• Title/Summary/Keyword: spore germination

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Conditions of In Vitro Spore Germination and Prothallium Culture for Sporophyte propagation of Polystichum braunii (Spenn.) Fée (좀나도히초미(Polystichum braunii (Spenn.) Fée) 포자체 증식을 위한 기내 포자 발아와 전엽체 배양 조건)

  • Kwon, Hyuk Joon;Han, Ji Hyun;Lee, Cheol Hee;Kim, Soo-Young
    • Journal of Plant Biotechnology
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    • v.44 no.4
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    • pp.454-461
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    • 2017
  • This study was conducted to investigate the optimal conditions for spore germination, prothallus propagation, sporophyte formation, and seedling growth in Polystichum braunii (Spenn.) $F{\acute{e}}e$. The rate of spore germination and early prothalium development was high in Knop (41.2%), which had low mineral content. The optimal medium for prothallus propagation and sexual organ formation was 2MS medium (2% sucrose). Among the various mixtures of cultivation soil (bedding soil, peat moss, perlite, and decomposed granite), a mixture of bedding soil and decomposed granite at a ratio of 2:1 (v:v) had a positive effect on sporophyte formation (276.3 ea/$7.5m^2$). The most efficient conditions for promoting the growth of sporophytes were pots filled with only bedding soil.

Isolation and Identification of Antifungal Fatty Acids from the Extract of Common Purslane(Portulaca oleracea L.) (쇠비름 즙액에서 얻은 항균성 지방산의 분리 및 동정)

  • Park Jong Seong;Nishimura Shoyo;Marumo Shingo;Katayama Masato
    • Korean Journal Plant Pathology
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    • v.2 no.2
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    • pp.82-88
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    • 1986
  • Five antifungal substances were isolated from the long-term storaged extract of common purslane, and identified as isobutyric, butyric, isovaleric, valerie and caproic acids belonging to short-chain fatty acids (C4­C6). Each of these fatty acids showed more or less antifungal potency against spore germination and mycelial growth of Alternaria alternata Japanese pear pathotype in vitro. Antifungal potency of each fatty acid against spore germination was greater than that against the mycelial growth. No one of these fatty acids completely inhibited the mycelial growth at concentration lower than 200 ppm, while 50 ppm of caproic acid and 200 ppm of valerie acid completely inhibited the spore germination. The results of bioassay also suggested that chain-length of the fatty acids might be related with the antifungal potency, since fatty acids with longer chain showed higher antifungal potency.

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The Gene fpk1, Encoding a cAMP-dependent Protein Kinase Catalytic Subunit Homolog, is Required for Hyphal Growth, Spore Germination, and Plant Infection in Fusarium verticillioides

  • Pei-Bao, Zhao;Ren, Ai-Zhi;Xu, Hou-Juan;Li, Duo-Chuan
    • Journal of Microbiology and Biotechnology
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    • v.20 no.1
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    • pp.208-216
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    • 2010
  • Fusarium verticillioides is an important pathogen of maize, being responsible for ear rots, stalk rots, and seedling blight worldwide. During the past decade, F. verticillioides has caused several severe epidemics of maize seedling blight in many areas of China, which lead to significant losses. In order to understand the molecular mechanisms regulating fungal development and pathogenicity in this pathogen, we isolated and characterized the gene fpk1 (GenBank Accession No. EF405959) encoding a homolog of the cAMP-dependent protein kinase catalytic subunit, which included a 1,854-bp DNA sequence from ATG to TAA, with a 1,680-bp coding region, and three introns (lengths: 66 bp, 54 bp, and 54 bp), and the predicated protein precursor had 559 aa. The mutant ${\Delta}fpk1$, which was disrupted of the fpkl gene, showed reduced vegetative growth, fewer and shorter aerial mycelia, strongly impaired conidiation, and reduced spore germination rate. After germinating, the fresh hypha was stubby and lacking of branch. When inoculated in susceptible maize varieties, the infection of the mutant ${\Delta}fpk1$ was delayed and the infection efficiency was reduced compared with that of the wild-type strain. AU this indicated that gene fpk1 participated in hyphal growth, conidiophore production, spore germination, and virulence in F. verticillioides.

Induction of Phytoalexins by Uptake of Naphthoquinones in Cell Cultures of Petunia (Naphthoquinone류 화합물 흡수에 의한 페튜니아 배양세포내의 Phytoalexin 유도)

  • Kim, Myong-Jo;Kwak, Sang-Soo
    • Applied Biological Chemistry
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    • v.40 no.4
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    • pp.352-356
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    • 1997
  • To induce the phytoalexins in plant cell culture systems, we surveyed the antimicrobial activity following the feeding of five naphthoquinones in cell cultures of petunia. Among naphthoquinones treated, 2,5,7-trihydroxy-3-(5'-hydroxyhexyl)-1,4-naphthoquinone (3-OH NQ ) was most efficiently absorbed into the cells within 48 hr. The crude extracts of cells treated with 3-OH NQ showed a strong inhibition activity on spore germination of Aspergillus candidus $(MIC:\;32\;{\mu}g/ml)$, whereas the untreated cells showed no activity. The two active compounds, 4,2',4',${\beta}$-tetrahydroxychalcone and 4',7-dihydroxyflavone, were isolated from petunia cells treated with 3-OH NQ. The major phytoalexin, 4,2',4',${\beta}$-tetrahydroxychalcone, inhibited strongly the spore germination of A. candidus $(MIC:\;16\;{\mu}g/ml)$.

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Effect of Water Potential on Mycelial Growth, Reproduction and Spore Germination by Fusarium moniliforme (Fusarium moniliforme의 Propagule형성(形成)과 발아(發芽)에 미치는 Water Potential의 효과(效果))

  • Sung, Jae-Mo;Lee, Eun-Jong;Park, Jong-Seong
    • The Korean Journal of Mycology
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    • v.12 no.3
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    • pp.99-103
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    • 1984
  • Hyphal growth by Fusarium moniliforme was best at -14 bars osmotic water potential. Hyphal growth was prevented at -94 bars. The production of microconidia was best at -14 bars osmotic potential and prevented at -84 bars regardless of Strain. In contrast, this fungus sporulated macroconidia best at -1.4 bars and progressively less with each increment drop in water potential below that of basal media. The rate of spore germination followed a similar pattern with all of the spores; uniformly maximal at about -1.4 bars and progressively slower as the water potential was lowered from -1.4 bars to -42 bars. Under the natural conditions, plants infected by F. moniliforme produce microconidia on the dead tissues instead of producing macroconidia. This phenomenon agrees well with the water potential experiment since the dead plant tissues have a lower water potential than the living plant.

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Growth Inhibition Effect of Environment-friendly Agricultural Materials in Botrytis cinerea In Vitro (친환경 유기농자재의 잿빛곰팡이병 병원균의 생장 억제 효과)

  • Kwak, Young-Ki;Kim, Il-Seop;Cho, Myeong-Cheoul;Lee, Seong-Chan;Kim, Su
    • Journal of Bio-Environment Control
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    • v.21 no.2
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    • pp.134-139
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    • 2012
  • Inhibition effects on spore germination and mycelia growth for gray mold (Botrytis cinerea) were investigated in vitro using environment-friendly agricultural materials as well as environment-friendly pesticides. The inhibition effect on mycelia growth of gray mold is the highest when the gray mold mycelia were treated with a pesticide (commercial name: Koreayeok, Jihabudea KM, Sootingtan, Sootingstar) that contains a mixture of Bacillus subtilis, resulting in 100% inhibition of the mycelia growth. Meanwhile, the range of less than 20% inhibition effects on the growth of gray mold mycelia was observed with other commercial agricultural materials. The significant inhibition effects on spore germination of gray mold fungus were shown in vitro with two water dispersible pesticides containing sulfur [BTB (97.7%) and SulfurStar (92.3%)], respectively. These in vitro results of inhibiting of the spore germination and mycelia growth together cannot found. It remains to be determined whether the selected environment-friendly agricultural materials in effective control of gray mold in vitro can be used to control gray mold in field.

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.

Several Factors Affecting Mass Production of Microlepia strigosa (Thunb.) C. Presl Sporophytes (돌토끼고사리 포자체의 대량생산을 위한 몇 가지 요인)

  • Cho, Ju Sung;Lee, Cheol Hee
    • Horticultural Science & Technology
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    • v.35 no.1
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    • pp.46-58
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    • 2017
  • This study was conducted to investigate the optimal conditions for spore germination, prothallus propagation, sporophyte formation and seedling growth in Microlepia strigosa (Thunb.) C. Presl. Spore germination and prothallus development were promoted by low concentrations of Knop medium nutrient solution. The optimal medium for prothallus propagation and antheridium formation was 2X MS medium with 3% sucrose. The activated charcoal content of the medium did not affect prothallus proliferation. Among the various combinations of culture soil (bedding soil, peat moss, perlite and decomposed granite), a mixture of bedding soil, peat moss and decomposed granite at a ratio of 1 : 1 : 1 (v : v : v) had a positive effect on sporophyte formation. The most efficient conditions for promoting the growth of whole plants (sporophyte seedlings) were 50 - cell plug trays filled with a mixture of bedding soil and decomposed granite at a 2 : 1 (v : v) ratio.

Antifungal Activity of Thymol against Aspergillus awamori and Botrytis aclada Isolated from Stored Onion Bulbs

  • Ji Yeon Oh;Siti Sajidah;Elena Volynchikova;Yu Jin Kim;Gyung Deok Han;Mee Kyung Sang;Ki Deok Kim
    • Mycobiology
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    • v.50 no.6
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    • pp.475-486
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    • 2022
  • The antifungal activity of thymol against Aspergillus awamori F23 and Botrytis aclada F15 in onions was examined through direct treatment with amended media and gaseous treatment with I-plates (plastic plates containing central partitions). The protective and curative control efficacy of thymol was examined 24 h before and after the inoculation of onion bulbs with the fungal isolates. Mycelial growth, sporulation, and spore germination of the isolates were inhibited on potato dextrose agar amended with various concentrations of thymol or acetic acid (positive control). Overall, thymol produced a stronger inhibitory effect on the mycelial growth and development of the isolates than acetic acid. Following gaseous treatment in I-plates, mycelial growth, sporulation, and spore germination of the isolates were inhibited at higher concentrations of thymol or acetic acid; however, acetic acid showed a little effect on the sporulation and spore germination of the isolates. Following the treatment of onion bulbs with 1000 mg L-1 of thymol 24 h before and after fungal inoculation, lesion diameter was greatly reduced compared with that following treatment with 0.5% ethanol (solvent control). Onion bulbs sprayed with thymol 24 h before fungal inoculation generally showed reduced lesion diameters by isolate F23 but not in isolate F15 compared with those sprayed 24 h after fungal inoculation. Collectively, thymol effectively inhibited the growth and development of A. awamori and B. aclada on amended media and in I-plates. In addition, spraying or fumigation of thymol is more desirable for effectively controlling these postharvest fungal pathogens during long-term storage conditions.

Spore Germination and Prothallium Development Conditions of Lygodium japonicum (Thunb.) Sw. (실고사리(Lygodium japonicum (Thunb.) Sw.) 포자발아와 전엽체 발달조건)

  • Kwon, Hyuk Joon;Shin, So Lim;Lim, Yun Kyung;Kim, Soo-Young
    • Korean Journal of Plant Resources
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    • v.29 no.4
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    • pp.400-406
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    • 2016
  • This study was conducted to determine the optimal conditions of growth medium, temperature, and light quality for efficient propagation of Lygodium japonicum spores. The rate of spore germination and prothalium development was high in Knop and 1/8MS and 1/4MS media, which had low mineral content; in particular, the germination rate exceeded 74%, and the germinated spores developed into heart-shaped prothallia. However, in Knop‘s medium with the lowest mineral content, a rapid prothallium senescence was observed; in 1/4MS medium, prothallium development was delayed. Germination rate increased with the increase in temperature and reached its maximum, 86.7%, at 30℃; however, at this temperature, the prothallia were thinner and abnormal development of rhizoids was observed compared to normally developed prothallia and rhizoids at 25℃. Therefore, the results suggested that the optimal temperature for L. japonicum spore germination was 25℃. The rate of germination was also measured under different light conditions, and the highest rate of 90.6% was observed under LED red light compared to fluorescent (77.2%) or LED blue (5.4%) lights. The germinated spores developed into heart-shaped prothallia under LED red light; however, 15 days after seeding, prothallium development decreased and the became elongated. In contrast, a normal and continuous development of heart-shaped prothallia was observed under fluorescent light.