18 and $25^{\circ}C$ they were >18hrs and >12hrs at $0.94\;a_w$, respectively. However, its sporulation was some better at $0.97\;a_w$ than $0.995\;a_w$ or $0.94\;a_w$, and better at $20^{\circ}C$ than $30^{\circ}C$. In contrast, the number of carbon sources(niche size) utilized by PENOX varied with $a_w$ and temperature. Under some water stress condition($0.95\;a_w$), the agent utilized smaller number of carbon sources than $0.995\;a_w$ depending on temperature. The niche size at 0.995 and $0.95\;a_w$ were highest at $25^{\circ}C$, and showed 86 and 65, respectively. At $30^{\circ}C$, the niche size at 0.995 and $0.95\;a_w$ showed 84 and 50, respectively. There was no carbon source utilized by PENOX at $0.90\;a_w$ regardless of temperature. These information of tile fungal ecophysiology will be useful for the effective development of BCA.

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Biocontrol Activity of Volatile-Producing Bacillus megaterium and Pseudomonas protegens against Aspergillus flavus and Aflatoxin Production on Stored Rice Grains

  • Mannaa, Mohamed;Oh, Ji Yeon;Kim, Ki Deok
    • Mycobiology
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    • v.45 no.3
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    • pp.213-219
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    • 2017
  • In our previous study, three bacterial strains, Bacillus megaterium KU143, Microbacterium testaceum KU313, and Pseudomonas protegens AS15, were selected as effective biocontrol agents against Aspergillus flavus on stored rice grains. In this study, we evaluated the inhibitory effects of the volatiles produced by the strains on A. flavus growth and aflatoxin production on stored rice grains. The three strains significantly reduced mycelial growth of A. flavus in dual-culture assays compared with the negative control strain, Sphingomonas aquatilis KU408, and an untreated control. Of these tested strains, volatiles produced by B. megaterium KU143 and P. protegens AS15 markedly inhibited mycelial growth, sporulation, and conidial germination of A. flavus on agar medium and suppressed the fungal populations in rice grains. Moreover, volatiles produced by these two strains significantly reduced aflatoxin production in the rice grains by A. flavus. To our knowledge, this is the first report of the suppression of A. flavus aflatoxin production in rice grains using B. megaterium and P. protegens volatiles.

Effects of Some Environmental Factors on Mycerial Growth, Sporulation and Sclerotial Formation of Botrytis elliptica (Berk.) Cooke (백합(百合) 잎마름병균(病菌)의 균사생장(菌絲生長), 포자형성(胞子形成) 및 균핵형성(菌核形成)에 미치는 몇가지 환경요인(環境要因)의 영향(影響))

  • Park, Jong Seong;Kim, Hong Gi
    • Korean Journal of Agricultural Science
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    • v.15 no.1
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    • pp.9-14
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    • 1988
  • This experiment was conducted to study the effect of some environmental factors on mycerial growth, sporulation and sclerotial formation of Botrytis elliptica cultured on artificial media. Mycerial growth of B. elliptica was the most favorable on V-8 juice agar among the seven different media tested and sporulation of the fungus was favorable on the medium under NUV light irradiation. Abundant conidia could be obtained from V-8 juice agar medium by NUV light irradiation after 3 days of incubation at $23^{\circ}C$ under darkness. The optimum temperature for mycerial growth and conidial germination was $23^{\circ}C$ and the mycerial growth was favorable at relatively lower temperature ranged $19^{\circ}C$ to $23^{\circ}C$. The optimum pH of the medium for mycerial growth of this fungus ranged 4.5 to 5.0 and that was inhibited at higher pH of the media. Mycerial growth of the fungus was not highly influenced by irradiation of fluorescent light, however sporulation was stimulated under NUV light irradiation. Sclerotia of B. elliptica were formed when it was cultured at lower temperature below $19^{\circ}C$.

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