• Title/Summary/Keyword: cruciferous crops

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Occurrence of Clubroot in Cruciferous Vegetable Crops and Races of the Pathogen in Korea

  • Cho, Weon-Dae;Kim, Wan gyu;Kenji Takahashi
    • The Plant Pathology Journal
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    • v.19 no.1
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    • pp.64-68
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    • 2003
  • Cruciferous vegetable crops grown in several locations in Korea were surveyed from 1996 to 2000. Clubroot severely occurred up to a maximum of 100% in Chinese cabbage fields in 15 out of 42 locations, and in cabbage fields in 5 out of 13 locations surveyed. The disease also severely occurred up to a maximum of 40% in radish fields in 6 out of 35 locations, and up to a maximum of 40% and 100% in turnip and brown mustard fields in one each out of the few locations surveyed, respectively. The disease occurred less than l% in one kale field in one out of two locations surveyed. A total of 268 isolates of Plasmodiophora brassicae was obtained from six cruciferous vegetable crops. The isolates were classified into 13 races based on their pathogenicity to the differential varieties of cabbage and rutabaga. There were 13 races found in isolates from Chinese cabbage, while 6 races each were found in isolates from cabbage and radish. There were five and three races found in turnip and brown mustard isolates, respectively. One isolate from kale was identified as race 8. Race 8 was the most frequently isolated from five cruciferous vegetable crops, except brown mustard. Races 3 and 14 were isolated only from Chinese cabbage.

Disease Resistance-Based Management of Alternaria Black Spot in Cruciferous Crops (병 저항성 기반 십자화과 작물의 검은무늬병 관리)

  • Young Hee Lee;Su Min Kim;Seoung Bin Lee;Sang Hee Kim;Byung-Wook Yun;Jeum Kyu Hong
    • Research in Plant Disease
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    • v.29 no.4
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    • pp.363-376
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    • 2023
  • Alternaria black spots or blights in cruciferous crops have been devastating diseases worldwide and led to economic losses in broccoli, Chinese cabbage, kale, radish, rapeseed, etc. These diseases are caused by different Alternaria spp., including A. brassicae, A. brassicicola and A. raphani transmitted from infected seeds or insect vectors. Efforts to excavate disease resistance traits of cruciferous crops against Alternaria black spots or blights have been demonstrated. Genetic resource of disease resistance was investigated in the wild relatives of cruciferous crops, and different cultivars were screened under different inoculation conditions. Development of the disease-resistant lines against Alternaria black spots or blights was also tried via genetic transformation of the cruciferous crops using diverse plant defence-associated genes. Plant immunity activated by pre-treatment with chemicals, i. e. β-amino-n-butyric acid and melatonin, was suggested for reducing Alternaria black spots or blights in cruciferous crops. The disease resistance traits have also been evaluated in model plant Arabidopsis originating from different habitats. Various plant immunity-related mutants showing different disease responses from wild-type Arabidopsis provided valuable information for managing Alternaria black spots or blights in cruciferous crops. In particular, redox regulation and antioxidant responses altered in the Alternaria-infected mutants were discussed in this review.

Assessing persistence of cruciferous crops in the field

  • Eun Mi, Ko;Do Young, Kim;Ye Seul, Moon;Hye Jin, Kim;In Soon, Pack;Young-Joong, Kim;Kyong-Hee, Nam;Jihyon, Kil;Chang-Gi, Kim
    • Korean Journal of Agricultural Science
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    • v.49 no.3
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    • pp.655-666
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    • 2022
  • We assessed the persistence of eight major cruciferous crops-leaf mustard, oilseed rape, cabbage, broccoli, cauliflower, Chinese cabbage, turnip, and radish-growing in the field. In the first part of our experiment, we tested the viability of seeds that had been buried at two different soil depths for up to 16 months. We then broadcast seeds over the soil surface and left them undisturbed to investigate the survivorship of the resultant plants over two years. Seed viability was significantly affected by plant taxa and burial depth, but not substantially affected by the duration of burial. Although seeds of leaf mustard had the greatest viability among all crops examined here, the viability rates were significantly lower at 2 cm depth than at 15 cm. Seeds of leaf mustard, oilseed rape, broccoli, turnip, and Chinese cabbage remained viable throughout the 16-month period. A study of plant demography revealed that only leaf mustard and oilseed rape succeeded in producing seeds and overwintering in the undisturbed field. However, neither of those species competed well with other plants long-term and their overall growth and survival rates declined during the evaluation period. In addition, insect herbivory severely decreased the growth of all of these crops. Our results suggest that populations of leaf mustard and oilseed rape do not tend to persist in the field for more than a few years without disturbance and external seed inputs.

Occurrence of Fusarium Wilt on Cruciferous Vegetable Crops and Pathogenic Differentiation of the Causal Fungus (십자화과 채소작물에서의 후사리움 시들음병 발생과 그 원인균의 병원성 분화)

  • 문윤기;김완규;조원대;성재모
    • Research in Plant Disease
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    • v.7 no.2
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    • pp.93-101
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    • 2001
  • Occurrence of Fusarium wilt was surveyed in fields of cruciferous vegetable crops in Korea from 1996 to 1998. The disease severely occurred up to 40% in fields of Chinese cabbage and radish but slightly in Fields of cabbage. A total of 123 isolates was obtained from roots of the diseased plants and identified as Fusarium oxysporum based on the morphological and cultural characteristics. Pathogenicity of nine isolates selected from the isolates was tested by artificial inoculation to the hosts. All the isolates had similar virulence on Chinese cabbage and cabbage, although there were some differences in virulence on cultivars tested among the isolates. The isolates from radish were more virulent to radish than those from Chinese cabbage and cabbage. All isolates from the crucifers were not virulent to eight species of vegetable crops except the crucifers. The results of pathogenicity tests showed that the pathotype of Chinese cabbage-infecting isolates was identical to that of cabbage-infecting isolates, but somewhat different from that of radish-infecting isolates.

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Virulence Differentiation of Eight Turnip mosaic virus Isolates Infecting Cruciferous Crops

  • Choi, Hong-Soo;Sohn, Seong-Han;Yoon, Moo-Kyoung;Cheon, Jeong-Uk;Kim, Jeong-Soo;Were, Hassan Karakacha;Cho, Jang-Kyung;Kim, Kook-Hyung;Takanami, Yoichi
    • The Plant Pathology Journal
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    • v.21 no.4
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    • pp.369-376
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    • 2005
  • Turnip mosaic virus (TuMV) is an infectious viral pathogen on the cruciferous crops, predominantly Chinese cabbage (Brassica campestris subsp. pekinensis) and radish (Raphanus sativus). On the basis of the symptom development in selective differential hosts from indicator host species, Chinese cabbage and Korean radish inbred lines, the representative eight isolates of TuMV were divided into two major groups/or six types. Group I includes Th 1, Ca-ad7, and Cj-ca2-1 isolates, while group II includes the other isolates (rg-pfl, r 9-10, Rhcql-2, Stock and Mustard). According to the molecular phylogenetic analysis, these isolates, however, divided into two groups and two independent isolates. Phylogenetic analysis indicated that four isolates (Tu 1, r9-10, Stock and Rh-cql-2) formed a distinct phylogenetic group, and the other two isolates (Ca-ad7 and Cj-ca2-1) also formed another group. Mustard and rg-pfl isolates did not seem to have any relationship with these two groups. Taken together, these results indicated that virulence differentiation on host plants, molecular phylogenetic analysis of the nucleotide and the deduced amino acid of TuMV coat proteins did not show any relationship. The multi-resistant lines, Wonyae 20026 and BP058 in Chinese cabbage represent valuable genetic materials that can be used for crucifer breeding programs on TuMV resistance, but not in Korean radish.

Occurrence of Sclerotinia Rot in Cruciferous Crops Caused by Sclerotinia spp.

  • Kim, Wan-Gyu;Cho, Weon-Dae
    • The Plant Pathology Journal
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    • v.19 no.1
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    • pp.69-74
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    • 2003
  • Cruciferous crops grown in greenhouses and fields in Korea were surveyed from 1995 to 2000. Sclerotinia rot most severely occurred up to 30% in cabbage. Incidence of the disease was as high as 20% at its maximum in Chinese cabbage and rape and 10% in radish, but as low as less than 1 or 2% in broccoli and kale. Symptoms of Sclerotinia rot commonly developed on loaves and stems of the crucifers, but rarely on rachises of broccoli. A total of 112 isolates of sclerotinia species was obtained from the diseased crucifers. Out of the isolates, 103 isolates were identified as S. sclerotiorum, and the rest as 5. minor based on their morphological and cultural characteristics. S. sclerotiorum was isolated from all the crucifers, while S. minor was isolated from Chinese cabbage, broccoli, and kale. Six isolates of S. sclerotiorum and three isolates of S. minor were tested for their pathogenicity to the crucifers by artificial inoculation. All the isolates of the two Sclerotinia spp. induced rot symptoms on the plants of the crucifers tested, which were similar to those observed in the fields. The pathogenicity tests revealed that there was no significant difference in the susceptibility of the crucifers to the isolates of S. sclerotiorum. However, in case of S. minor, radish was relatively less susceptible to the pathogen.

Studies on Seed Transmission of Alternaria spp. in Three Cruciferous Vegetable Crops (십자화과(十字花科) 채소(菜蔬) 검은무늬병균(病菌)(Alternaria spp.)의 종자전염(種子傳染)에 관(關)한 연구(硏究))

  • Kang, Yue Kyu;Yu, Seung Hun;Park, Jong Seong
    • Korean Journal of Agricultural Science
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    • v.12 no.2
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    • pp.191-198
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    • 1985
  • Sixty one commercial seed samples of three cruciferous vegetable crops were examined for seed-borne Alternaria spp. by deep freezing blotter method. Alternaria raphani, A. brassicicola and A. brassicae were detected from 7, 6 and 1 seed samples of chinese cabbage out of 20 with average infection ratio of 3.8, 1.8 and 0.5, respectively. A. raphani and A. brassicae were detected from 11 and 2 seed samples of radish out of 38 with average infection ratio of 7.2 and 1.0, respectively. A. brassicicola was detected from 3 samples of cabbage seed with average infection ratio of 21.8. Most of the Alternaria spp. detected were recovered from the seed coat and caused seed rot and seedling infections. A. brassicicola was recovered from the embryos of radish, chinese cabbage and cabbage in low infections and A. raphani was recovered from the embryos of radish. In inoculation experiments, A. brassicicola, A. brassicae and A. raphani produced black leaf spots on old leaves of three creciferous vegetable crops and the spots gradually increased in size appearing gray to light brown lesions which later coalesce and caused defoliation.

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Genetic Diversity and Phylogenetic Relationships between Chinese Cabbages [B. campestris (syn. rapa) L.] and Cabbages (B. oleracea L.) in Korea

  • Sun, Yan-Lin;Zheng, Shi-Lin;Park, Kyong-Cheul;Choi, Ki-Young;Kang, Ho-Min;Hong, Soon-Kwan
    • Horticultural Science & Technology
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    • v.34 no.2
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    • pp.294-304
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    • 2016
  • Members of the genus Brassica, which are known as oil crops or cruciferous vegetables, are widely cultivated in Canada, Australia, Asian and Europe. Because Brassica species have high yields, are well adapted to their environments, and are self-incompatible, the germplasm is abundant. Previous studies have reported abundant genetic diversity even within Brassica subspecies. In Korea, fresh cabbage leaves are eaten with roast meat, and to meet the current popular demand, new varieties are being increasingly bred. To determine the genetic diversity and relationships among the cabbage vegetables in Korea, we evaluated the genetic variation of 18 accessions based on 5S and 18S ribosomal RNA (rRNA) gene sequences. We detected many variable nucleotide sites, especially in the 5S rRNA gene sequences. Because the length of the 18S rRNA gene might influence the dissimilarity rate statistics, we used both the 5S and 18S sequences to analyze the phylogenetic relationships. S7 (B. oleracea) showed the most distant phylogenetic relationship with the other Brassica species. Interestingly, B2 (B. oleracea), B15, and B18 (B. campestris) have three different types of leaf profiles, and were divided into one group, and the other Brassica species formed another group. Statistical analysis of interspecies and intraspecies genetic distances revealed that B. campestris L. showed higher genetic diversity than B. oleracea L. This work provides additional data that facilitates the evaluation of the genetic variation and relationships among Brassica species. The results could be used in functional plant breeding programs to improve Brassica crops.

Current Status of Plasmodiophora brassicae Researches in Korea

  • Kim, Hong Gi;Lim, Yong Pyo
    • 한국균학회소식:학술대회논문집
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    • 2015.05a
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    • pp.29-29
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    • 2015
  • Clubroot disease is caused by the soil-born obligate plant pathogen Plasmodiophora brassicae. This pathogen can infect all cruciferous vegetables and oil crops, including Brassica rapa, B. oleracea, B. napus, and other Brassica species. Clubroot disease is now considered to be a major problem in Chinese cabbage production in China, Korea, and Japan. We collected several hundreds of P. brassicae infected galls from Korea, and isolated the single spore from the collection. For establishment of novel isolation, and mass-propagation methods for singe spore isolates of P. brassicae pathogen, we developed new filtration method using both cellulose nitrate filter and syringe filter. Accurate detection of P. brassicae pathogen in the field was done by using real-time PCR in the potential infested soil. When we tested the different pathogenicity on commercial Chinese cabbage varieties, P. brassicae from collected galls showed various morphological patterns about clubroot symptom on roots. To date, 8 CR loci have been identified in the B. rapa genome using the quantitative trait loci (QTL) mapping approach, with different resistant sources and isolates. We are trying to develop the molecular marker systems for detect all 8 CR resistant genes. Especially for the study on the interaction between pathogens and CR loci which are not well understood until now, genome wide association studies are doing using the sequenced inbred lines of Chinese cabbage to detect the novel CR genes.

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Status of Fusarium Wilt Incidence on Summer Radish and Etiological Characteristics of the Causal Fungus in Korea (고랭지 여름 무에서 시들음병 발생 현황과 병원균의 병원학적 특성 연구)

  • Hong, Sung Kee;Ko, Hyoungrai;Choi, Hyo-Won;Lee, Youngkee;Kim, Jeomsoon
    • Research in Plant Disease
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    • v.26 no.4
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    • pp.256-263
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    • 2020
  • Incidence of Fusarium wilt was surveyed in fields of summer radish in Gangwon province in Korea in 2018 and 2019. The disease started in early July and spread rapidly in hot summer of late July and August and in severe case, reached up to 80% in a field in Gangneung area. Symptoms in the seedling stage include poor growth and browning of internal tissue of root. During mid-growth, the leaves of diseased plant turned yellow over time, the surface of the roots changed from white to blackish, and the vascular tissues turned brown. A total of 23 isolates was obtained from the diseased plants and identified as Fusarium oxysporum f. sp. raphani by elongation factor-1α and intergenic spacer sequence analysis. Pathogenicity of the isolates was tested by artificial inoculation to the radish and other plants. All the isolates tested were pathogenic to radish plant, although there were differences in virulence on radish 11 cultivars. However, the isolates were not virulent to other plants except some cruciferous vegetables including Brussels sprouts, rocket, stock, and turnip. The results of pathogenicity test showed that it is necessary to rotate with crops other than cruciferous vegetables in order to prevent Fusarium wilt from radish fields.