• Title/Summary/Keyword: conidia

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Anthracnose of Pepper seedling caused by Colletotrichum coccodes (Wallr.) Hughes (Colletotrichum coccodes(Wallr.) Hughes에 의(依)한 고추 유묘탄저병(幼苗炭疽病))

  • Oh, In-Seok;In, Moo-Seong;Woo, In-Shik;Lee, Sung-Koo;Yu, Seung-Hun
    • The Korean Journal of Mycology
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    • v.16 no.3
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    • pp.151-156
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    • 1988
  • A leaf anthracnose disease of pepper(Capsicum annuum L.) seedling caused by Colletotrichum coccodes was found in fields of Chungnam District for the first time in 1988. Initial symptom of the disease was spotting on leaves and stems of the seedlings. The spots became sunken and gradually increased in size and coalesced to form bigger irregular spots and blights on the leaves. In severely affected fields, many pepper seedlings were defoliated and lodged. Field survey revealed that the infection rate of anthracnose ranged form 15.3% to 92.3%. Conidia from lesions on seedlings were hyaline, aseptate, straight, cylindrical with obtuse ends, $115-25(av.\;19.\;5){\times}2.5-4.8{\mu}m(av.\;3.3{\mu}m)$ and setaes were straightly extended above the acervuli, $41.3-136.3\;{\um}m(av.\;85.0{\mu}m)$ long. The fungus produced abundant sclerotia on PDA when it was cultured under darkness. In the inoculation experiments, the fungus was found to infect pepper seedlings and fruits, and fruits of tomato and egg plant.

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Selection and Identification of a Hyperparasite, Ampelomyces quisqualis 94013 for Biocontrol of Cucumber Powdery Mildew (오이 흰가루병 생물적 방제를 위한 중복기생균 Ampelomyces quisqualis 94013의 선발 및 동정)

  • Lee, Sang-Yeob;Hong, Sung-Kee;Kim, Yong-Ki;Kim, Hong-Gi
    • The Korean Journal of Mycology
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    • v.35 no.2
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    • pp.121-127
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    • 2007
  • 308 isolates of Ampelomyces sp. were isolated from powdery mildew fungi of 73 plant species in Korea for selection of biocontrol agents. An isolate 94013 isolated from powdery mildew fungus of red bean was selected as an effective biological control agent against cucumber powdery mildew in greenhouse. The morphological characteristics of the isolate is as follows. Pycnidia were sub-globose or elongated to pyriform, pale to dart brown, $52.5{\sim}82.5\;{\times}\;35.0{\sim}47.5\;(ave.\;62.5{\times}40.5){\mu}m$, and conidia were guttulate, straight cylindrical to fusiform, pale brown, $5.0{\sim}8.0\;{\times}\;2.5{\sim}4.3\;(ave.\;6.0{\times}3.0){\mu}m$. The isolate 94013 was identified as Ampelomyces quisqualis by morphological characteristics and rDNA ITS sequencing. The isolate A. quisqualis 94013 was different from that of the commercial product $AQ10^R$ in the rDNA ITS sequence.

Asexual Stage and Fruit Formation of Cordyceps staphylinidaecola (유충노랑곰보동충하초(Cordyceps staphylindaecola)의 불완전세대와 자실체 형성)

  • Sung, Jae-Mo;Hong, Sung-Jun;Humber, R.A.;Spatafora, J.W.
    • The Korean Journal of Mycology
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    • v.31 no.1
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    • pp.1-7
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    • 2003
  • One hundred fifty one specimens of Beauveria spp. from 19 different locations were collected from September 1 to August 31, 2002. Most of the isolates were identified as Beauveria. bassiana. Cordyceps staphylinidaecola collected from Mt. Obong in Chunchon City covered the host with mycelia which were produced 1 to 4 stromata along with asexual spores. The size of bright yellow ununiform stromata were about 45 mm and the head about $17mm{\times}4mm$. Perithecia completely immersed were $530{\sim}550{\times}290{\sim}300{\mu}m$ in size and mainly scattered on the head. Ascospore produced in asci in the size of $400{\sim}450{\times}4{\sim}5{\mu}m$ developed thread-like secondary spores, which were directly separated into secondary conidial spores. Conidia produced at apical portion of synnemata were $2.6{\sim}3.4{\times}1.2{\sim}1.9{\mu}m$ in size. High density of mycelium was observed at $25^{\circ}C$ ranged from pH 6.5 to 8.5 after 11 days of inoculation. It took 15 to 18 days after inoculation to fully grow on the medium mixed brown rice with pupa. Mycelium developed stromata on the medium 30 days after completion of mycelial growth, where perithecia were produced in 40 days.

Anthracnose of Amaranthus mangostanus Caused by Glomerella cingulata in Korea (Glomerella cingulata에 의한 비름 탄저병)

  • Kwon, Jin-Hyeuk;Park, Chang-Seuk
    • The Korean Journal of Mycology
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    • v.31 no.1
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    • pp.40-43
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    • 2003
  • Symptoms similar to anthracnose were observed on Amaranthus mangostanus in Sancheon-gun, Gyeongnam province, where the plants were autogenously formed community. The symptoms were appeared in stem and spread, eventually whole plants died. Mycelial colony of the isolate was whitish gray to dark gray on potato dextrose agar. Conidia were single celled, colorless, cylindrical and measured as $10.5{\sim}21.7{\times}3.8{\sim}6.0{\mu}m$. Appressoria were dark brown, ovate to obovate and sized as $5.6{\sim}13.7{\times}4.6{\sim}11.4{\mu}m$. Perithecia were brown to black in color and shaped as globose to obpyriform and sized as $79.7{\sim}286.7{\mu}m$. Asci had eight ascospores and sized as $47.7{\sim}89.7{\times}8.1{\sim}13.3{\mu}m$. Ascospores were slightly curved at the center cylindrical, fusiform and measured $9.3{\sim}20.3{\times}4.6{\sim}6.3{\mu}m$. Optimum temperature for growth was $30^{\circ}C$. On the basis of morphological characteristics and pathogenicity test to host plants, the fungus was identified as Glomerella cingulata. This is the first report on the Anthracnose of Amaranthus mangostanus caused by Glomerella cingulata in Korea.

Gray Mold Rot on Fruit of Cucumis melo var. reticulatus Caused by Botrytis cinerea (Botrytis cinerea에 의한 멜론 잿빛곰팡이병)

  • Kwon, Jin-Hyeuk;Kang, Soo-Woong;Son, Kyeng-Ae;Bae, Dong-Won;Park, Chang-Seuk
    • The Korean Journal of Mycology
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    • v.27 no.4 s.91
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    • pp.280-282
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    • 1999
  • A new disease on mask melon grown under plastic film houses was found in Namhae area in May of 1999. Gray to dark brown mold were grown on the surface of matured fruits and infected inside tissues were discolored and rotten. Basal part of the fruit and blossom-end were frequently infected and colonized by fungi. About 2.2% of matured fruits were infected in the surveyed plastic film houses. The causal organism was isolated from the lesion and identified as Botrytis cinerea. The conidia in mass were hyaline or gray, 1-celled, mostly ellipsoid or ovoid and sized $8.8{\sim}21.2{\times}6.5{\sim}13.1\;{\mu}m$. Hyaline or pigmented conidiophores were tall, slender and determinated and, sometimes branched irregularly in upper part. Enlarged or rounded apical cells bear conidial cluster and sized $18.4{\sim}81.1{\times}4.3{\sim}11.4\;{\mu}m$. Optimum temperature for mycelial growth was recorded at $15{\sim}25^{\circ}C$. This is the first report on gray mold of melon caused by Botrytis cineria in Korea.

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Amino Acid Nutrition on Growth and Reproduction of Potato Dry Rot Fusarium roseum ‘Sambucinum' Variants (감자 건부(乾腐) Fusarium roseum ‘Sambucinum’ 변이체(變異體)의 균사생장(菌絲生長) 및 분생포자(分生胞子) 형성(形成)에 미치는 아미노산(酸) 영양(營養))

  • Lee, Chang-Un
    • The Korean Journal of Mycology
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    • v.10 no.4
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    • pp.187-192
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    • 1982
  • The effects of amino acids on mycerial growth and sporulation of the decreased and increased pathogenicity variants of potato dry rot Fusarium roseum ‘Sambucinum' were as following. The increased pathogenicity variants Ic52 and Ic116 showed the trend of greater mycerial growth, marking up to 67mg on leucine, than the decreased pathogenicity variants Dc14 and Dc91, and produced markedly low conidia below $25{\times}10^{4}/ml$ or no sporulation. On methionine all the variants and the wild type showed the lowest growth recording 14mg to 20mg with no sporulation. Cystine similarly as glysine supported the poor growth 30mg to 19mg of the variants Dc14 and Dc91, respectively, and did not support the sporulation. The former amino acid like asparagine supported the growth of the variants Ic52 and Ic1l6 marking 47mg and 36mg, respectively. On all the eleven amino acids the variant Dc14 showed the trend of more mycerial growth and sporulation than the variant Dc91 which marked the exceptionally high sporulation $195{\times}10^{4}/ml$ on glutamic acid.

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The Condition of Production of Artificial Fruiting Body of Cordyceps militaris (Cordyceps militaris 인공자실체 형성조건)

  • Choi, In-Young;Choi, Joung-Sik;Lee, Wang-Hyu;Yu, Young-Jin;Joung, Gi-Tae;Ju, In-Ok;Choi, Young-Keun
    • The Korean Journal of Mycology
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    • v.27 no.4 s.91
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    • pp.243-248
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    • 1999
  • To compare the morphological and cultural characteristics of Cordyceps militaris, forming conditions of artificial fruiting body production were investigated in this experiment. The stroma shapes of artificial fruiting body were confirmed to club and/or stick. However, both shapes were same color as a orange. Perithecia of stroma was semi-egg shape and was ranged from $30{\sim}90{\times}90{\sim}130\;{\mu}m$ and it's asci was narrowly cylindric. Ascospore of perithecia was belong to filiform and multiseptate. The conidia of C. militaris was centurally grown and shaped with globose, long clavate type, floccose, centrally raised during anamorph stage. When it was cultured between glass and PP bottle, production of artificial fruiting body, pinheading ratio and total yield were higher in PP bottle. The optimum illumination was 1,000 lx for the those production. The culture medium of barley, wheat and hulled rice showed higher artificial fruiting body compared to that of silkworm. Pinheading and yield of it's isolates was decreased at more than three subsequent transculture.

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Interaction between the Rice Pathogens, Fusarium graminearum and Burkholderia glumae

  • Lee, Jungkwan;Jung, Boknam;Park, Jungwook;Kim, Sungyoung;Youn, Kihun;Seo, Young-Su
    • 한국균학회소식:학술대회논문집
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    • 2014.10a
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    • pp.13-13
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    • 2014
  • Species belonging to the genus Fusarium are widely distributed and cause diseases in many plants. Isolation of fungal strains from air or cereals is necessary for disease forecasting, disease diagnosis, and population genetics [1]. Previously we showed that Fusarium species are resistant to toxoflavin produced by the bacterial rice pathogen Burkholderia glumae while other fungal genera are sensitive to the toxin, resulting in the development of a selective medium for Fusarium species using toxoflavin [2]. In this study, we have tried to elucidate the resistant mechanism of F. graminearum against toxoflavin and interaction between the two pathogens in nature. To test whether B. glumae affects the development of F. graminearum, the wild-type F. graminearum strains were incubated with either the bacterial strain or supernatant of the bacterial culture. Both conditions increased the conidial production five times more than when the fungus was incubated alone. While co-incubation resulted in dramatic increase of conidial production, conidia germination delayed by either the bacterial strain or supernatant. These results suggest that certain factors produced by B. glumae induce conidial production and delay conidial germination in F. graminearum. To identify genes related to toxoflavin resistance in F. graminearum, we screened the transcriptional factor mutant library previously generated in F. graminearum [3] and identified one mutant that is sensitive to toxoflavin. We analyzed transcriptomes of the wild-type strain and the mutant strain under either absence or presence of toxoflavin through RNAseq. Expression level of total genes of 13,820 was measured by reads per kilobase per million mapped reads (RPKM). Under the criteria with more than two-fold changes, 1,440 genes were upregulated and 1,267 genes were down-regulated in wild-type strain than mutant strain in response to toxoflavin treatment. A comparison of gene expression profiling between the wild type and mutant through gene ontology analysis showed that genes related to metabolic process and oxidation-reduction process were highly enriched in the mutant strain. The data analyses will focus on elucidating the resistance mechanism of F. graminearum against toxoflavin and the interaction between the two pathogens in rice. Further evolutionary history will be traced through figuring out the gene function in populations and in other filamentous fungi.

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Formation of Intergeneric Hybrids Between Aspergillus niger and Penicillium verruculosum by Nuclear Transfer (핵전이에 의한 Aspergillus niger와 Penicillium verruculosum F-3의 속간 잡종형성)

  • Yang, Young-Ki;Park, Yeol;Kim, Sung-Joon;Cheong, Hyeon-Suk;Lim, Chae-Young;Rhee, Young-Ha
    • Korean Journal of Microbiology
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    • v.31 no.1
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    • pp.1-8
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    • 1993
  • lntergeneric hybrids formed between Aspergillus niger and Penicillium verruculosum were obtained by nuclear transfer technique. Nuclei isolated from wild type and auxotrophic mutants of donor strains were transferred into the protoplasts of different auxotrophic mutants as recipient strains. Several auxotrophic mutants were isolated from conidiospores of the two strains mutagenized with ultraviolet and N-methyl-N'-nitrosoguanidine. Optimal conditions for formation of intergeneric hybrids were investigated. Frequencies of intergeneric hybrid formation by nuclear transfer were $7{\times}10^{5}~1{\times}10^{5}$. From observations of genetic stability. DNA content. nuclear stain and conidial size. it was suggested that their karyotypes are aneuploid. In addition. the hybrids possess the 1.1~2.3-fold higher cellulase activities than those of parental strains. It was also revealed that some hybrids had different isozyme patterns compared to those of parental strains by CMCase and $\beta$-glucosidase activity assays.

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Purification and Characterization of the Siderophore from Bacillus licheniformis K11, a Multi-functional Plant Growth Promoting Rhizobacterium. (다기능 PGPR균주 Bacillus licheniformis K11이 생산하는 항진균성 Siderophore의 정제와 특성)

  • Woo, Sang-Min;Woo, Jae-Uk;Kim, Sang-Dal
    • Microbiology and Biotechnology Letters
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    • v.35 no.2
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    • pp.128-134
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    • 2007
  • Previously, we isolated plant growth promoting rhizobacterium (PGPR) Bacillus licheniformis K11 which could produce auxin, cellulase and siderophore. The siderophore of B. licheniformis K11 $(siderophore_{K11})$ was determined to be a catechol type siderophore which is produced generally by Bacillus spp. B. licheniformis K11 could produce the siderophore most highly after 96 h of incubation under nutrient broth at $20^{\circ}C$ with initial pH 9.0. For the production of the $siderophore_{K11}$, trehalose and $NH_4Cl$ were the best carbon and nitrogen sources in Davis minimal medium, respectively. The $siderophore_{K11}$ was Produced in M9 medium (pH 9.0) after 4 days at $20^{\circ}C$, and purified from culture broth of B. licheniformis K11 by using Amberlite XAD-2, Sephadex LH-20 column chromatography, and reversed-phase HPLC. The $siderophore_{K11}$ had the biocontrol activity against spore germination of P. capsici and F. oxysporum on potato dextrose agar (PDA). The results indicate that the $siderophore_{K11}$ is an antifungal mechanism of B. licheniformis K11 against phytopathogenic fungi.