• Title/Summary/Keyword: TuMV

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Surveys on Disease Occurrence in Major Horticultural Crops in Kangwon Alpine Areas (강원도 고랭지 주요 원예작물의 병해 발생 상황)

  • Hahm, Young-Il;Kwon, Min;Kim, Jeom-Soon;Seo, Hyo-Won;Ahn, Jae-Hoon
    • Korean Journal Plant Pathology
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    • v.14 no.6
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    • pp.668-675
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    • 1998
  • These surveys were conducted to check the occurrence of disease in various horticultural crops in alpine areas, especially Daekwallyong areas, Pyongchang-Gun, and Hyeongseong-Gun in Kangwon province. TuMV on Chinese cabbage was one of the most serious diseases, especially in 1994 and 1997. The incidence of soft rot and clubroot has been increased gradually. Brittle root rot on Chinese cabbage was significantly decreased. Soft rot, gray mold, downy mildew, powdery mildew, bottom rot and Alternaria leaf spot were the common diseases on most vegetable crops. Gray mold (Botrytis cinerea) on celery, cercospora leaf spot (Cercospora sp.) on melon, powdery mildew (Erysiphe cichoracearum) on lettuce, and clubroot (Plasmodiophora brassicae) on parsley are newly found in Korea. The most common and predominant diseases were viruses, especially CMV, TMV, TuMV, BBMV, and gray mold, wilts, and cercospora leaf spot on many flowers in alpine areas. Fusarium oxysporum f. sp. eustomae causing wilting on lisianthus (Eustoma grandiflorum), Turnip mosaic virus causing mosaic and color breaking on stock, Cercospora spp. causing cercospora leaf spot on various wild lily, Cladosporum echinulatum causing leaf spot on carnation, and phytoplasma causing witches' broom on statice (Limonium sinuatum) and blazing star (Liatris spp.) were newly found during these surveys in Korea.

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Color Breaking Syndrome of Matthiola incana Caused by Double Infection of Cucumber Mosaic Virus and Turnip Mosaic Virus (오이 모자이크 바이러스와 수눔 모자이크 바이러스의 복합감염에 의한 스톡의 꽃잎얼룩무늬병)

  • 윤주연;최홍수;류화영;함영일;최장경
    • Korean Journal Plant Pathology
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    • v.14 no.3
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    • pp.220-222
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    • 1998
  • In 1995, we collected stock (Matthiola incana) plants causing mosaic symptoms on leaves and color breakings on flowers in Daekwallyong, Korea. Two viruses were isolated from the infected plants, and identified as cucumber mosaic virus (CMV) and turnip mosaic virus (TuMV) by experiments of host range, serology and electron microscopy. Each of the virus did not produce the same symptoms on the stock seedlings as naturally infected plants caused. When the viruses were coinoculated to the stock seedlings, however, severe mosaic symptoms were observed on leaves, and then the color breakings were expressed on flowers.

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Studies on the Aphid Transmission of Some Cruciferous Viruses (십자화과식물 바이러스의 진딧물 매개에 관한 연구)

  • Lee Jai Youl;Paik Woon Hah
    • Korean journal of applied entomology
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    • v.16 no.2 s.31
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    • pp.93-100
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    • 1977
  • This is the fist report on detailed aphid transnsmission studies of cruciferous virus in Korea, and experiments aimed to get basic informations for control of vectors. Aphid transmission of turnip mosaic virus prevalent on radish in the field was studied. Results obtained were as follows: 1. Myzus persicae, Lipaphis erysimi, Aphis gossypii and Aphis craccivora were found to transmit turnip mosaic virus. 2. The proper time for turnip mosaic virus transmission by Myzus persicae was 1 hour of fasting, 3 minutes for acquisition, and 1 minute for inoculation: Lipaphis erysimi was 2 hours for fasting, 5 minutes for acquisition, and 3 miuutes for inoculation: while Aphis gossypii needed 1hour for fasting, and 3 minutes for each of the acquisition and inoculation periods. 3. There was Po great difference in probing patterns between nonfasted and fasted aphids for 2 hours. All the fasted aphids began feeding after 4 minutes, 4. When Myzus persicae were transferred artificially at 1-2 minute intervals, the number of probes with aphids fasted for 2 hours was much greater than that of nonfasted aphids. Aphids fasted for 2 hours mainly transmitted the virus before 4 minutes, with an acquisition feeing period of less than 3 minutes

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Five Newly Collected Turnip Mosaic Virus (TuMV) Isolates from Jeju Island, Korea are Closely Related to Previously Reported Korean TuMV Isolates but Show Distinctive Symptom Development

  • Hu, Wen-Xing;Kim, Byoung-Jo;Kwak, Younghwan;Seo, Eun-Young;Kim, Jung-Kyu;Han, Jae-Yeong;Kim, Ik-Hyun;Lim, Yong Pyo;Cho, In-Sook;Domier, Leslie L;Hammond, John;Lim, Hyoun-Sub
    • The Plant Pathology Journal
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    • v.35 no.4
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    • pp.381-388
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    • 2019
  • For several years, temperatures in the Korean peninsula have gradually increased due to climate change, resulting in a changing environment for growth of crops and vegetables. An associated consequence is that emerging species of insect vector have caused increased viral transmission. In Jeju Island, Korea, occurrences of viral disease have increased. Here, we report characterization of five newly collected turnip mosaic virus (TuMV) isolates named KBJ1, KBJ2, KBJ3, KBJ4 and KBJ5 from a survey on Jeju Island in 2017. Full-length cDNAs of each isolate were cloned into the pJY vector downstream of cauliflower mosaic virus 35S and bacteriophage T7 RNA polymerase promoters. Their fulllength sequences share 98.9-99.9% nucleotide sequence identity and were most closely related to previously reported Korean TuMV isolates. All isolates belonged to the BR group and infected both Chinese cabbage and radish. Four isolates induced very mild symptoms in Nicotiana benthamiana but KBJ5 induced a hypersensitive response. Symptom differences may result from three amino acid differences uniquely present in KBJ5; Gly(382)Asp, Ile(891)Val, and Lys(2522)Glu in P1, P3, and NIb, respectively.

Complementary DNA Cloning and Restriction Mapping of Nuclear Inclusion Body and Coat Protein Genes of Turnip Mosaic Virus-Ca Strain Genomic RNA (순무모자이크 바이러스 Ca계통 핵봉입체와 외피단백질 유전자의 cDNA 클로닝 및 제한효소 지도작성)

  • 류기현;박원목
    • Korean Journal Plant Pathology
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    • v.10 no.3
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    • pp.235-239
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    • 1994
  • Viral RNA was extracted from purified Chinese cabbage strain of turnip mosaic virus (TuMV-Ca) from infected leaves of turnip. Polyadenylated genomic viral RNA was recovered by oligo (dT) cellulose column chromatography and used as a template for the synthesis of complementary DNA (cDNA). Recombinant plasmids contained cDNA ranged from about 900 bp to 2, 450 bp were synthesized. Among the selected 41 transformants, pTUCA31 and pTUCA35 had over 2 Kbp cDNA insert. Restriction endonuclease patterns of the clones examined were very similar among them. Clones pTUCA23 and pTUCA31 were overlapped with pTUA35. The longest clone pTUCA35, encoding 3'-end, showed that it contained two sites for EcoRI, and one site for BamHI, ClaI, HincII, SacI and XbaI, respectively. The restriction mapping indicated that the clone pTUCA35 contained partial nuclear inclusion body gene, complete coding region of the coat protein and 3' untranslated region of TuMV-Ca genomic RNA.

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The Construction of a Chinese Cabbage Marker-assisted Backcrossing System Using High-throughput Genotyping Technology

  • Kim, Jinhee;Kim, Do-Sun;Lee, Eun Su;Ahn, Yul-Kyun;Chae, Won Byoung;Lee, Soo-Seong
    • Horticultural Science & Technology
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    • v.35 no.2
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    • pp.232-242
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    • 2017
  • The goal of marker-assisted backcrossing (MAB) is to significantly reduce the number of breeding generations required by using genome-based molecular markers to select for a particular trait; however, MAB systems have only been developed for a few vegetable crops to date. Among the types of molecular markers, SNPs (single-nucleotide polymorphisms) are primarily used in the analysis of genetic diversity due to their abundance throughout most genomes. To develop a MAB system in Chinese cabbage, a high-throughput (HT) marker system was used, based on a previously developed set of 468 SNP probes (BraMAB1, Brassica Marker Assisted Backcrossing SNP 1). We selected a broad-spectrum TuMV (Turnip mosaic virus) resistance (trs) Chinese cabbage line (SB22) as a donor plant, constructing a $BC_1F_1$ population by crossing it with the TuMV-susceptible 12mo-682-1 elite line. Foreground selection was performed using the previously developed trsSCAR marker. Background selection was performed using 119 SNP markers that showed clear polymorphism between donor and recipient plants. The background genome recovery rate (% recurrent parent genome recovery; RPG) was good, with three of 75 $BC_1F_1$ plants showing a high RPG rate of over 80%. The background genotyping result and the phenotypic similarity between the recurrent parent and $BC_1F_1$ showed a correlation. The plant with the highest RPG recovery rate was backcrossed to construct the $BC_2F_1$ population. Foreground selection and background selection were performed using 169 $BC_2F_1$ plants. This study shows that, using MAB, we can recover over 90% of the background genome in only two generations, highlighting the MAB system using HT markers as a highly efficient Brassica rapa backcross breeding system. This is the first report of the application of a SNP marker set to the background selection of Chinese cabbage using HT SNP genotyping technology.

The Detection of Plant Viruses in Korean Ginseng (Panax ginseng) through RNA Sequencing

  • Lee, Hong-Kyu;Kim, So-Yeon;Yang, Hee-Ji;Lee, Da-Som;Kwon, Boram;Lee, Dong-Yun;Oh, Jonghee;Lee, Su-Heon
    • The Plant Pathology Journal
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    • v.36 no.6
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    • pp.643-650
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    • 2020
  • Korean ginseng (Panax ginseng) is a dicotyledonous, medicinal, perennial plant belonging to the genus Panax of the family Araliaceae. We investigated the occurrence and incidence of plant viruses in Panax ginseng in Korea. A total of 656 leaf samples were combined into one and total RNA was extracted from the polled sample, using RNA sequencing (RNA-Seq), a metatranscriptome analysis of the plant virome was conducted. The virus present in Panax ginseng was confirmed by reverse transcription polymerase chain reaction (RT-PCR) assay using virus-specific primers. In RNA-Seq data analysis, the multiplication protein of four viral contigs including Aristotelia chilensis virus 1 (AcV1), Turnip mosaic virus (TuMV), Watermelon mosaic virus (WMV), and Tobamovirus multiplication protein were discovered. From our metatranscriptome analysis and RT-PCR assay, TuMV and WMV were detected, whereas the three viruses reported in China such as tomato yellow leaf curl China virus; panax notoginseng virus A; and panax virus Y were not found in this study. The distribution of domestic ginseng viruses seems different from that recorded in China. Overall, this is the first plant virome analysis of Panax ginseng in Korea.

Occurrence of Virus Disease of Chinese Cabbage and Its Influence on Cabbage Production in Alpine Area (고랭지배추 바이러스병의 발생 및 피해요인 분석)

  • 최준근;이재홍;이세원;함영일;안재훈;최장경
    • Korean Journal Plant Pathology
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    • v.14 no.5
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    • pp.433-439
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    • 1998
  • The studies on the ecology of virus disease on Chinese cabbage (Brassica campestris subsp. pekinensis) cultivated in alpine area of Kangwon province during summer season to analyse its influence on damage and develope a prediction model were performed from 1993 to 1997. Virus disease on Chinese cabbage occurring in the alpine area showed various symptom types and among there, necrotic spots and dwarf were mainly detected. The disease was increased from early August and continued mid September in every year. The occurrence of virus disease was the highest in 1994 with 20.5%, and the number of aphid vectors were also the highest during the same period. The number of aphids in the alpine areas showed twice peaks every year. For the analysis of damage by virus infection, the infection and injured ratio of all treatments were more than 90% and 80%, respectively. The most important factor for the occurrence of virus disease on Chinese cabbage was temperature. Factors influencing the development of the viral disease in the alpine area were maximum temperature and number of aphid vectors.

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Investigations on the Virus Diseases in Spinach. (Spinacia orleraea L.) I. Identification of Turnip Mosaic Virus Occuring Spinach (시금치 바이러스병에 관한 연구 I. 시금치에 발생하는 순무모자익바이러스 (TuMV)의 분류동정)

  • Lee S. H.;Lee K. W.;Chung B. J.
    • Korean journal of applied entomology
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    • v.17 no.1 s.34
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    • pp.33-35
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    • 1978
  • The infected spin aches showing yellow mosaic symptom were collected and confirmed that the causal agent was turnip mosaic virus. The results of host reaction indicated that this virus induced local lesion on the inoculated leaves of Nicotiana tabacum (B.Y) and Chenopodium amaranticolor, mosaic symptoms on chrysanthemum coronarum, spinacea oleracea and Rephanus acanthiormis. The infected leaves extracts with this virus showed positive reaction with authentic turnip mosaic virus-antiserum. The virus particles were filaments type with size of 750nm by means of dipping method in electron microscope.

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