• Title/Summary/Keyword: Ascospore

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Notes on Unrecorded Fleshy Ascomycetes in Korea (한국산(韓國産) 자낭균류(子囊菌類) 버섯의 미기록종(未記錄種))

  • Hong, Soon-Woo;Jang, Yong-Suk
    • The Korean Journal of Mycology
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    • v.15 no.2
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    • pp.76-79
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    • 1987
  • More than 100 samples of the Ascomycetous fleshy fungi were collected and inves­tigated. Among them, 3 genera and 9 species were confimed as unrecorded ones in Korea. Unrecorded genera were Tarzetta, Hypocrea and Mollisia. Unrecorded species were Cyathipodia villosa, C. cupuliformis, Cudonia confusa, Tarzetta catinus, T. cupularis, Rutsroemia petiolorum, Mollisia ventosa, Hymenoscyphus pileatus and Hypocrea rufa.

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Further Evidence that Ramularia-type Conidia in vivo Plays a Role as a Secondary Inoculum of Mycosphaerella nawae (감나무 둥근무늬낙엽병균 Mycosphaerella nawae 분생포지의 2창 전염원으로서 역할)

  • 권진혁;강수웅;박창석;김희규
    • Korean Journal Plant Pathology
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    • v.14 no.5
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    • pp.393-396
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    • 1998
  • The characteristic Ramularia type conidia of Mycosphaerella nawae were formed on naturally infected leaves. Artificial inoculation with the conidia induced typical symptom on leaves, which was not distinguishable from those of ascospore infection, which has been considered as a primary inoculum source in nature. Also the morphology of the conidia produced on PDA was not different from those formed on artificially inoculated leaves or on naturally infected leaves at later stage of symptom development. Accordingly, we report the role of the conidia as a secondary inoculum of the circular leaf spot pathogen of persimmon for the first time.

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Occurrence of Powdery Mildew on Safflower Caused by Sphaerotheca fuliginea in Korea

  • Kwon, Jin-Hyeuk;Kang, Soo-Woong;Lee, Heung-Su;Park, Chang-Seuk
    • Mycobiology
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    • v.28 no.1
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    • pp.51-53
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    • 2000
  • The powdery mildew of safflower (Carthamus tinctorius L.) extensively occurred at 1999 at the experimental farm of Kyongsangnam-do Agricultural Research and Extension Services. Both sides of the leaves and the older stems were covered with the fungus, and then the leaves and stems turned yellow. The conidia, conidiophores and perithecia were observed on the leaf lesion. Perithecia were ellipsoidal, $80-117\;{\mu}m$ in diameter. Asci were subglobose and $84{\sim}99{\times}59{\sim}73\;{\mu}m$ in size. Ascospore were ellipsoidal to ovoid, and $15{\sim}34{\times}11{\sim}23\;{\mu}m$ in size. Conidia were ellipsoid to barrel-shaped, $25{\sim}37{\times}11{\sim}22\;{\mu}m$ in size and formed in long chains. The causal organism was identified as Sphaerotheca fuliginea. This is the first report on powdery mildew of safflower caused by Sphaerotheca fuliginea in Korea.

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Cultural Characteristics and Fruiting Body Production in Cordyceps bassiana

  • Lee, Je-O;Shrestha, Bhushan;Sung, Gi-Ho;Han, Sang-Kuk;Kim, Tae-Wong;Sung, Jae-Mo
    • Mycobiology
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    • v.38 no.2
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    • pp.118-121
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    • 2010
  • Single ascospore isolates of Cordyceps bassiana were observed for their colony pigmentation on Sabouraud Dextrose agar plus Yeast Extract (SDAY) plates and were inoculated in a brown rice medium for production of fruiting bodies. Colony pigmentation did not show any relationship with perithecial stromata formation. The isolates were also grown on opposite sides of SDAY agar plates and were observed for vegetative compatibility. Neither vegetative compatibility nor perithecial stromata could be found to be related to each other. It was concluded that fertile fruiting body production was independent of colony pigmentation and vegetative compatibility. Synnemata formation was found to be more common than perithecial stromata formation. This might be due to its highly conidiogenous anamorphic stage, i.e., Beauveria bassiana.

Revisiting Rhytisma lonicericola: Morphological Characterization and Molecular Phylogenetic Analysis

  • Jung, Bok-Nam;Park, Ji-Hyun;Shin, Hyeon-Dong
    • Mycobiology
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    • v.50 no.2
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    • pp.150-154
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    • 2022
  • Rhytisma lonicericola was identified as a tar spot fungus on Lonicera sp. in 1902, and has since been recorded on several species of Lonicera in China, Japan, and Korea. Most of the previous records of R. lonicericola have been based on a list of disease occurrences in the absence of any formal morphological identification or molecular analyses. Using six newly obtained specimens collected in the past 2 years, we confirmed the tar spot fungus found on L. japonica in Korea as R. lonicericola based on morphological examinations and molecular phylogenetic analyses. This fungus was distinguished from R. xylostei, another tar spot fungus on Lonicera, by ascospore size and geographical distributions. We present detailed mycological information and, for the first time, DNA sequence data useful for the identification of R. lonicericola.

Control of Diatrype stigma Occurred on the Bed-log of Shiitake Using Wood Vinegar, Plant Extracts and Fungicides (목초액, 식물추출물 및 살균제를 이용한 표고골목해균인 주홍꼬리버섯 방제)

  • Bak, Won-Chull;Lee, Bong-Hun;Ka, Kang-Hyeon;Cho, Tae-Soo;Lee, Hak-Joo;Lee, Sung-Suk;Kim, Myung-Kil;Cha, Byeong-Jin
    • The Korean Journal of Mycology
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    • v.34 no.1
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    • pp.22-28
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    • 2006
  • Attempts were made to control Diatrype stigma occurred on the bed-log of Shiitake using wood vinegar, Pinus koraiensis extract, Piper nigrum extract, and fungicides. Mycelial growth of D. stigma was inhibited completely at 35,000 ppm and no ascospore germinated at 25,000 ppm wood vinegar. Inhibition rates of Pinus koraiensis extract (200 ppm), and Piper nigrum extract (1,000 ppm) to ascospore germination were 98.9% and 95.9%, respectively. In fungicide selection, minimum inhibitory concentration (MIC) of benomyl, carbendazim, and thiabendazole ranged $0{\sim}0.4\;{\mu}g\;a.i/m{\ell}$. Difenoconazole at $0.08\;{\mu}g\;a.i/m{\ell}$ inhibited 98.9% of ascospore germination. Inhibition efficacy of fungicides was not highly variable among the low-, middle-, and high-temperature type strains of shiitake. Benomyl, carbendazim, thiabendazole and thiophanate-methyl could not suppress the mycelial growth of Shiitake. Tebuconazole at $0.4\;{\mu}g\;a.i/m{\ell}$ suppressed 80% of the mycelial growth and it was the highest inhibition rate among the fungicides. In field trials, wood vinegar, Pinus koraiensis extract, Piper nigrum extract, and fungicides were sprayed on the bed-logs before or after D. stigma produced pycnidia. Wood vinegar at 150,000 ppm concentration, showed control effect of 72.7% in the treatment before pycnidiospore formation. On the other hand, 70,000 ppm wood vinegar and 1,000 ppm of thiophanate-methyl showed control effects of 58.1% and 52.3% in the treatment after pycnidiospore formation.

Ecology of Disease Outbreak of Circular Leaf Spot of Persimmon and Inoculum Dynamics of Mycosphaerella nawae (감나무 둥근무늬낙엽병의 발생과 병원균(Mycosphaerella nawae)의 전염원 동태)

  • Kwon, Jin-Hyeuk;Park, Chang-Seuk
    • Research in Plant Disease
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    • v.10 no.4
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    • pp.209-216
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    • 2004
  • The circular leaf spot of persimmon is occurred almost every place where persimmon is cultivated, especially the disease outbreak severely in southern part of Korea. The disease reveals unusually long incubation period after pathogen invade into leaf tissue and no practical control measure is available once the symptom has appeared. Most of the farmers just follow the suggested spray schedules calculated on the basis of weather condition of ordinary years. Therefore the damages due to circular leaf spot greatly differ year after year. In this article, we tried to describe and summarized the investigation on the circular leaf spot pathogen, Mycosphaerella nawae, related to disease outbreak such as overwintering of pathogen, inoculum formation and spread, incubation period after infection, and secondary inoculum. With the summary of these results, we suggest the disease cycle of circular leaf spot of persimmon. The pathogen overwinters in diseased leaves as mycelial form or pseudoperithecial premodium. The pseudoperitheria become matured in spring as the temperature raise and forms asci and ascospores. The maturation of pseudoperithecia are closely related to the temperatures during March and early April. The ascospores completely mature in early May and the ascospores released when the pseudoperithecia absorbed enough moisture after rainfall. The release of ascospores are diverse greatly with the variation of maturity of pseudoperithecia. Generally the spore start to release from middle of May to early of July. Duration of ascospore release is depend on the weather condition of particular year, especially amount and number of precipitation. The ascospores produced from pseudoperithecia is known to the only inoculum for circular leaf spot disease. But according to the results obtained from our investigations, the conidia formed on the lesions which incited by natural infection. This conidia are infectious to persimmon leaves and formed identical symptom as natural infection. The time of producing secondary inoculum of circular leaf spot of persimmon is considered too late to develop new disease. Generally the importance of secondary inoculum is low but the conidia produced in early September are competent to develop new disease and new infection also significantly affect to harvest of persimmon. The importance of circular leaf spot disease is recognized well to farmers. The approaches to control of the disease should be initiated on the basis of the knowledges of inoculum dynamics and ecology of disease development. The forecasting system for circular leaf spot is need to be developed.

Note on the New Record of Mitrula paludosa (Geoglossaceae) in Korea (콩나물버섯과 미기록종 Mitrula paludosa (습지등불버섯 : 신칭)의 보고)

  • Park, Yong-Woo;Koo, Chang-Duck;Hong, Dae-Eui;Kim, Tae-Heon
    • The Korean Journal of Mycology
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    • v.37 no.1
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    • pp.104-107
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    • 2009
  • Mitrula paludosa (Geoglossaccae, Helotiales, Ascomycetes) is reported about morphological and ecological characteristics for the first time in Korea. The mushroom fruited on rotten pine leaves or fine twigs in ditches with flowing or standing water in Sogri Mountain National Park from May to June. The apothecium of M. paludosa is 20 to 50 mm tall. The cap is bright yellow to orange, cylindrical to wrinkled ovoid and $5{\sim}10\;{\times}\;10{\sim}20$ mm. The stem is whitish and cylindrical distinctly set off from the cap. The ascospore is hyaline, smooth long elliptical fusoid with round ends and $13{\sim}17\;{\times}\;1.5{\sim}2.0{\mu}m$. The ascus is unitunicate, $90{\sim}110\;{\times}\;5{\sim}6{\mu}m$, and has eight spores biseriately lined to the inoperculate apex. Paraphyses are septate filiform, $95{\sim}120\;{\times}\;1.0{\sim}1.5{\mu}m$, $7{\sim}10{\mu}m$ longer than the asci.

Inhibitory Conditions of Asexual Development and their Application for the Screening of Mutants Defective in Sexual Development (Aspergillus nidulans에 있어서 무성분화(無成分化)의 억제조건(抑制條件)과 이를 이용(利用)한 유성분화결손(有性分化缺損) 돌연변이주(突然變異株)의 대량분리(大量分離))

  • Han, Dong-Min;Han, Yoo-Jeoung;Lee, Young-Hoon;Jahng, Kwang-Yeop;Jahng, Seung-Hwan;Chae, Keon-Sang
    • The Korean Journal of Mycology
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    • v.18 no.4
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    • pp.225-232
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    • 1990
  • In order to find an useful condition under which the mutants defective in sexual development could be isolated, the effects of several cultural conditions on the developments of Aspergillus nidulans were examined. Among several conditions found to restrict the asexual sporulation but enhance the sexual process, the interference of aeration by sealing the plates with sealing film was the most useful one for the purpose of mutant isolation. Sealing at any time before 20 hours from inoculation prevented both sexual and asexual process. When the seal was removed after 24 hours, however, the mycelia developed only to sexual organs. Using this properity, the early morphogenic process of sexual development could be easily observed and a number of mutants that showed some defects in the process could be isolated. The mutants were divided into 3 groups, NSD (never in sexual development), BSD (block in sexual development) and ASD (abnormal in sexual development). NSD mutants never produced either the $H{\ddot{u}}lle$ cells or cleistothecia and some produced the asexual organs even when the aeration was restricted. BSD mutants were blocked in the process of $H{\ddot{u}}lle$ cell, cleistothecia, crozier, asci or ascospore formation. ASD mutants had defects in the amount of cleistothecia, time of cleistothecial maturation or color of ascospores.

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Identification of Fusarium leaf spot(Fusarium nivale) newly reported In Korea (수도갈색엽고병(Fusarium nivale)의 동정)

  • Kwon Shin Han;Song Hi Sup;Sohn Cheong Yeol;Yamakuchi Tomio
    • Korean journal of applied entomology
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    • v.12 no.3
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    • pp.121-124
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    • 1973
  • From the new rice variety Tong-il, disease symptoms similar to Fusarium leaf spot reported in Japan was observed in Korea. Causal organism was isolated and identified as Fusarium nivale causing Fusarium leaf spot through the study of conidia shape, ascus formation on diseased spot, and ascospore. These results also showed good agreement with that of other investigators. Under the field condition, marked occurrence of this disease has observed by heavy nitrogen application. The optimum temperature for the growth of this fungus was $24^{\circ}C$.

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