• 제목/요약/키워드: plant bacterial pathogen

검색결과 287건 처리시간 0.022초

참다래 궤양병의 간편한 병원성 검정법 개발 (An Improved Method for Testing Pathogenicity of Pseudomonas syringae pv, actinidiae Causing Bacterial Canker of Kiwifruit)

  • 고숙주;이용환;차광홍;박기범;박인진;김영철
    • 식물병연구
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    • 제8권4호
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    • pp.250-253
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    • 2002
  • 참다래 궤양병의 간단하고 효율적인 병원성 검정법을 개발하고자 수행하였다. 이 검정법은 과민성반응(hypersensitive reaction) 검정법을 변형한 것으로 병원균을 50 mM 인산 완충액(pH 7.5)에 현탁하여 5년생 참다래 상위엽에 주사기를 이용하여 엽육세포에 주입하였다. 병징은 접종 2일 후부터 보이기 시작하여 4일후에 판정이 가능하였으며 검정한계 농도는 $10^4$cfu/ml이었다. 주사접종법을 이용하여 25종에 대한 기주범위를 검정하였을 때 병원균과 기주에 따라 여러 가지 병징을 보였다. 이 검정법은 습도와 관계없이 빠르게 병징을 나타내는 효과적인 방법이었다.

Outbreak and Spread of Bacterial Canker of Kiwifruit Caused by Pseudomonas syringae pv. actinidiae Biovar 3 in Korea

  • Kim, Gyoung Hee;Kim, Kwang-Hyung;Son, Kyeong In;Choi, Eu Ddeum;Lee, Young Sun;Jung, Jae Sung;Koh, Young Jin
    • The Plant Pathology Journal
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    • 제32권6호
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    • pp.545-551
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    • 2016
  • A bacterial pathogen, Pseudomonas syringae pv. actinidiae (Psa), is a causal agent of kiwifruit bacterial canker worldwide. Psa biovar 3 (Psa3) was first detected in 2011 at an orchard in Dodeok-myeon, Goheung-gun, Jeonnam Province in Korea. In this study, we present the results of an epidemiological study regarding Psa3 occurrence on kiwifruit orchards in Korea for the period of 2013 to 2015. Since the first detection of Psa3 in 2011, there was no further case reported by 2013. However, Psa3 was rapidly spreading to 33 orchards in 2014; except for three orchards in Sacheon-si, Gyeongnam Province, most cases were reported in Jeju Island. Entering 2015, bacterial canker by Psa3 became a pandemic in Korea, spreading to 72 orchards in Jeju Island, Jeonnam, and Gyeongnam Provinces. Our epidemiological study indicated that the first Psa3 incidence in 2011 might result from an introduction of Psa3 through imported seedlings from China in 2006. Apart from this, it was estimated that most Psa3 outbreaks from 2014 to 2015 were caused by pollens imported from New Zealand and China for artificial pollination. Most kiwifruit cultivars growing in Korea were infected with Psa3; yellow-fleshed cultivars (Yellow-king, Hort16A, Enza-gold, Zecy-gold, and Haegeum), red-fleshed cultivars (Hongyang and Enza-Red), green-fleshed cultivars (Hayward and Daeheung), and even a kiwiberry (Skinny-green). However, susceptibility to canker differed among cultivars; yellow- and red-fleshed cultivars showed much more severe symptoms compared to the green-fleshed cultivars of kiwifruit and a kiwiberry.

젖소 유방염에서 분리한 Streptococcus 종의 분포 및 항생제 내성 분석 (Prevalence and antimicrobial susceptibility of Streptococcus species isolated from bovine mastitis)

  • 강혜정;홍세림;박다솜;김하영;문진산
    • 한국동물위생학회지
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    • 제45권3호
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    • pp.181-189
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    • 2022
  • Streptococcus is one of the major pathogen groups inducing bovine mastitis. The aim of this study was to investigate the antimicrobial resistance patterns of Streptococcus species isolated from bovine mastitis milk samples in Korea from 2016 to 2021. In total, 181 (10.3%) Streptococcal isolates were collected from 1,761 quarter milk samples at 122 farms; S. uberis 39.2% (n=71), S. dysgalactiae 29.3% (n=53), S. equinus 9.9% (n=18), S. suis 6.1% (n=11), S. parauberis 4.4% (n=8), S. lutetiensis 3.9% (n=7), others 7.2% (n=13). However, S. agalactiae was not isolated. The isolates showed the highest resistance rate to tetracycline (55.2%) followed by erythromycin (45.3%) and pirlimycin (36.5%). In contrast, all isolates were susceptible to ceftiofur, cephalothin, penicillin/novobiocin, and only single S. equinus isolate was resistant to both ampicillin and penicillin. Of 181 isolates, 64 (35.4%) were multidrug resistance (MDR). The resistance to pirlimycin of S. uberis (73.2%) was much higher than that of other species (0~36.4%). All S. suis isolates were resistance to tetracycline. S. dysgalactiae showed lower resistance to erythromycin, pirlimycin and tetracycline than S. uberis and S. suis. The rate of MDR was relatively higher among S. uberis (73.2%) than among S. suis (36.4%), S. dysgalactiae (15.1%), others (0%). In conclusion, antimicrobial resistance in Streptococcus spp. should be regularly examined for appropriate therapies because the resistance patterns were various among the individual species.

아이코사노이드 생합성 저해제인 벤질리덴아세톤의 점박이응애(Tetranychus urticae)와 세균성풋마름병 세균(Ralstonia solanacearum)에 대한 억제효과 (Inhibitory Effects of an Eicosanoid Biosynthesis Inhibitor, Benzylideneacetone, Against Two Spotted Spider Mite, Tetranychus urticae, and a Bacterial Wilt-causing Pathogen, Ralstonia solanacearum)

  • 박예슬;김민제;이건형;천원수;이영근;김용균
    • 농약과학회지
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    • 제13권3호
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    • pp.185-189
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    • 2009
  • 모노터핀의 일종인 벤질리덴아세톤은 곤충병원세균인 Xenorhabdus nematophila의 대사산물이다. 이 물질의 주요 생물활성은 인지질 분해효소인 phospholipase $A_2$를 억제하는 것이다. 이 효소는 아이코사노이드 생합성 반응의 최초 결정단계를 촉매하는 것으로 이 아이코사노이드는 곤충의 면역 반응을 중개하는데 중요하다. 본 연구는 벤질리덴아세톤을 점박이응애(Tetranychus urticae)에 처리하였고, 이 물질의 농도 증가에 따라 응애의 치사율이 높아지는 실내 생물검정 결과를 얻었다. 이에 따라 야외 사과원에 피해를 주는 점박이응애 집단에 처리한 결과 현재 상용화하고 있는 살비제와 비교하여 같은 수준의 살비효과를 나타냈다. 벤질리덴아세톤은 또한 3종의 식물병원세균 배양액에 첨가한 경우 이들 세균의 성장을 억제하였다. 특히 세균성풋마름병을 일으키는 Ralstonia solanacearum에 대해서 현격한 억제효과가 나타났다. 이 세균 균주는 어린 감자묘에 병원성을 나타냈으며, 벤질리덴아세톤은 이 병 발생을 억제시켰다. 이 연구결과는 벤질리덴아세톤이 응애와 식물병 세균을 방제하는 데 새로운 작물보호제로서 개발될 수 있다고 제시한다.

길항성 근원 세균이 딸기 시설재배에서 발생하는 잿빛곰팡이병의 생물학적 제어에 미치는 영향 (Effects of Antagonistic Rhizobacteria on the Biological Control of Gray Mold in Greenhouse Grown Strawberry Plants)

  • 조정일;조자용;양승렬
    • 한국유기농업학회지
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    • 제13권2호
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    • pp.161-173
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    • 2005
  • This study was carried out to clarify the effects of antifungal bacterial strains isolated from the greenhouse soil grown strawberry plants on the growth inhibition of plant pathogen, gray mold (Botrytis cinerea) infected in strawberry plants in Damyang and Jangheung districts. Antagonistic bacterial strains were isolated and investigated into the antagonistic activity against gray mold. Screened ten bacterial strains which strongly inhibited Botrytis cinerea were isolated from the greenhouse grown strawberry plants, and the best antifungal microorganism designated as SB 143 was finally selected. Antifungal bacterial strain SB 143 was identified to be the genus Bacillus sp. based on the morphological and biochemical characterization. Bacillus sp. SB 143 showed 59.4% of antifungal activity against Botrytis cinerea. By the bacterialization of culture broth and heated filtrates of culture broth, Bacillus sp. SB 143 showed 93.1% and 32.1% of antagonistic activity against Botrytis cinerea.

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카네이션의 시설재배에서 길항성 세균을 이용한 Fusarium Wilt 의 생물학적 방제 (Biological Control of Fusarium Wilt of Carnation Plants by Antagonistic Microorganism in Greenhouse)

  • 조정일;조자용
    • 한국유기농업학회지
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    • 제12권2호
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    • pp.183-196
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    • 2004
  • This study was carried out to screen and select the effects of antifungal bacterial strains which inhibit the growth of plant pathogen, Fusarium oxysporum(fusarium wilt) occurred in carnation plants in greenhouse. We isolated an effective bacterial strains and investigated into the antifungal activity of the antagonistic microorganism and it's identification. Twenty bacterial strains which strongly inhibited Fusarium oxysporum were isolated from roots of carnation plants and the soil in greenhouse, and the best antifungal bacteria designated as C121, was finally selected. Antagonistic bacterial strain, C121 was identified to be the genus Bacillus sp. based on the morphological, biochemical and cultural characterizations. The Bacillus sp. C121 showed 58.1% of antifungal activity against the growth of Fusarium oxysporum. By the bacterialization of the cultural broth and the heat bacterialization culture filtrate of it, Bacillus sp. C121 was shown 92.1% and 21.0% of antifungal activity, respectively.

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Suppression of UDP-glycosyltransferase-coding Arabidopsis thaliana UGT74E2 Gene Expression Leads to Increased Resistance to Psuedomonas syringae pv. tomato DC3000 Infection

  • Park, Hyo-Jun;Kwon, Chang-Seob;Woo, Joo-Yong;Lee, Gil-Je;Kim, Young-Jin;Paek, Kyung-Hee
    • The Plant Pathology Journal
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    • 제27권2호
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    • pp.170-182
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    • 2011
  • Plants possess multiple resistance mechanisms that protect themselves against pathogen attack. To identify unknown components of the defense machinery in Arabidopsis, gene-expression changes were monitored in Arabidopsis thaliana under 18 different biotic or abiotic conditions using a DNA microarray representing approximately 25% of all Arabidopsis thaliana genes (www.genevestigator.com). Seventeen genes which are early responsive to salicylic acid (SA) treatment as well as pathogen infection were selected and their T-DNA insertion mutants were obtained from SALK institute. To elucidate the role of each gene in defense response, bacterial pathogen Pseudomonas syringae pv. tomato (Pst) DC3000 was inoculated onto individual T-DNA insertion mutants. Four mutants exhibited decreased resistance and five mutants displayed significantly enhanced resistance against Pst DC3000-infection as measured by change in symptom development as compared to wild-type plants. Among them, member of uridin diphosphate (UDP)-glycosyltransferase (UGT) was of particular interest, since a UGT mutant (At1g05680) showed enhanced resistance to Pst-infection in Arabidopsis. In systemic acquired resistance (SAR) assay, this mutant showed enhanced activation of SAR. Also, the enhanced SAR correlated with increased expression of defense-related gene, AtPR1. These results emphasize that the glycosylation of UGT74E2 is a part of the SA-mediated disease-resistance mechanism.

참다래 꼭지썩음병을 일으키는 Diaporthe actinidiae을 억제하는 길항성 Bacillus sp. #72의 분리 및 동정 (Screening and Identification of Antifungal Bacillus sp. #72 against the Pathogenic Stem-end Rot of Kiwi Fruit)

  • 조정일;조자용;박용서;양승렬;허복구
    • 한국지역사회생활과학회지
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    • 제18권2호
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    • pp.241-246
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    • 2007
  • This study was conducted to select and screen for an antifungal bacterial strain showing pathogen inhibitory activity against Diaporthe actinidiae, which causes stem-end rot in kiwi fruit. Four bacterial strains were isolated which strongly inhibit Diaporthe actinidiae from among two hundred and fifty bacterial strains screened from the soil where kiwi fruit were grown. By co-culturing bacterial strain #72 and the pathogen causing the stem-end rot of kiwi fruit, bacterial strain #72 showed 81.0% antifungal activity against Diaporthe actinidiae. Bacterial strain #72 was identified to be from the genus Bacillus sp. based on morphological and biochemical characterization. The bacterialization of culture broth for Bacillus sp. #72 which was sterilized at $121^{\circ}C$ for 15 minutes and than purified by $0.45{\mu}m$ membrane filter showed almost all of the antagonistic activity against Diaporthe actinidiae. We have also confirmed that in vitro treatment of Bacillus sp. #72 cultured in SD+B+P(sugar 5%, soy sauce 3%, beef extract 0.2%, peptone 0.2%) medium efficiently inhibited the growth of Diaporthe actinidiae responsible for stem-end rot in kiwi fruit.

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Natural Variation in Virulence of Acidovorax citrulli Isolates That Cause Bacterial Fruit Blotch in Watermelon, Depending on Infection Routes

  • Song, Yu-Rim;Hwang, In Sun;Oh, Chang-Sik
    • The Plant Pathology Journal
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    • 제36권1호
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    • pp.29-42
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    • 2020
  • Acidovorax citrulli causes bacterial fruit blotch in Cucurbitaceae, including watermelon. Although A. citrulli is a seed-borne pathogen, it can cause diverse symptoms in other plant organs like leaves, stems and fruits. To determine the infection routes of A. citrulli, we examined the virulence of six isolates (Ac0, Ac1, Ac2, Ac4, Ac8, and Ac11) on watermelon using several inoculation methods. Among six isolates, DNA polymorphism reveals that three isolates Ac0, Ac1, and Ac4 belong to Clonal Complex (CC) group II and the others do CC group I. Ac0, Ac4, and Ac8 isolates efficiently infected seeds during germination in soil, and Ac0 and Ac4 also infected the roots of watermelon seedlings wounded prior to inoculation. Infection through leaves was successful only by three isolates belonging to CC group II, and two of these also infected the mature watermelon fruits. Ac2 did not cause the disease in all assays. Interestingly, three putative type III effectors (Aave_2166, Aave_2708, and Aave_3062) with intact forms were only found in CC group II. Overall, our results indicate that A. citrulli can infect watermelons through diverse routes, and the CC grouping of A. citrulli was only correlated with virulence in leaf infection assays.

A Genome-Scale Co-Functional Network of Xanthomonas Genes Can Accurately Reconstruct Regulatory Circuits Controlled by Two-Component Signaling Systems

  • Kim, Hanhae;Joe, Anna;Lee, Muyoung;Yang, Sunmo;Ma, Xiaozhi;Ronald, Pamela C.;Lee, Insuk
    • Molecules and Cells
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    • 제42권2호
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    • pp.166-174
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    • 2019
  • Bacterial species in the genus Xanthomonas infect virtually all crop plants. Although many genes involved in Xanthomonas virulence have been identified through molecular and cellular studies, the elucidation of virulence-associated regulatory circuits is still far from complete. Functional gene networks have proven useful in generating hypotheses for genetic factors of biological processes in various species. Here, we present a genome-scale co-functional network of Xanthomonas oryze pv. oryzae (Xoo) genes, XooNet (www.inetbio.org/xoonet/), constructed by integrating heterogeneous types of genomics data derived from Xoo and other bacterial species. XooNet contains 106,000 functional links, which cover approximately 83% of the coding genome. XooNet is highly predictive for diverse biological processes in Xoo and can accurately reconstruct cellular pathways regulated by two-component signaling transduction systems (TCS). XooNet will be a useful in silico research platform for genetic dissection of virulence pathways in Xoo.