• 제목/요약/키워드: Plant pathogens

검색결과 852건 처리시간 0.028초

Antagonistic and Plant Growth Promoting Activity of Bacillus species Isolated from Brackish Environment

  • Kamala-Kannan, Seralathan;Lee, Kui-Jae;Oh, Byung-Taek
    • 한국자원식물학회:학술대회논문집
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    • 한국자원식물학회 2010년도 정기총회 및 춘계학술발표회
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    • pp.6-6
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    • 2010
  • Bacteria of the Bacillus sp. are well known to possess antagonistic activity against numerous plant pathogens. In the present study, 11 Bacillus sp. were isolated from the brackish environment and assayed for antagonistic activity under in vitro and in vivo conditions. Among the 11 isolates tested, 9 isolates effectively inhibited the growth of various plant pathogens, namely Phytophthora capsici, Phytophthora citropthora, Phytophthora citricola, Phytophthora sojae, Colletotricum coccodes, Colletotricum gloeosporioides, Colletotricum acutatum, Rhizoctonia solani, Fusarium solani, Fusarium graminearum, Pyricularia sp. and Monilina sp. The effective isolates were further screened for Phytophthora blight suppression in Capsicum annuum L. under green house conditions. The isolate SB10 exhibited the maximum (72.2%) reduction in disease severity. The antifungal compounds from the isolate were isolated and characterized. The isolated compounds exhibited high thermo stability ($100^{\circ}C$ for 30 min). Matrix-Assisted Laser Desorption Ionization-Time of Flight investigation of the antifungal compounds revealed three lipopeptide complexes, the surfactins, the iturins, and the fengycins.

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Epidemiological Concepts and Strategies in Breeding Soybeans for Disease Resistance

  • Seung Man, Lim
    • 한국작물학회지
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    • 제35권1호
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    • pp.97-107
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    • 1990
  • The epidemiology of plant disease deals with the dynamic processes of host-pathogen interactions, which determine the prevalence and severity of the disease. Epidemic processes for most foliar diseases of plants follow a series of steps: arrival of pathogens on plant surfaces, initial infection, incubation period, latent period, sporulation, dissemination of secondary inoculum, and infectious period. These complex biological processes are influenced by the environment-Man also often interfers with these processes by altering the host and pathogen populations and the environment. Slowing or halting any of the epidemic processes can delay the development of the epidemic, so that serious losses in yield due to disease do not occur. It is generally recognized that the most effective and efficient method of minimizing disease damage is through the use of resistant cultivars, particularly when other methods such as fungicide applications are not economically feasible-Populations of plant pathogens are not genetically uniform nor are they necessarily stable. Cultivars bred for resistance to current populations of a pathogen may not be resistant in the future due to selection pressures placed on the pathogen populations. Understanding population development and genetic variability in the pathogen, and knowledge of the genetics of resistance in the plant should help in developing breeding strategies that wi1l provide effective and stable disease control through genetic resistance. In the United States, soybeans have ranked first in value of crops sold off the farm in recent years. Soybeans have been the leading U. S.

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Pseudomonas putida Strain 17 Isolated from Replant Soil Promotes Tomato Growth and Inhibits Conidial Germination of Soilborne Plant Pathogens

  • Lee, Sang-Woo;Ahn, Il-Pyung;Lim, Jae-Wook;Lee, Yong-Hwan
    • The Plant Pathology Journal
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    • 제21권3호
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    • pp.244-251
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    • 2005
  • The induction of growth promotion on numerous crops by rhizobacteria is a well documented phenomenon. In case of tomato (Lycopersicon esculentum), fruit yield is higher in replant soil than that in fresh soil. To investigate what kind of rhizobacterium is involved, microbial community in rhizosphere and on rhizoplane of tomato plants from each soil was analyzed by dilution plating on selective media. Many Gram-negative bacteria and actinomycetes were isolated from tomato in replant soil. One Gram-negative rhizobacterium isolated was identified as Pseudomonas putida based on its biochemical characteristics, fatty acid methyl ester analysis and 16S rDNA sequence. This bacterium designated strain 17 inhibited the growth of Pseudomonas corrugata, and increased growth of tomato seedlings. In addition, its culture filtrate inhibited conidial germination of plant-pathogenic fungi such as Fusarium oxysporum f. sp. radicis-lycopersici, F. oxysporum f. sp. cucumerinum, and Nectria radicicola. Scanning electron microscopy revealed strain 17 colonized and persisted on the epidermal surfaces of tomato radicles and roots. These results suggest that P. putida strain 17 may serve as a biological control agent to suppress multiple soil-borne diseases for tomato plants. Increased microbial populations that suppress deleterious microorganisms including pathogens could be one of the major factors in increased tomato yield in replant soil.

Dieback Reality of Apple Trees Resulting from Soil-Borne Fungal Pathogens in South Korea from 2016 to 2019

  • Lee, Sung-Hee;Shin, Hyunman;Chang, Who-Bong;Ryu, Kyoung-Yul;Kim, Heung Tae;Cha, Byeongjin;Cha, Jae-Soon
    • 식물병연구
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    • 제26권2호
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    • pp.88-94
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    • 2020
  • Recently, the severe dieback of apple trees resulting from soil-borne diseases has occurred in South Korea. The casual agents of dieback were surveyed on 74 apple orchards that had been damaged nationwide in 2016-2019. The number of apple orchards affected alone by Phytophthora rot, violet root rot, and white root rot was 31, 34, and 3, respectively. Also, the total number of mixed infection orchards was 6. Out of 9,112 apple trees affected by dieback, the trees damaged by Phytophthora rot, violet root rot, and white root rot were 3,332, 3,831, and 44, respectively. Moreover, the total number of mixed infection apple trees was 1,905. The provinces mainly affected were Gyeongnam, Gyeongbuk, Chungbuk, and Jeonbuk. The survey on these infected apple orchards will be available to form management strategy for the dieback that had been increased by soil-borne fungal pathogens.

AP2/EREBP Transcription Factors in Rice

  • Kim, Yun-Ju;Jung, Eui-Whan;Hwang, Seon-Hee;Go, Seong-Joo;Hwang, Duk-Ju
    • The Plant Pathology Journal
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    • 제20권1호
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    • pp.41-45
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    • 2004
  • Plants have the ability to defend themselves against pathogens by activating a series of defense responses. SA is known to be a signal molecule in plant defense responses. Nevertheles, SA is not the only one signal mediating defense responses. In addition to SA, ethylene and jasmonic acid have also been known to mediate plant defense responses against pathogens. The activation of a series of plant defense responses is known to be through varieties of transcription factors. Specially AP2/EREBP transcription factors are involved in ethylene mediated defense signaling. In this review, recent progress on AP2/EREBP transcription factors in arabidopsis, tomato and tobacco and a few of AP2/ EREBP transcription factors in rice related to biotic stresses will be discussed.

Identification and Characterization of Novel Biocontrol Bacterial Strains

  • Lee, Seung Hwan;Kim, In Seon;Kim, Young Cheol
    • 식물병연구
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    • 제20권3호
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    • pp.182-188
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    • 2014
  • Because bacterial isolates from only a few genera have been developed commercially as biopesticides, discovery and characterization of novel bacterial strains will be a key to market expansion. Our previous screen using plant bioassays identified 24 novel biocontrol isolates representing 12 different genera. In this study, we characterized the 3 isolates showing the best biocontrol activities. The isolates were Pantoea dispersa WCU35, Proteus myxofaciens WCU244, and Exiguobacterium acetylicum WCU292 based on 16S rRNA sequence analysis. The isolates showed differential production of extracellular enzymes, antimicrobial activity against various fungal or bacterial plant pathogens, and induced systemic resistance activity against tomato gray mold disease caused by Botrytis cinerea. E. acetylicum WCU292 lacked strong in vitro antimicrobial activity against plant pathogens, but induced systemic resistance against tomato gray mold disease. These results confirm that the trait of biological control is found in a wide variety of bacterial genera.

Effect on Colony Growth Inhibition of Soil-Borne Fungal Pathogens by Available Chlorine Content in Sodium Hypochlorite

  • Lee, Sung-Hee;Shin, Hyunman;Kim, Ju-Hyoung;Ryu, Kyoung-Yul;Kim, Heung Tae;Cha, Byeongjin;Cha, Jae-Soon
    • The Plant Pathology Journal
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    • 제35권2호
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    • pp.156-163
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    • 2019
  • Our study investigated the available chlorine content, contact time and difference among strains of each pathogen for sodium hypochlorite (NaOCl) to control chemically against soil-borne fungal pathogens, such as Phytophthora rot by Phytophthora cactorum, violet root rot by Helicobasidium mompa, and white root rot by Rosellinia necatrix, causing die-back symptom on apple trees. As a result, the colony growth of Phytophthora cactorum was inhibited completely by soaking over 5 s in 31.25 ml/l available chlorine content of NaOCl. Those of H. mompa and R. necatrix were inhibited entirely by soaking over 160 s in 62.5 and 125 ml/l available chlorine content in NaOCl, respectively. Also, inhibition effect on available chlorine in NaOCl among strains of each soil-borne pathogen showed no significant difference and was similar to or better than that of fungicides.

십자화과 작물 종자에서 종자전염 세균 및 바이러스 동시 검출을 위한 One-step Multiplex RT-PCR 방법 (One-step Multiplex RT-PCR Method for Simultaneous Detection of Seed Transmissible Bacterium and Virus Occurring on Brassicaceae Crop Seeds)

  • 정규식;소은희
    • 식물병연구
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    • 제17권1호
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    • pp.52-58
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    • 2011
  • 우리나라에서 주로 재배되는 십자화과 작물(상추, 콜라비, 무, 배추, 양배추)의 종자 전염 병원균 중에서 세균성 병원균 Xanthomonns campestris pv. campestris(Xcc)와 바이러스 병원균 Lettuce Mosaic Virus(LMV)를 종자에서 동시검출하기 위한 One-step multiplex RT-PCR을 개발하였다. 각각의 병원균을 특이적으로 증폭시키는 병원균 검출용 프라이머 2종(Xcc-F/R, LMV-F/R)을 primerblast 프로그램을 이용하여 제작하였고 이들 프라이머 세트는 프라이머간 또는 병원균 cDNA간의 간섭없이 특이적으로 타겟 병원균만을 검출하였다. PCR을 이용한 병원균의 검출 최소 민감도는 1 ng이었다. 십자화과 작물중에서 유통 중인 콜라비 10품종, 상추 50품종, 무 20품종, 배추 20품종 그리고 양배추 20품종에 대한 종자 감염 병원균 검출을 위한 One-step multiplex RT-PCR 수행 결과, LMV는 전체 120품종 중에서 39품종에서 검출되었고, Xcc는 2개 품종에서 검출되었다. 그리고 50품종의 상추 종자 시료 중에 8품종의 시료에서 LMV와 Xcc가 동시 검출되었다.

인삼내생균 Bacillus velezensis CH-15의 인삼뿌리썩음병 방제 효과 (Biological Efficacy of Endophytic Bacillus velezensis CH-15 from Ginseng against Ginseng Root Rot Pathogens)

  • 김도현;;이정관;이승호
    • 식물병연구
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    • 제28권1호
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    • pp.19-25
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    • 2022
  • 인삼은 수천 년 동안 동아시아에서 재배된 중요한 약용 식물이다. 일반적으로 같은 포장에서 4-6년 동안 재배되기 때문에 다양한 병원균에 노출된다. 그 중 인삼뿌리썩음병이 가장 큰 피해를 주는 주요 원인이다. 본 연구에서는 건강한 인삼에서 내생균을 분리하고, 인삼뿌리썩음병원균에 대해 길항작용을 갖는 내생균을 선발하였다. 분리된 17개 균주 중, 3개 균주가 인삼뿌리썩음병원균에 길항작용을 나타냈으며 인삼뿌리썩음병균이 생산하는 곰팡이독소인 라디시콜에 내성을 보였다. 우수한 길항효과와 라디시콜 저항성을 갖는 Bacillus velezensis CH-15를 선발하여 추가 실험을 수행하였다. 인삼 뿌리에 CH-15를 접종하면 병원균의 균사 생장을 억제할 뿐만 아니라 질병의 진행도 억제하였다. CH-15는 또한 바실로마이신 D, 이투린 A, 바실리신, 서팩틴 생합성 유전자를 갖고 있었다. 또한 CH-15 배양여액은 병원균 생장과 분생포자 발아를 억제하였다. 본 연구는 내생균 CH-15가 인삼뿌리썩음병 병원체에 대해 길항작용을 하고 인삼뿌리썩음병의 진행을 억제함을 보여주었으며 이 균주가 인삼뿌리썩음병을 억제하는 미생물 제제가 될 수 있을 것으로 기대한다.

Isolation and Characterization of Pathogen-Inducible Putative Zinc Finger DNA Binding Protein from Hot Pepper Capsicum annuum L.

  • Oh, Sang-Keun;Park, Jeong-Mee;Jung, Young-Hee;Lee, Sanghyeob;Kim, Soo-Yong;Eunsook Chung;Yi, So-Young;Kim, Young-Cheol;Seung, Eun-Soo
    • 한국식물병리학회:학술대회논문집
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    • 한국식물병리학회 2003년도 정기총회 및 추계학술발표회
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    • pp.79.2-80
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    • 2003
  • To better understand plant defense responses against pathogen attack, we identified the transcription factor-encoding genes in the hot pepper Capsicum annuum that show altered expression patterns during the hypersensitive response raised by challenge with bacterial pathogens. One of these genes, Ca1244, was characterized further. This gene encodes a plant-specific Type IIIA - zinc finger protein that contains two Cys$_2$His$_2$zinc fingers. Ca1244 expression is rapidly and specifically induced when pepper plants are challenged with bacterial pathogens to which they are resistant. In contrast, challenge with a pathogen to which the plants are susceptible only generates weak Ca1244 expression. Ca1244 expression is also strongly induced in pepper leaves by the exogenous application of ethephon, an ethylene releasing compound. Whereas, salicylic acid and methyl jasmonate had moderate effects. Pepper protoplasts expressing a Ca1244-smGFP fusion protein showed Ca1244 localizes in the nucleus. Transgenic tobacco plants overexpressing Ca1244 driven by the CaMV 355 promoter show increased resistance to challenge with a tobacco-specific bacterial pathogen. These plants also showed constitutive upregulation of the expression of multiple defense-related genes. These observations provide the first evidence that an Type IIIA - zinc finger protein, Ca1244, plays a crucial role in the activation of the pathogen defense response in plants.

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