• 제목/요약/키워드: soft-rot disease

검색결과 140건 처리시간 0.031초

한국에서 Sclerotinia minor에 의한 쑥부쟁이 균핵병 발생 (Occurrence of Sclerotinia Rot by Sclerotinia minor on Aster yomena in Korea)

  • 이상엽;최효원;원항연;한지희;김다연;안성호
    • 한국균학회지
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    • 제46권2호
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    • pp.200-204
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    • 2018
  • 2016년 4월에 한국 구례지역에서 재배하는 쑥부쟁이 줄기에 균핵병이 발생하였다. 그 병징은 주로 줄기에 발생하여 물러 썩어서 심하면 식물체가 마른다. 흰색 균사가 감염된 식물체 줄기와 땅 표면에 퍼져있으며, 병든 줄기 내와 병 발생 부위에 작은 흑색 균핵을 형성하였다. 균핵병은 쑥부쟁이 재배 포장에서 20~80% 높게 발생하였다. 분리균의 형태적 특성 및 유전자 분석에 의하여 이 균은 Sclerotinia minor로 동정하였다. 한국에서 쑥부쟁이에서 분리한 Sclerotinia minor에 의한 균핵병 발생을 처음으로 보고한다.

2000년 농작물 병해 발생 개황 (Review of Disease Incidence of Major Crops in 2000)

  • 김충회
    • 농약과학회지
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    • 제5권1호
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    • pp.1-11
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    • 2001
  • 2000년 기상의 특징은 봄철의 극심한 가뭄과 여름철의 이상고온 및 저온현상, 장마기 두차례의 태풍 및 가을철 집중호우에 의한 침수로 요약된다. 벼는 전년에 비해 잎 이삭도열병이 심하게 발생하였으며, 세균성벼알마름병, 깨씨무늬병이 전국적으로 발생하여 문제시되었다. 고추는 역병과 탄저병이 생육후기에 심하게 발생하여 큰 피해를 가져왔으며 토마토는 일부지역에서 시들음병이, 오이, 수박은 CGMMV, 흰가루병, 급성위조증상, 딸기는 흰가루병이 심하게 발생하였다. 마늘은 파종기의 잦은 강우와 겨울철의 많은 강설로 흑색썩음균핵병이 대발생하였고, 봄감자는 가뭄에 의하여 바이러스병이, 가을감자는 집중호우에 의한 침수로 무름병, 풋마름병이 심하게 발생하였으며 고구마는 여느해와 마찬가지로 덩굴쪼김병의 발생이 심하였다. 사과 배의 병해는 예년에 비해 발생이 경미하였고 맥류의 붉은곰팡이병은 봄철의 가뭄으로 발생이 거의 없었다.

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2002년 농작물 병해 발생개황 (Review of Disease Incidence of Major Crops in 2002)

  • 김충회
    • 식물병연구
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    • 제9권1호
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    • pp.10-17
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    • 2003
  • 2002년은 여러 가지로 기상이 특이한 해였다. 겨울철의 이상난동, 3-4월의 고온 및 한발, 그리고 6월, 7월초중순의 가뭄, 7월하순부터 8월한달 내내 지속된 강우, 저온, 일조부족 등 여러모로 작물환경에 불리한 환경이 조성된 해였다. 이러한 기상특성과 상관하여 금년은 일반적으로 저온, 일조부족, 다우조건을 좋아하는 병해의 발생이 많았으며 벼의 경우 세균성알마름병, 이삭누룩병의 발생이 증가한 반면 도열병 등 주요병해는 질소비료의 시용량이 감소함에 따라 발생이 감소하였다. 채소, 과수류, 서류 병해의 발생은 생육기의 기상조건에 따라 많은 편차가 있으나 다우조건과 관련이 깊은 역병 등 저온성 병해의 발생이 증가한 반면에 탄저병, 무름병 등의 발생은 뚜렷이 감소하는 경향을 보였다.

과거 50년간 고려인삼 병 방제 변천사 (History of Disease Control of Korean Ginseng over the Past 50 Years)

  • 조대휘
    • 인삼문화
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    • 제6권
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    • pp.51-79
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    • 2024
  • 인삼 병해 방제 연구 초기 단계였던 1970~1980년대에는 병원균을 분리하고 동정한 후 병원균의 생리와 발병 특성을 구명하였다. 그에 따라 지상부 주요 병해인점무늬병, 탄저병, 역병, 그리고 주요 토양 병해인 모잘록병, 모썩음병, 균핵병, 잘록병 등에 대한 경종적(耕種的) 예방법과 화학적 방제를 병행하는 방제법이 수립 될 수 있었다. 1980년대에 해가림 피복물이 기존의 볏짚 대신 polyethylene(P.E) 차광망으로 바뀌었다. 이에 따른 병 방제법 개선 연구가 1987~1989년에 진행되었다. 이때의 연구를 통하여 점무늬병 발병 억제를 위한 빗물 누수 최소화 4중직 P.E 차광망 소재가 도입되었다. 1990년부터는 줄기속무름병균을 동정하였고 발병을 억제하는 화경제거법이 수립되었다. 또한 연작장해 원인균인 뿌리썩음병균을 구명하고 연작지 재활용을 위한 토양 훈증방법, 성토방법의 기초 및 응용연구가 진행되었다. 2000년에 들어서는 급속한 기후 변화에 대응하기 위한 방제법 수정과 보완 연구가 수행되었는데 출아기 강우 과다에 의한 줄기점무늬병의 작물보호제 방제법과 잿빛곰팡이병의 경종적 예방법이 수립되었다. 또한 모잘록병, 잘록병의 방제법 개선 방안이 확립되었다. 지난 50년 동안 초기에는 인삼 병의 원인과 방제법의 개발에 주력하였고, 후기에는 개발된 방제법의 개선이 이루어졌다. 이러한 연구 결과를 경험삼아 앞으로 기후변화, 인삼 초작지 고갈, 인건비 상승, 소비자의 안전성 의식제고 등과 같은 여건 변화에 능동적으로 대응할 수 있는 새로운 인삼 재배법과 병해 방제법이 개발되어야 할 것이다.

Characteristics and pathogenicity of Cladobotryum mycophilum isolated from cobweb disease of button mushroom (Agaricus bisporus) in Korea

  • Lee, Chan-Jung;Han, Hye-Su;Jhune, Chang-Sung;Cheong, Jong-Chun;Oh, Jin-A;Kong, Won-Sik
    • 한국버섯학회지
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    • 제9권4호
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    • pp.198-201
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    • 2011
  • Cobweb disease symptoms were observed in a mushroom farm in Buye, Korea during a disease survey in 2008-2011. Five isolates of Cladobotryum sp. were obtained from the infected caps and stipes. These isolates of Cladobotryum sp. were identified as C. mycophilum based on their morphological, cultural characteristics and analysis of the ITS sequences. Early symptoms were noticed as round, fleshy, yellowish brown lesions on mushroom caps. Late symptoms progressed when the parasitic fungus formed white cobweb circular colonies on dead or damaged pinheads, spread on the surface of the casing, and covered entirely fruiting bodies. Optimal temperature and pH for mycelial growth on MEA is $23^{\circ}C$ and 6.0. Microscopically the spores of the fungus are large and most 2~3 celled produced on vertically branched conidiophores. Mushroom caps turned dark brown and shrunk due to soft rot. Testing of sensitivity to selected fungicides showed that isolate was highly resistance to Mancozeb and Thiophanate-methyl, moderately sensitivity to Iprodione, and highly sensitivity to Benomyl, Prochloraz-Mn and Carbendazim.

Distribution of Pectobacterium Species Isolated in South Korea and Comparison of Temperature Effects on Pathogenicity

  • Jee, Samnyu;Choi, Jang-Gyu;Lee, Young-Gyu;Kwon, Min;Hwang, Ingyu;Heu, Sunggi
    • The Plant Pathology Journal
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    • 제36권4호
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    • pp.346-354
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    • 2020
  • Pectobacterium, which causes soft rot disease, is divided into 18 species based on the current classification. A total of 225 Pectobacterium strains were isolated from 10 main cultivation regions of potato (Solanum tuberosum), napa cabbage (Brassica rapa subsp. pekinensis), and radish (Raphanus sativus) in South Korea; 202 isolates (90%) were from potato, 18 from napa cabbage, and five from radish. Strains were identified using the Biolog test and phylogenetic analysis. The pathogenicity and swimming motility were tested at four different temperatures. Pectolytic activity and plant cell-wall degrading enzyme (PCWDE) activity were evaluated for six species (P. carotovorum subsp. carotovorum, Pcc; P. odoriferum, Pod; P. brasiliense, Pbr; P. versatile, Pve; P. polaris, Ppo; P. parmentieri, Ppa). Pod, Pcc, Pbr, and Pve were the most prevalent species. Although P. atrosepticum is a widespread pathogen in other countries, it was not found here. This is the first report of Ppo, Ppa, and Pve in South Korea. Pectobacterium species showed stronger activity at 28℃ and 32℃ than at 24℃, and showed weak activity at 37℃. Pectolytic activity decreased with increasing temperature. Activity of pectate lyase was not significantly affected by temperature. Activity of protease, cellulase, and polygalacturonase decreased with increasing temperature. The inability of isolated Pectobacterium to soften host tissues at 37℃ may be a consequence of decreased motility and PCWDE activity. These data suggest that future increases in temperature as a result of climate change may affect the population dynamics of Pectobacterium.

Different Response Mechanisms of Rhizosphere Microbial Communities in Two Species of Amorphophallus to Pectobacterium carotovorum subsp. carotovorum Infection

  • Min Yang;Ying Qi;Jiani Liu;Penghua Gao;Feiyan Huang;Lei Yu;Hairu Chen
    • The Plant Pathology Journal
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    • 제39권2호
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    • pp.207-219
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    • 2023
  • Soft rot is a widespread, catastrophic disease caused by Pectobacterium carotovorum subsp. carotovorum (Pcc) that severely damages the production of Amorphophallus spp. This study evaluated the rhizosphere bacterial and fungal communities in Pcc-infected and uninfected plants of two species of Amorphophallus, A. muelleri and A. konjac. Principal component analysis showed that the samples formed different clusters according to the Pcc infection status, indicating that Pcc infection can cause a large number of changes in the bacterial and fungal communities in the Amorphophallus spp. rhizosphere soil. However, the response mechanisms of A. muelleri and A. konjac are different. There was little difference in the overall microbial species composition among the four treatments, but the relative abundances of core microbiome members were significantly different. The relative abundances of Actinobacteria, Chloroflexi, Acidobacteria, Firmicutes, Bacillus, and Lysobacter were lower in infected A. konjac plants than in healthy plants; in contrast, those of infected A. muelleri plants were higher than those in healthy plants. For fungi, the relative abundances of Ascomycota and Fusarium in the rhizosphere of infected A. konjac plants were significantly higher than those of healthy plants, but those of infected A. muelleri plants were lower than those of healthy plants. The relative abundance of beneficial Penicillium fungi was lower in infected A. konjac plants than in healthy plants, and that of infected A. muelleri plants was higher than that of healthy plants. These findings can provide theoretical references for further functional research and utilization of Amorphophallus spp. rhizosphere microbial communities in the future.

Activation of Defense Responses in Chinese Cabbage by a Nonhost Pathogen, Pseudomonas syringae pv. tomato

  • Park, Yong-Soon;Jeon, Myeong-Hoon;Lee, Sung-Hee;Moon, Jee-Sook;Cha, Jae-Soon;Kim, Hak-Yong;Cho, Tae-Ju
    • BMB Reports
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    • 제38권6호
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    • pp.748-754
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    • 2005
  • Pseudomonas syringae pv. tomato (Pst) causes a bacterial speck disease in tomato and Arabidopsis. In Chinese cabbage, in which host-pathogen interactions are not well understood, Pst does not cause disease but rather elicits a hypersensitive response. Pst induces localized cell death and $H_2O_2$ accumulation, a typical hypersensitive response, in infiltrated cabbage leaves. Pre-inoculation with Pst was found to induce resistance to Erwinia carotovora subsp. carotovora, a pathogen that causes soft rot disease in Chinese cabbage. An examination of the expression profiles of 12 previously identified Pst-inducible genes revealed that the majority of these genes were activated by salicylic acid or BTH; however, expressions of the genes encoding PR4 and a class IV chitinase were induced by ethephon, an ethylene-releasing compound, but not by salicylic acid, BTH, or methyl jasmonate. This implies that Pst activates both salicylate-dependent and salicylate-independent defense responses in Chinese cabbage.

Erwinia rhapontici가 기주식물 조직에서 생산한 Pectate Lyase의 특성 (Characterization of Pectate Lyase Produced by Erwinia rhapontici During Growth in Host Plant Tissue)

  • 최재을
    • 한국식물병리학회지
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    • 제10권3호
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    • pp.163-168
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    • 1994
  • Erwinia rhapontici causes soft-rot disease in a number of plants such as rhubarb, onion, hyacinth and garlic. Pectate lyase (Pel) depolymerizes pectin and other polygalacturonates, which is though to play a role in bacterial invasion of plants. Pel activity was not detected in E. rhapontici cultured in a minimal salts medium containing glycerol, polygalacturonate, or citrus pectin as a carbon source. However, when sterilized potato tuber and Chinese cabbage slices were added to minimal salts polygalacturonate (0.5%) medium, E. rhapontici produced pectate lyase enzyme. Also Pel activity was consistently detected from macerated potato tubers, Chinese cabbage leaves, lettuce leaves and celery petioles tissue. Pel in the extract of macerated Chinese cabbage caused by E. rhapontici strain 1, resulted in electrolyte loss, tissue maceration and cell death of potato tuber tissue. These results indicate that E. rhapontici produces pectate lyase only in the presence of non-diffusible plant components, and that this enzyme probably contributes to its pathogenicity.

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Isolation and Characterization of Oligotrophic Bacteria Possessing Induced Systemic Disease Resistance against Plant Pathogens

  • Han, Song-Hee;Kang, Beom-Ryong;Lee, Jang-Hoon;Kim, Hyun-Jung;Park, Ju-Yeon;Kim, Jeong-Jun;Kim, Young-Cheol
    • The Plant Pathology Journal
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    • 제28권1호
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    • pp.68-74
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    • 2012
  • Biocontrol microbes have mainly been screened among large collections of microorganisms $via.$ nutrient-rich $in$ $vitro$ assays to identify novel and effective isolates. However, thus far, isolates from only a few genera, mainly spore-forming bacilli, have been commercially developed. In order to isolate field-effective biocontrol microbes, we screened for more than 200 oligotrophic bacterial strains, isolated from rhizospheres of various soil samples in Korea, which induced systemic resistance against the soft-rot disease caused by $Pectobacterium$ $carotovorum$ SCC1; we subsequently conducted in $planta$ bioassay screening. Two oligotrophic bacterial strains were selected for induced systemic disease resistance against the $Tobacco$ $Mosaic$ $Virus$ and the gray mold disease caused by $Botrytis$ $cinerea$. The oligotrophic bacterial strains were identified as $Pseudomonas$ $manteilii$ B001 and $Bacillus$ $cereus$ C003 by biochemical analysis and the phylogenetic analysis of the 16S rRNA sequence. These bacterial strains did not exhibit any antifungal activities against plant pathogenic fungi but evidenced several other beneficial biocontrol traits, including phosphate solubilization and gelatin utilization. Collectively, our results indicate that the isolated oligotrophic bacterial strains possessing induced systemic disease resistance could provide useful tools as effective biopesticides and might be successfully used as cost-effective and preventive biocontrol agents in the field.