• 제목/요약/키워드: plant diseases

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한국식물병명목록 6.1판(2023 개정본) (Introduction of List of Plant Diseases in Korea 6.1st Edition (2023 Revised Version))

  • 김선희;최재혁;최영준;박병용;이수헌;김경희;공현기;김동근;김순옥;김영호;백창기;변희성;서장균;유준명;윤주연;이동현;이승열;임승모;전용호;전재용;최인수;최인영;최효원;홍진성;홍승범
    • 식물병연구
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    • 제29권4호
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    • pp.331-344
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    • 2023
  • 한국식물병명목록 6판이 2022년 4월에 발행된 이후에 1년이 경과하였다. 목록 6판에서 발견된 오류사항을 수정하고 6판 이후에 보고된 병을 추가하여 한국식물병명목록 6.1판(2023)을 작성하였다. 기존 6판의 수정사항은 397건으로 대부분은 단순 오탈자나 경미한 사항이었으나, 12개의 병은 중복이나 근거가 명확하지 않아 삭제하였고, 2개의 병은 병명을 바꾸었다. 2021년 이전에 보고되었으나 6판에 수록되지 않았거나, 6판 발행 이후에 보고된 158개의 병을 추가하였다. 결국 목록 6.1판에는 6판에 보고된 병 6,534개에 146개 병이 추가되어 총 6,680개의 병이 수록되었다. 기주 분류군도 30개가 더해져 목록 6판의 1,390개에서 6.1판에는 1,420개가 되었다. 병원체는 목록 6판의 2,400개에서 62개가 더해져 6.1판에는 2,462 분류군이 되었다. 결국 한국식물병명목록 6.1판(2023)은 1,420개의 기주에, 2,462 분류군의 병원체가 일으키는 6,680개의 병을 수록하고 있다. 목록 6.1판은 책으로 인쇄되지는 않고 온라인 한국식물병명목록(https://genebank.rda.go.kr/kplantdisease.do)을 통하여 제공되고 있다.

Genetic analysis of env and gag gene fragments of bovine leukemia virus identified in cattle from Korea

  • Kim, Yeon-Hee;Lee, Eun-Yong;Oem, Jae-Ku;Kim, Seong-Hee;Lee, Myoung-Heon;Lee, Kyoung-Ki;Park, Se-Chang
    • 대한수의학회지
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    • 제55권1호
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    • pp.53-56
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    • 2015
  • Bovine leukemia virus (BLV) is the causative agent of enzootic bovine leukosis. This study was conducted to clarify the molecular characteristics of BLVs obtained from a specific region in Korea. Proviral BLVs were detected in anti-BLV antibody-positive blood samples by PCR. Env and gag fragments were sequenced and compared to previously published reference sequences. Analysis of the env gene sequence revealed that the YI strain was highly similar to genotype 1, including United States and Japanese strains. The gag gene sequence had the highest degree of similarity with a Japanese strain.

Incidence Rates of Major Diseases of Kiwiberry in 2015 and 2016

  • Kim, Gyoung Hee;Kim, Deok Ryong;Park, Sook-Young;Lee, Young Sun;Jung, Jae Sung;Koh, Young Jin
    • The Plant Pathology Journal
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    • 제33권4호
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    • pp.434-439
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    • 2017
  • Incidence rates of diseases in kiwiberry orchards were investigated monthly from late June to late September in Gwangyang and Boseong in 2015 and 2016. The impact of postharvest fruit rot was investigated during ripening after harvest. Bacterial canker was only observed on one single tree in 2015, but black rot, powdery mildew, leaf spot and blight, and postharvest fruit rot diseases were problematic throughout the study period in both 2015 and 2016. Incidence rates of the diseases varied with kiwiberry cultivar, region and sampling time. Incidence rates of powdery mildew, leaf spot and blight diseases increased significantly during the late growing stages near fruit harvest, while black rot peaked in late August. Incidence rate of postharvest fruit rot on fruit without fruit stalks was less than half of fruit with fruit stalks, regardless of kiwiberry cultivars. Among the four cultivars, Mansu was relatively resistant to black rot and postharvest fruit rot diseases. In our knowledge, this is the first report of various potential pathogens of kiwiberry in Korea.

Bacteriophage Usage for Bacterial Disease Management and Diagnosis in Plants

  • Vu, Nguyen Trung;Oh, Chang-Sik
    • The Plant Pathology Journal
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    • 제36권3호
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    • pp.204-217
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    • 2020
  • In nature, plants are always under the threat of pests and diseases. Pathogenic bacteria are one of the major pathogen types to cause diseases in diverse plants, resulting in negative effects on plant growth and crop yield. Chemical bactericides and antibiotics have been used as major approaches for controlling bacterial plant diseases in the field or greenhouse. However, the appearance of resistant bacteria to common antibiotics and bactericides as well as their potential negative effects on environment and human health demands bacteriologists to develop alternative control agents. Bacteriophages, the viruses that can infect and kill only target bacteria very specifically, have been demonstrated as potential agents, which may have no negative effects on environment and human health. Many bacteriophages have been isolated against diverse plant-pathogenic bacteria, and many studies have shown to efficiently manage the disease development in both controlled and open conditions such as greenhouse and field. Moreover, the specificity of bacteriophages to certain bacterial species has been applied to develop detection tools for the diagnosis of plant-pathogenic bacteria. In this paper, we summarize the promising results from greenhouse or field experiments with bacteriophages to manage diseases caused by plant-pathogenic bacteria. In addition, we summarize the usage of bacteriophages for the specific detection of plant-pathogenic bacteria.

Biological Control of Oomycete Soilborne Diseases Caused by Phytophthora capsici, Phytophthora infestans, and Phytophthora nicotianae in Solanaceous Crops

  • Elena Volynchikova;Ki Deok Kim
    • Mycobiology
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    • 제50권5호
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    • pp.269-293
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    • 2022
  • Oomycete pathogens that belong to the genus Phytophthora cause devastating diseases in solanaceous crops such as pepper, potato, and tobacco, resulting in crop production losses worldwide. Although the application of fungicides efficiently controls these diseases, it has been shown to trigger negative side effects such as environmental pollution, phytotoxicity, and fungicide resistance in plant pathogens. Therefore, biological control of Phytophthora-induced diseases was proposed as an environmentally sound alternative to conventional chemical control. In this review, progress on biological control of the soilborne oomycete plant pathogens, Phytophthora capsici, Phytophthora infestans, and Phytophthora nicotianae, infecting pepper, potato, and tobacco is described. Bacterial (e.g., Acinetobacter, Bacillus, Chryseobacterium, Paenibacillus, Pseudomonas, and Streptomyces) and fungal (e.g., Trichoderma and arbuscular mycorrhizal fungi) agents, and yeasts (e.g., Aureobasidium, Curvibasidium, and Metschnikowia) have been reported as successful biocontrol agents of Phytophthora pathogens. These microorganisms antagonize Phytophthora spp. via antimicrobial compounds with inhibitory activities against mycelial growth, sporulation, and zoospore germination. They also trigger plant immunity-inducing systemic resistance via several pathways, resulting in enhanced defense responses in their hosts. Along with plant protection, some of the microorganisms promote plant growth, thereby enhancing their beneficial relations with host plants. Although the beneficial effects of the biocontrol microorganisms are acceptable, single applications of antagonistic microorganisms tend to lack consistent efficacy compared with chemical analogues. Therefore, strategies to improve the biocontrol performance of these prominent antagonists are also discussed in this review.

한국호흡기형 닭전염성기관지염 생독백신주의 작성 (Development of an attenuated vaccine strain from a korean respiratory type infectious bronchitis virus)

  • 최강석;전우진;이은경;계수정;박미자;권준헌
    • 대한수의학회지
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    • 제51권3호
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    • pp.193-201
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    • 2011
  • An attenuated vaccine strain AVR1/08 of Korean respiratory type of infectious bronchitis virus (IBV) was developed by 89th passages of IBV D85/06 strain in chicken eggs. The AVR1/08 strain had higher virus titer at least 20 times ($10^{1.3}$) than the parent virus D85/06 by egg inoculation method. The AVR1/08 strain had a single point mutation (S to Y) at position 56 of spike protein of IBV compared to parent virus IBV D85/06 strain. The mutation was observed consistently at viruses after 47th passage in chicken eggs. The AVR1/08 strain showed no virulence even after 6 passages in chickens and all chickens inoculated induced anti-IBV antibody 14 days after vaccination. The AVR1/08 strain had broad protective efficacy against QX type Korean nephropathogenic virus (Q43/06 strain), KM91 type Korean nephropathogenic virus (KM91 strain) and Korean respiratory virus (D85/06 strain). In contrast, Massachusetts (Mass) type attenuated vaccine strain H120 showed protection of 37.5 to 50% against these three viruses. Our results indicate that the AVR1/08 strain has potential as an attenuated vaccine effective in controlling IBVs circulating in Korea.

A Review of Hyperspectral Imaging Analysis Techniques for Onset Crop Disease Detection, Identification and Classification

  • Awosan Elizabeth Adetutu;Yakubu Fred Bayo;Adekunle Abiodun Emmanuel;Agbo-Adediran Adewale Opeyemi
    • Journal of Forest and Environmental Science
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    • 제40권1호
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    • pp.1-8
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    • 2024
  • Recently, intensive research has been conducted to develop innovative methods for diagnosing plant diseases based on hyperspectral technologies. Hyperspectral analysis is a new subject that combines optical spectroscopy and image analysis methods, which makes it possible to simultaneously evaluate both physiological and morphological parameters. Among the physiological and morphological parameters are classifying healthy and diseased plants, assessing the severity of the disease, differentiating the types of pathogens, and identifying the symptoms of biotic stresses at early stages, including during the incubation period, when the symptoms are not visible to the human eye. Plant diseases cause significant economic losses in agriculture around the world as the symptoms of diseases usually appear when the plants are infected severely. Early detection, quantification, and identification of plant diseases are crucial for the targeted application of plant protection measures in crop production. Hence, this can be done by possible applications of hyperspectral sensors and platforms on different scales for disease diagnosis. Further, the main areas of application of hyperspectral sensors in the diagnosis of plant diseases are considered, such as detection, differentiation, and identification of diseases, estimation of disease severity, and phenotyping of disease resistance of genotypes. This review provides a deeper understanding, of basic principles and implementation of hyperspectral sensors that can measure pathogen-induced changes in plant physiology. Hence, it brings together critically assessed reports and evaluations of researchers who have adopted the use of this application. This review concluded with an overview that hyperspectral sensors, as a non-invasive system of measurement can be adopted in early detection, identification, and possible solutions to farmers as it would empower prior intervention to help moderate against decrease in yield and/or total crop loss.

키위 잎 주요 병 진단 및 방제 (Diagnosis and Control of Major Leaf Diseases on Kiwifruit in Korea)

  • 김경희;고영진
    • 식물병연구
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    • 제24권1호
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    • pp.1-8
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    • 2018
  • 우리나라에서 재배되고 있는 키위나무 잎에는 궤양병과 세균성점무늬병처럼 세균에 의한 병과 잿빛곰팡이병, 흰가루병, 과실곰보병을 비롯하여 여러 가지 형태 점무늬병 등 곰팡이에 의한 병이 발생하여 피해를 주고 있다. 이 총설에서는 키위나무잎에 발생하는 피해를 주는 주요 병에 대하여 병징과 발생특성을 요약하고 지난 30년간 수행한 연구 업적과 현장 경험 그리고 세계적인 주요 연구 산물들을 기초로 하여 키위나무 잎에 발생하는 주요 병에 의한 피해를 경감할 수 있도록 농가에서 실용적으로 사용할 수 있는 방제방법을 제시하고자 한다.

Three New Loci of Insertion Element IS1112 in Chinese Strains of Xanthomonas oryzae pv. oryzae

  • Xie, Jiajian;Wang, Xifeng;Li, Feiwu;Peng, Yufa;Zhou, Guanghe
    • Journal of Microbiology
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    • 제45권3호
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    • pp.219-226
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    • 2007
  • Insertion sequence IS1112 is a repetitive element with a relatively high number of copies in Xanthomonas oryzae pv. oryzae (Xoo), the causal agent of bacterial blight of rice (Oryza sativa L.). Three new loci of IS1112 were identified in seven Chinese strains of Xoo using a single oligonucleotide primer J3; 5'-GCTCA GGTCAGGTGGCCTGG-3' by insertion-sequence-based polymerase chain reaction (IS-PCR). Among the three new loci of IS1112, two were located in the open-reading frame region of genes fhuA and cirA, which encode TonB-dependent receptors, and the third in ISXo2, another type of insertion sequence in Xoo genome. Three variants of IS1112 were identified in those three loci based on their sequence similarities: two were identical to IS1112a and IS1112b, reported in strain PXO86 from the Philippines, while the third was a new member of IS1112, defined as IS1112d. Inserting IS1112 in gene fhuA caused three bases, GGT, to be duplicated at the target site, but inserting it in gene cirA did not cause any duplication in the target site. The diversity of IS1112 sequence and insertion loci in Xoo genome and their potential effects are discussed.

Potential of Using Ginger Essential Oils-Based Nanotechnology to Control Tropical Plant Diseases

  • Abdullahi, Adamu;Ahmad, Khairulmazmi;Ismail, Intan Safinar;Asib, Norhayu;Haruna, Osumanu;Abubakar, Abubakar Ismaila;Siddiqui, Yasmeen;Ismail, Mohd Razi
    • The Plant Pathology Journal
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    • 제36권6호
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    • pp.515-535
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    • 2020
  • Essential oils (EOs) have gained a renewed interest in many disciplines such as plant disease control and medicine. This review discusses the components of ginger EOs, their mode of action, and their potential nanotechnology applications in controlling tropical plant diseases. Gas chromatography-mass spectroscopy (GC-MS), high-performance liquid chromatography, and headspace procedures are commonly used to detect and profile their chemical compositions EOs in ginger. The ginger EOs are composed of monoterpenes (transcaryophyllene, camphene, geranial, eucalyptol, and neral) and sesquiterpene hydrocarbons (α-zingiberene, ar-curcumene, β-bisabolene, and β-sesquiphellandrene). GC-MS analysis of the EOs revealed many compounds but few compounds were revealed using the headspace approach. The EOs have a wide range of activities against many phytopathogens. EOs mode of action affects both the pathogen cell's external envelope and internal structures. The problems associated with solubility and stability of EOs had prompted the use nanotechnology such as nanoemulsions. The use of nanoemulsion to increase efficiency and supply of EOs to control plant diseases control was discussed in this present paper. The findings of this review paper may accelerate the effective use of ginger EOs in controlling tropical plant diseases.