• Title/Summary/Keyword: 식물병원균

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Detection of Xanthomonas axonopodis pv. glycines and Survey on Seed Contamination in Soybean Seeds Using PCR Assay (PCR Assay 이용 콩 종자에서 Xanthomonas axonopodis pv. glycines 검출 및 종자오염 조사)

  • Hong, Sung-Jun;Hong, Yeon-Kyu;Lee, Bong-Choon;Lim, Mi-Jung;Yoon, Young-Nam;Hwang, Jae-Bok;Song, Seok-Bo;Park, Sung-Tae
    • Research in Plant Disease
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    • v.13 no.3
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    • pp.145-151
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    • 2007
  • Xanthomonas axonopodis pv. glycines is the causal agent of bacterial pustule of soybean(Glycine max. (L.) Merr), which is one of the most prevalent bacterial diseases in Korea. In this study, Polymerase Chain Reaction (PCR) assay was applied to detect Xanthomonas axonopodis pv. glycines and to survey on seed contamination in 36 soybean cultivars of Korea. And we have to compare PCR assay with dilution-plating assay of detection and identification. We confirmed detection of pathogen from artificial infected seeds and natural Infected seeds using PCR assay. This assay gave results similar to a seed-wash dilution plating assay and proved more effective than classical methods. Results of survey on seed contamination by X. axonopodis pv. glycines from 36 cultivar seeds showed that the pathogen was detected from Pungsan-namulkong, Mallikong, Taekwangkong, Daemangkong, Ajukkarikong using PCR assay. Therefore, The PCR assay provides a sensitive, rapid tool for the specific detection of X. axonopodis pv. glycines in soybean seeds.

First Report of Charcoal Rot Caused by Macrophomina phaseolina on Glycine max in Korea (Macrophomina phaseolina에 의한 콩 균핵마름병(가칭) 발생)

  • Ko, Young Mi;Choi, Jiyoung;Lee, Yeong Hee;Kim, Heung Tae
    • Research in Plant Disease
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    • v.26 no.1
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    • pp.29-37
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    • 2020
  • Stem blight symptom of soybean was severely developed in 2016 in Hwaseong and Yeoncheon. During the seedling period, the damping-off of seedlings and the brown or black spots of cotyledons were observed. After August, the leaves began to be yellowed, and partially browned areas on leaves began to develop. After September, microsclerotia began to form even on the surface of the stems that had exhibited water-soaking symptom. After mid-October of the harvest season, the epidermis of the stem was peeled off, resulting in the formation of a large number of microsclerotia in the cortex. The pathogens isolated from these symptoms were the best in mycelial growth at 32-35℃, and the formation of microsclerotia was the most at 20-28℃. The pathogen was identified as Macrophomina phaseolina through the morphological characteristics of the pathogen and the sequencing of the internal transcribed spacer region gene. In addition, when inoculated with a soybean stem using toothpicks cultured with the pathogen, the same symptoms as seen on the soybean field occurred. When the pathogen was re-isolated at the lesion site, the same pathogen was isolated and identified as Macrophomina phaseolina. Based on the results, the disease is reported as soybean charcoal rot.

Effects of Development Time and Severity of Rice Ear Blight on Rice Yield and Quality (벼 이삭마름병 발병시기와 정도가 수량 및 품질에 미치는 영향)

  • Shim Hong-Sik;Hong Sung-Jun;Hong Sung-Gi;Kim Yong-Ki;Ye Wan-Hae;Sung Jae-Mo
    • Research in Plant Disease
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    • v.12 no.1
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    • pp.5-9
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    • 2006
  • Grain discoloration, caused by several microorganisms, is a minor disease, but it is gaining importance in almost all rice growing areas of the world in recent years. Such grains are of low market value and consumption appeal in addition to their abnormal performance as seed of source of nutrient value. When the casual agents were inoculated on rice plant,'Ilmi-byeo'(at right before heading time and on heading time), the incidence of rice ear blight caused by Alternaria alternate and Nigrospora oryzae was higher in a plot inoculated at right before heading time than (in n plot inoculated) on heading time. Meanwhile, the incidence of rice ear blight caused by Bipolaris oryzae and Curvularia lunate was higher in a plot inoculated on heading time than in a plot inoculated at right before heading time. In rice quality, the ratio of imperfect grains was increased at right before heading time or on heading time by Nigrospora oryzae or Alternaria alternata, respectively. As discoloration rate of rice grains increased on 'Ilmi-byeo', the percentage of perfect grains decreased proportionally and the percentage of damaged rice grains increased remarkably.

Induction of Disease Resistance by Acibenzolar-S-methyl, the Plant Activator against Gray Mold (Botrytis cinerea) in Tomato Seedlings (저항성 유도물질(acibenzolar-S-methyl)처리에 의한 토마토 잿빛곰팡이병 발병억제)

  • Lee Jung-Sup;Kang Nam-Jun;Seo Sang-Tae;Han Kyoung-Suk;Park Jong-Han;Jang Han-Ik
    • Research in Plant Disease
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    • v.12 no.1
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    • pp.40-45
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    • 2006
  • The plant defence activator, Acibenzolar-S-methyl [benzo (1,2,3) thiadiazole-7-carbothioic acid-S-methyl ester, ASM] was assayed on tomato seedlings for its ability to induce resistance against Botrytis cinerea, the causal agent of gray mold in tomato. Pre-treatment of plants with ASM reduced the severity of the disease as well as the growth of the mycelium in plants. In ASM treated plants, reduction in disease severity (up to 55%) was correlated with suppression of mycelia growth (up to 46.5%) during the time course of infection. In plants treated with ASM, activities of peroxidase were determined as markers of resistance. Applications of ASM induced Progressive and significant increase of the enzyme in locally treated tissues. Such responses were expressed earlier and with a much higher magnitude when ASM-treated seedlings were challenged with the pathogen, thus providing support to the concept that a signal produced by the pathogen is essential for triggering enhanced synthesis and accumulation of the enzymes. No such activities were observed in water-treated control plants. Therefore, the slower symptom development and reduction in mycelium growth in ASM treated plants might be due to the increase in activity of oxidative and antioxidative protection systems in plants.

Biological Control of Phytophthora Blight and Anthracnose Disease in Red-pepper Using Bacillus subtilis S54 (Bacillus subtilis S54 균주를 이용한 고추 역병과 탄저병의 생물학적 방제)

  • Lee, Gun-Woong;Kim, Myung-Jun;Park, Jun-Sik;Chae, Jong-Chan;Soh, Byoung-Yul;Ju, Jae-Eun;Lee, Kui-Jae
    • Research in Plant Disease
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    • v.17 no.1
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    • pp.86-89
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    • 2011
  • Phytophthora blight and anthracnose disease caused by Phytophthora capsici and Collectotrichum gloeosporioides are the most important devastating diseases of red pepper plants, worldwide. Five different bacterial isolates were isolated from the red pepper rhizosphere and non-rhizosphere soil and subsequently tested for antagonistic activity against P. capsisi and C. gloeosporioides. The area of the inhibition zone was taken as a measure for antagonistic activity. Among the 5 isolates tested, S54 exhibited a maximum antagonistic activity under in vitro and in vivo conditions. In greenhouse studies the isolate has successfully reduced the disease symptom. Protect value was 80.8% (Phytophthora blight) and 81.9% (Anthrancnose disease), whereas the infection rate of control plants was 21.3% and 23.2%. Based on the 16S rDNA sequence and API 50CHB Kit analysis the most effective isolate was identified as Bacillus subtilis. The results of the study indicate that the stratin S54 could be used as an potential biological control of Phytophthora blight and anthracnose disease of red pepper.

Sclerotinia Shoot Rot of Grapevine (Vitis spp.) Caused by Sclerotinia sclerotiorum in Korea (Sclerotinia sclerotiorum에 의한 포도나무 균핵병 발생)

  • Park, Jong-Han;Han, Kyung-Sook;Han, You-Kyoung;Lee, Jung-Sup;Kim, Dae-Hyun;Hwang, Jeong-Hwan
    • Research in Plant Disease
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    • v.15 no.3
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    • pp.259-261
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    • 2009
  • Sclerotinia shoot rot of Grapevine(Vitis labruscana) occurred at Gapyeong and Yeongwol area from 2003 to 2005. Infected plants showed shoot blight at the one-year-old fruit bearing branches. The first visible symptom noticed was wilting and blighting of the branches. The obvious and typical initial symptom is the presence of a cottony, white, dense mat of mycelial growth on the surface of the diseased lesions. The base or stem of the infected young shoots develop a pale brown rotted area, which girdled and killed shoots. In advanced stages of the disease, stems and branches became bleached and eventually died. The isolates collected from diseased grapevine stem were identified as Sclerotinia sclerotiorum based on the morphological and cultural characteristics. The pathogenicity test revealed that Vitis vinifera(cultivar: Kyoho) was stronger than V. labruscana(cultivar: Campbell early) to the pathogen. This is the first report on sclerotinia shoot rot of grapevine in Korea.

Control of Tomato Wilt Disease by Amending pH of Nutrient Solution in Hydroponic System (토마토 수경재배에서 배양액의 pH 조절에 의한 풋마름병 방제)

  • Lee Jung-Sup;Choi Ji-Ho;Seo Sang-Tae;Han Kyoung-Suk;Park Jong-Han;Jang Han-Ik
    • Research in Plant Disease
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    • v.11 no.2
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    • pp.193-197
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    • 2005
  • The effect of pH on the survival of R. solanacearum and its transmission via roots of tomato in hydroponic culture were studied in laboratory and greenhouse. In laboratory experiment, R. solanacearum could not survive for 24h in nutrient solution with pH of $4{\cdot}0;or\;4{\cdot}5$, while 1, 14, 51 and $62\%$ of inoculum survived at pH $5{\cdot}0,\;5{\cdot}6\;and\;6{\cdot}5$, respectively. When tomato plants were inoculated with R. solanacearum through wounds on the stems, the bacteria moved downward from the inoculation site to the roots and infectious bacteria were released from the roots into the nutrient solution. Of two pH regimes tested in greenhouse nutrient-film technique(NFT) culture, the R. solanacearum population was significantly lower in pH 5.0 than in pH 6.5 in most sampling data. In treatments in which R. solanacearum was introduced by transplanting two root-inoculated plants, significantly move plants developed wilt at pH $6{\cdot}5$(34 out of 48 plants) than at pH 5.0(11 out of 48 plants). In addition, when the bacterium was introduced by transplanting two stem-inoculated plants at pH $6{\cdot}5$, seven out of 24 plants developed wilt.

Estimation of the Chitinolytic and Antifungal Activity of Streptomyces sp. CA-23 and AA-65 isolates Isolated from Waste Mushroom Media (버섯 폐배지로부터 분리한 방선균 균주 CA-23과 AA-65균주의 키틴 분해능력과 항균력 검정)

  • Shim, Chang-Ki;Kim, Min-Jeong;Kim, Yong-Ki;Jee, Hyeong-Jin;Hong, Sung-Jun;Park, Jong-Ho;Han, Eun-Jung;Kim, Seuk-Chul
    • The Korean Journal of Pesticide Science
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    • v.19 no.4
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    • pp.402-410
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    • 2015
  • The purpose of this study was to estimate the chitinolytic and antifungal activity of Actinomycetes sp.isolated from waste mushroom media. In five kinds of waste mushroom media, Sinyeong mushroom and Yangsongi were the order of the population density of actinomycetes. Totally 91 chitinolytic isolates of Actinomycetes sp. were obtained from waste mushroom media. The isolates were categorized into 3 groups based on chitinolytic activity and antagonisms against Phytophthora capsici, Rhizoctonia solani, Sclerotinia sclerotiorum, Collectotrichum gloeosporioides, and Cladosporium cucumerinum in vitro. CA-23 was selected as a representative isolate of a group showing strong chitinolytic and antagonistic activities to all of the plant pathogens, while AA-65 was selected as a representative isolate showing no chitinolytic activities but strong antagonistic activities to the pathogens. CA-23 and AA-65 were highly effective on control of Phytophthora blight of hot-pepper, powdery mildew and scab of cucumber in a greenhouse tests. Among the isolates tested, CA-23 showed highest control efficacy, while AA-65 not only effectively controlled the diseases but also consistently increased plant growth and yield. Although the isolates are similarly affected on suppression of plant pathogens, the isolates could be differ from each other in modes of action. Further studies on mechanisms and practical applications are being progressed.

Identification and Molecular Characterization of Methionine Sulfoxide Reductase B Gene in Rice Blast Fungus, Magnaporthe oryzae (벼도열병균에서의 methionine sulfoxide reductase B 유전자의 분자적 특성)

  • Kim, Jeong-Hwan;Kim, Jin-Soo;Jeong, Mi-Yeon;Choi, Woo-Bong
    • Journal of Life Science
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    • v.19 no.3
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    • pp.343-348
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    • 2009
  • Magnaporthe oryzae, a major cause of rice blast, is one of the most destructive plant fungal pathogens. Secretion of reactive oxygen species (ROS) during the infection phase of plant pathogenic fungus plays a key role in the defense mechanism of a plant. ROS causes oxidative damage and functional modification to the proteins in a pathogenic fungus. Methionine, especially, is a major target of ROS, which oxidizes it to methionine sulfoxide. To survive from the attack of ROS, plant pathogenic fungus has antioxidative systems - one example would be methionine sulfoxide reductase B (MSRB), which reverses the oxidative alteration of methionine to methionine sulfoxide. In the present study, identification and molecular characterization of the MSRB gene in M. oryzae KJ201 were investigated. The MSRB gene was amplified by PCR from the M. oryzae KJ201 genomic DNA. The copy number of MSRB in the genome of M. oryzae KJ201 was identified by Southern blot analysis, which revealed that the gene exists as a single copy. To study the molecular function of an MSRB gene, the expression level of the MSRB gene was assayed with hydrogen peroxide treatment by Northern blot analysis and RT-PCR. The expression of the MSRB gene was increased by treatment of hydrogen peroxide, without significant correlation to hydrogen peroxide concentrations. These results indicate that the MSRB gene in M. oryzae KJ201 could contribute to protection against plant defense compounds such as ROS and offer a novel strategy for the control of rice blast.

Herbicidal and Antifungal Activities of the aqueous extracts of Persicaria longiseta (개여뀌의 제초 및 항균활성 탐색)

  • Choi, Go-Bong;Woo, Seong-Bae;Song, Jin-Young;Kang, Jeong-Hwan;Kim, Tae-Keun;Kim, Hyoun-Chol;Song, Chang-Khil
    • Korean Journal of Organic Agriculture
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    • v.23 no.3
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    • pp.481-495
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    • 2015
  • The study researched germination of the plants and growth of Fungus according to concentration of aqueous extracts in order to provide basic data for developing natural agricultural resources by using Persicaria longiseta. The seed germination of Amaranthus spinosus was inhibited at 25% P. longiseta extract, while Agrostis stolonifera ssp. palustris was not affected at all concentrations tested. Especially, the seed germination rate and fresh weight of Trifolium incarnatum at 20% P. blumei extract were higher than those of control plot. The early growth of most receptor plant seedlings was promoted at 25% and 50% of P. blumei extracts, but the radicle growth of all receptor plants was significantly inhibited at > 25% of P. longiseta extract. The response of receptor plants to P. longiseta extract was different according to the plant species and the plant parts. The growth of plant pathogenic fungus in PDA medium showed an increasing inhibition tendency with increasing concentrations of P. longiseta extract. Especially, P. longiseta extract showed the greatest antimicrobial activity against Phytophthora infestans, Phythium graminicola, and Pythium venterpoolii. The content of total phenolic compound in P. longiseta was higher in leaves (1082.3 mg/L) but lower in roots (228.6 mg/L) and stems (207.8 mg/L), which is an allelopathic chemical. As these results are summarized, P. longiseta have competitive advantage because they release phenolic compounds with allelopathic effect and affect on germination, growth and fungi growth on underground flora compared to native plants and they have eligibility for natural herbicide and germicide.