• Title/Summary/Keyword: 탄저병

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I. Anthracnose of Tea Tree Caused by Collectotrichum theae-sinensis (차나무의 병해 I. Collectotirchum theae-sinensis에 의한 차 탄저병)

  • 박서기
    • Plant Disease and Agriculture
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    • v.1 no.2
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    • pp.26-28
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    • 1995
  • Anthracnose of tea tree, Camellia sinensis, occurred severely at tea plantation of Boseung, Chonnam. Irregular, dark brown spots appeared on tips and margins of mature leaves in early stage. As the disease progresses, the lesions were covered with numerous, small, black, slightly raised pustules (acervuli). The causal fungus of anthracnose was identified as Colletotrichum theae-sinensis (Miyake) Yamamoto. Symptoms by C. theae-sinensis appeared around 20 days after artificial inoculation.

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In Vitro Antifungal Activities of 13 Fungicides against Pepper Anthracnose Fungi (고추 탄저병균에 대한 13종 살균제의 살균 활성)

  • Choi, Yong-Ho;Kim, Heung-Tae;Kim, Jin-Cheol;Jang, Kyoung-Soo;Cho, Kwang-Yun;Choi, Gyung-Ja
    • The Korean Journal of Pesticide Science
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    • v.10 no.1
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    • pp.36-42
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    • 2006
  • For the effective control of pepper anthracnose, in vitro antifungal activities of 13 commercial fungicides were tested on spore germination, mycelial growth, and sporulation of Colletotrichum gloeosporioides, anthracnose fungus. Among them, captan, chlorothalonil, dithianon, fluazinam and folpet completely inhibited the spore germination of C. gloeosporioides at the concentration of 0.8 ${\mu}g/ml$. They were followed by mancozeb and propineb, showing more than 80% inhibition of spore germination at 20 ${\mu}g/ml$. The mycelial growth of C. gloeosporioides was strongly inhibited by fluazinam and nuarimol. Except for nuarimol, most of the fungicides represented more antifungal activity on the spore germination than the mycelial growth of C. gloeosporioides. Azoxystrobin and metominostrobin, Strobilurin fungicides, were only moderately active against the spore germination and the mycelial growth of C. gloeosporioides, but they were effective antisporulant against C. gloeosporioides. From these results, control of pepper anthracnose will have achieved by preventive spray of the commercial fungicides.

Identification and Pathogenicity of Colletotrichum Species Causing Anthracnose of Korean Radish (Rhaphanus sativus) in Korea (무 탄저병을 일으키는 Colletotrichum속의 종 동정 및 병원성)

  • Choi, Hyo-Won;Kim, Jeomsoon;Hong, Sung Kee;Lee, Young Kee
    • The Korean Journal of Mycology
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    • v.47 no.4
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    • pp.393-406
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    • 2019
  • In August 2017, anthracnose symptoms were observed on the petioles and leaf veins of Korean radish (Rhaphanus sativus) in Hongcheon, Jeongseon, and Pyeongchang of the Gangwon province, Korea. Many grayish to dark-brown spots of 1-2 mm in diameter, appeared on the lower surface and leaf veins of the radish leaves. The spots gradually enlarged and coalesced to form dark-brown irregular lesions. Ten Colletotrichum isolates were obtained from the affected tissues of the Korean radish. Out of them, eight isolates were identified as C. higginsianum and two isolates were identified as C. truncatum based on morphological characteristics and multi-locus molecular phylogenetic analysis using the internal transcribed spacers and intervening 5.8S rDNA (ITS), partial beta-tubulin gene (TUB2), partial actin gene (ACT), and partial chitin synthase-1 gene (CHS1). The pathogenicity test was carried out on wounded and unwounded Korean radish (cv. Siraegimu and Osarimu), and Chinese cabbage (cv. Chuno and Smart) by inoculating with a spore suspension. All isolates except one C. truncatum isolate developed typical symptoms on both wounded and unwounded Korean radish. In Chinese cabbage, only the plants inoculated with C. higginsianum isolates developed symptoms regardless of the wound. This is the first report of anthracnose caused by C. truncatum on Korean radish in Korea.

Research to Fungicide Sensitivity of Colletotrichum spp. Isolated from Apple Fruits in Cheongsong, Korea (사과 주 재배지 경북 청송 지역 사과 탄저병원균의 살균제에 대한 감수성 조사)

  • Jungyeon Kim;Heung Tae Kim;Yongho Jeon
    • Research in Plant Disease
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    • v.29 no.2
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    • pp.145-157
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    • 2023
  • Apple grower in the Cheongsong region, Korea has reported the increased loss of apple yield due to severe bitter rot incidence. We noticed that this indience is because the Colletotrichum population has developed resistance to commonly used fungicides. We isolated 39 Colletotrichum isolates from 13 orchards in Cheongsong, and all the isolated Colletotrichum species were identified as C. siamense or C. fructicola. These 39 strains were tested for mycelial growth and conidial germination against 12 fungicides. trifloxystrobin (30-55% in recommended concentrations) was shown lower inhibitory effect on mycelial growth. However, the inhibition of conidial germination was shown higher than mycelial growth (62-100%). Kresoxim-methyl was shown lower inhibitory effect on mycelial growth (29-55%). conidial germination inhibitory effect was shown 51% to 96%. dithianon was shown diversity response to inhibition of mycelial growth (43-100%). Tebuconazole was shown high inhibitory effect on mycelial growth (84-100%) and conidial germination inhibitory effect was shown to be 64 to 100%. metconazole has been found to display with high inhibitory effect on mycelial growth (79-100%) and conidial germination (70-80%). fluazinam was shown to possess high inhibitory effect on mycelial growth (87-100%) and conidial germination (94-100%). This study provides basic information for the effective management of apple bitter rot.

Isolation of Antagonistic Microorganism for Biological Control to Apple Diseases, Bitter Rot (사과 탄저병 방제를 위한 길항미생물 분리)

  • Cho, Jung-Il;Hahn, Cheol-Joo;Ahn, Pyong-Ryol;Park, Jin-Hyung;Park, Heung-Sub
    • Korean Journal of Organic Agriculture
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    • v.7 no.2
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    • pp.99-106
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    • 1999
  • In order to acquire microbial agents that can be utilized for biological control of bitter rot(Glomerella cingulata), the major airborne disease to apple, the effective microorganisms were isolated, tested for antagonistic activity to the pathogen. Through the screening of more than 1,000 species of microorganisms collected in nature, 11 species of antagonists were selected. On of the 11 species, one species designated as CH141 demonstrated outstanding activity. The bacterial strain, CH1141 exerted antagonistic efficiency of 65% on Glomerella cingulata. The CH1141 was identified as a bacterial strain to Bacillus subtilis based on morphology, culture conditions, and physiobiochemical characteristics.

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Control Effects of Benzylideneacetone Isolated from Xenorabdus nematophilla K1 on the Diseases of Redpepper Plants (Xenorhabdus nematophilla 유래물질 벤질리덴아세톤의 고추 병해 방제 효과)

  • Park, Su-Jin;Jun, Mi-Hyun;Chun, Won-Su;Seo, Ji-Ae;Yi, Young-Keun;Kim, Yong-Gyun
    • Research in Plant Disease
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    • v.16 no.2
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    • pp.170-175
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    • 2010
  • A monoterpenoid benzylideneacetone (BZA) is a bacterial metabolite isolated from culture broth of an entomopathogenic bacterium, Xenorhabdus nematophila K1. It was tested in this study the control efficacy of the metabolite against two major fungal diseases occurring in red-pepper plants. BZA exhibited significant antifungal activities against Phytophthora capsici and Colletotrichum acutatum. Under natural light conditions, the antifungal activity of BZA was maintained for more than sixty days. The antifungal activity of BZA was not lost even in soil because the incidence of Phytophthora blight against red-pepper plants was significantly reduced when the suspensions of P. capsici were poured to the rhizosphere soils mixed with BZA. Application of the BZA suspension spray to the fruit surface infected with C. acutatum significantly suppressed the disease occurrence of anthracnose on the red-pepper plants. These results suggest that BZA can be used to develop a promising agrochemical to control phytophthora blight and anthracnose of redpepper plants.

Control Effects of Indole Isolated from Xenorhabdus nematophila K1 on the Diseases of Red Pepper (Xenorhabdus nematophila K1 유래물질 인돌의 고추 병해 방제 효과)

  • Jeon, Mi-Hyeon;Cheon, Won-Su;Kim, Yong-Gyun;Hong, Yong-Pyo;Yi, Young-Keun
    • Research in Plant Disease
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    • v.18 no.1
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    • pp.17-23
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    • 2012
  • Indole compound is a bacterial metabolite synthesized and released by an entomopathogenic bacterium, Xenorhabdus nematophila K1. The antibiotic activity was evaluated against plant pathogens, such as Phytophthora blight and anthracnose of red pepper. Indole significantly suppressed mycelial growth of Phytophthora blight and anthracnose pathogens. Under natural sunlight conditions, indole maintained the antifungal activity for at least sixty days. The activity was not affected under the condition of soil-water. When the indole suspension was applied to surface soil before transplanting of red pepper seedlings and was then regularly sprayed to the foliage of the plants with ten days interval, it resulted in significant reduction of the disease occurrences (Phytophthora blight, anthracnose, soft rot, and black mold) by about 30%. These results suggest that indole can be used to control Phytophthora blight and anthracnose of red pepper.