• Title/Summary/Keyword: Mycosphaerella nawae

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Mass Sporulating Method for Conidial Formation of Mycosphaerella nawae Causing the Spotted Leaf Casting of Persimmon (감나무 둥근무늬낙엽병균(Mycosphaerella nawae)의 분생포자 대량 형성법)

  • Kwon, Jin-Hyeuk;Kang, Soo-Woong;Kim, Dong-Kil;Park, Chang-Senk;Kim, Hee-Kyu
    • Korean Journal Plant Pathology
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    • v.13 no.4
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    • pp.255-256
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    • 1997
  • The mass sporulating method for conidia of Mycosphaerella nawac the causal organism of the spotted leaf casting of persimmon was investigated in this experiment. The conidia of M. nawae were sporulated on artificial media after prolonged period of incubation. The maximum amount of conidia of $39.0{\times}10^4/ml$ was harvested from 90-day old culture on PDA at $25^{\circ}C.$

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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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Identification of the Imperfect Stage of Mycosphaerella nawae Causing Circular Leaf Spot of Persimmon in Korea (감나무 둥근무늬낙엽병균 Mycosphaerella nawae의 불완전 세대 동정)

  • 권진혁;강수웅;박창석;김희규
    • Korean Journal Plant Pathology
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    • v.14 no.5
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    • pp.397-401
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    • 1998
  • Asexual spores of Mycosphaerella nawae were profusely produced on PDA after a prolonged incubation at $25^{\circ}C$ for 90 days. When persimmon trees were artificially inoculated by the conidial suspension, typical symptoms of circular leaf spot of persimmon appeared on the leaves two month later. The imperfect stag of the fungus was identified as Ramularia sp. based on following morphological characteristics examined under a light microscope and a scanning electron microscope. Conidia were mostly ellipsoid, but occasionally cylindrical, elongated oval, taro, peanut or gourd shapes and measured as 12.2~32.6$\times$6.1~10.2 ${\mu}{\textrm}{m}$. erect, hyaline, colorless-light brown. Conidia were formed solitarily or in chains on a medium and infected leaves. Conidiophore was erect, hyaline, colorless-light brown. and the size was 20.4~102.0$\times$3.1~10.2 ${\mu}{\textrm}{m}$, respectively. In this paper, we firstly demonstratrated that asexual spores of M. nawae induced persimmon circular leaf spot in nature as well as sexual spores of the fungus. Therefore, it is hypothesized that the imperfect stage of the fungus plays an important role in nature for epidemics as secondary inoculum.

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Cultural Characteristics of Mcyosphaerella nawae causing Spotted Leaf Casting of Persimmon (감나무 둥근무늬낙엽병균(Mycosphaerella nawae)의 배양적 특성)

  • 권진혁;강수웅;정부근;박창석
    • Plant Disease and Agriculture
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    • v.1 no.2
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    • pp.18-21
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    • 1995
  • Mycosphaerella nawae, the causal organism, of spotted leaf casing disease of persimmon, was isolated from infected leaves showing typical symptom. The cultural characteristics of the fungus were compared on artificial media. Among 24 different combinations of culture media and supplements, oatmeal agar+persimmon leaf extract (PLE) and PAD+ PLE+streptomycin showed the highest rate of isolating as 57.1%. The best medium for mycelial growth of the fungus was PDA+persimmon leaf powder (PLP). The colony diameter was reached 47mm for 30 days at 2$0^{\circ}C$. PDA+PLE also supported good mcyelial growth showing 46mm of diameter in same condition. The optimum growth temperature of this fungus in PDA was recognized fairly low. The mycelial growth was higher at 2$0^{\circ}C$ than 15$^{\circ}C$. The variation of pH between pH 4 to pH 8 did not affect to the mycelial growth of the pathogen.

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Microscopic Observation of the Pseudothecial Development of Mycosphaerella nawae on Persimmon Leaves Infected by Ascospore and Conidia (감나무 둥근무늬낙엽병균 Mycosphaerella nawae의 자낭포자 및 분생포자에 감염된 이병엽 상에서 위자낭각 형성과정 관찰)

  • 권진혁;강수웅;박창석;김희규
    • Korean Journal Plant Pathology
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    • v.14 no.5
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    • pp.408-412
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    • 1998
  • In order to illustrate the role of conidia of Mycosphaerella nawae as a secondary inoculum in nature, pseudothecial development on persimmon leaves was investigated microscopically. The fungal ascospores have been believed as the primary or only inoculum source in nature, however, pseudothecia were readily formed on persimmon leaves infected naturally and artificially by conidia. The pseudothecia of M. nawae were found to form in the tissues of infected leaves while the leaves were still hanging on the trees. The size of pseudothecia were approximately 51.0~122.4$\times$51.0~112.2 ${\mu}{\textrm}{m}$ (82.8 $\times$72.5 ${\mu}{\textrm}{m}$in average), the shapes were spherical, ovoid or occidental pear type. The sizes of asci were approximately 30.6~61.2$\times$8.2~10.2 ${\mu}{\textrm}{m}$(46.6$\times$9.4 ${\mu}{\textrm}{m}$ in average) and the shapes were cylinder or banana. The ascospores were mostly spindle type, and the sizes were 10.2~12.2$\times$3.1~4.1 ${\mu}{\textrm}{m}$ (11.4$\times$3.2 ${\mu}{\textrm}{m}$ in average)-like. The pseudothecial formation was initiated before defoliation and morphological characteristics of the pseudothecia, ascus and ascospores on the infected leaves were fully illustrated in this study. Results indicated that conidia of M. nawae induce circular leaf spot of persimmon as much as ascospores, and might play an important role of the disease epidemics in nature.

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Environmental Factors Affecting Ascospore Release of Mcyosphaerella nawae, the Causal Organism of the Spotted Leaf Casting of Persimmon (감나무 둥근무늬낙엽병균(Mycosphaerella nawae)의 자낭포자 비산에 영향을 주는 환경요인)

  • 권진혁;강수웅;정부근;박창석
    • Korean Journal Plant Pathology
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    • v.11 no.4
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    • pp.344-347
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    • 1995
  • Factors affecting on the ascospore release of Mycosphaerella nawae, the causal organism of persimmon leaf casting disease, were investigated. The ascospore release of the pathogen occurred following the precipitation of rain. The ascospore release started from the beginning of raining, reached maximum at 2 hours after the precipitation of rain, and then decreased abruptly. When the inoculum source (a file of infected leaves) was submerged in water to imitate raining conditions, 92.5% of the total ascospores were released within 1 hour after submerging, 5.8% were after 2 hours, 1.4% were after 4 hours, 0.1% were after 8 hours, and none detected after 10 hours. The inoculum source overwintered in the field released ascospores much more and earlier than the inoculum source kept in the greenhouse. The first ascospore release was about 10 days earlier, and the amount of the total liberated spores was 3∼4 times higher in the field inoculum source than the greenhouse nioculum source. The early defoliated leaves (in early October) in the previous year produced ascospores twice more than the late defoliated leaves (in early November) produced.

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Molecular Phylogeny and Morphology of Mycosphaerella nawae, the Causal Agent of Circular Leaf Spot on Persimmon

  • Lee, Seung-Yeol;Lim, Yang-Sook;Jung, Hee-Young
    • Mycobiology
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    • v.44 no.4
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    • pp.191-201
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    • 2016
  • In this study, the phylogeny and morphology of Mycosphaerella nawae (Dothideomycetes, Ascomycota) were examined using Korean and Japanese isolates, to establish the phylogenetic relationship between M. nawae and its allied species. Korean and Japanese isolates of M. nawae were collected from circular leaf spot-diseased leaves and were confirmed based on internal transcribed spacer (ITS) sequence data. Phylogenetic analysis was conducted using multiple genes, including the ITS region, 28S rDNA, ${\beta}-tubulin$, translation elongation $factor-1{\alpha}$, and actin genes. Our results revealed that M. nawae is closely related to members of the genus Phaeophleospora but are distant from the Ramularia spp. In addition, microscopic analysis revealed pseudothecia on the adaxial and abaxial surface of overwintered diseased leaves (ODL) and only on the abaxial surface of diseased leaves. Ascospores are oval to fusiform, one-septate, tapered at both ends, $1.7{\sim}3.1{\times}8.1{\sim}14.1{\mu}m$, and were observed in ODL. Conidia are oval, guttulate, one-septate, $3.5{\sim}4.9{\times}12.8{\sim}19.8{\mu}m$, and barely discernable on 30-day cultures. To our knowledge, this is the first report on the phylogeny of M. nawae, which is closely related to the genus Phaeophleospora, especially P. scytalidii.

Environmental Factors Affecting Maturation Rate of Pseudorhecia of Mycosphaerella nawae, the Causal Organism of the Spotted Leaf Castin of Persimmon (감나무 둥근무늬낙엽병균(Mycosphaerella nawae)의 위자낭각 성숙에 영향을 미치는 환경요인)

  • Kwon, Jin-Hyeuk;Kang, Soo-Woong;Park, Chang-Seuk;Kim, Hee-Kyu
    • Korean Journal Plant Pathology
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    • v.13 no.4
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    • pp.215-218
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    • 1997
  • The environmental factors affecting maturity of pseudothecia overwintered in iufected leaves by Mycosphaserella nawae was investigated. The pseudothecia in the overwinteringinfected leaves were matured at the end of April when the average temperature was $14^{\circ}C$ and precipitation was enough. Pseudothecia initiation was preceded by the fungal biomass development in a given host. The maturity of the pseudothecia from the leaves defoliated in early October was earlier and higher than those defoliated in November of the previous year. Pseudothecia development was also positively affected by low temperature. The maturity time, as determined by percentage of matured pseudothecia out of prematured ones, was also 20 days earlier, and the rate of maturity was higher for the leaves overwintered in door, than for those kept in greenhouse. We have providedevidence that the conidia play a significant role in the epidemiology of this pathogen. Many pseudothecia were developed in the leaves infected by artificially inoculated conidia and maturation rate of the pseudothecia was not different from that of the typical symptom by ascospores infection of Mycosphaerella nawae.

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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.

A Survey on Diseases and Insect Pests in Sweet Persimmon Export Complexes and Fruit for Export in Korea (단감수출단지 과원과 수출단감 병해충 조사)

  • Jung, Young Hak;You, Eun Ju;Son, Daeyoung;Kwon, Jin Hyeuk;Lee, Dong Woon;Lee, Sang Myeong;Choo, Ho Yul
    • Korean journal of applied entomology
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    • v.53 no.2
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    • pp.157-169
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    • 2014
  • Between 2010 and 2012, diseases and insect pests of sweet persimmon were surveyed at sweet persimmon export complexes and non-export orchards in Suncheon, Jeonnam Province; Jinju, Changwon (Dongeup and Bukmyeon), and Gimhae, Gyeongnam Province; and Ulzu, Ulsan. The following diseases were found in the sweet persimmon orchards: angular leaf spot (Cercospora kaki), anthracnose (Colletotrichum gloeosporioides and Colletotrichum acutatum), circular leaf spot (Mycosphaerella nawae), powdery mildew (Phyllactinia kakicola), and gray mold (Botrytis cinerea). Circular leaf spot was the most frequent and serious disease, and C. gloeosporioides and C. acutatum were found on fruits. Thirty-three insect pest species that belonged to 32 genera of 20 families in 5 orders were found in the sweet persimmon orchards; the two-spotted spider mite, Tetranychus urticae, was also found in the surveyed orchards. Apolygus spinolae, Pseudaulacaspis cockerelli, and Adoxophyes orana were widely found in the surveyed orchards; Spodoptera litura and Homona magnanima were also recorded. Damage by insect pests was low, and the quarantine insect pests peach pyralid moth (Dichocrocis punctiferalis) and persimmon fruit moth (Stathmopoda masinissa) were rarely or not found in the sweet persimmon export complexes. In addition, other quarantine insect pests, such as persimmon false spider mite (Tenuipalpus zhizhilashviliae) and Japanese mealybug (Planococcus kraunhiae), were not detected. These quarantine insect pests were also not found in the sorting places, storage houses, and fruits for export; however, scale insects and two-spotted spider mites were found at a low rate. Although anthracnose (C. acutatum) infested fruit was found in the storage houses, only one in Jinju and Gimhae.