• Title/Summary/Keyword: Brassica crops

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Evaluation of Cabbage- and Broccoli-genetic Resources for Resistance to Clubroot and Fusarium Wilt (뿌리혹병 및 시들음병에 대한 저항성 양배추와 브로콜리 유전자원 탐색)

  • Lee, Ji Hyun;Jo, Eun Ju;Jang, Kyoung Soo;Choi, Yong Ho;Kim, Jin-Cheol;Choi, Gyung Ja
    • Research in Plant Disease
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    • v.20 no.4
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    • pp.235-244
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    • 2014
  • Clubroot and Fusarium wilt of cole crops (Brassica oleracea L.) are destructive diseases which for many years has brought a decline in quality and large losses in yields all over the world. The breeding of resistant cultivars is an effective approach to reduce the use of chemical fungicides and minimize crop losses. This study was conducted to evaluate the resistance of 60 cabbage (B. oleracea var. capitata) and 6 broccoli (B. oleracea var. italica) lines provided by The RDA-Genebank Information Center to clubroot and Fusarium wilt. To investigate resistance to clubroot, seedlings of the genetic resources were inoculated with Plasmodiophora brassicae by drenching the roots with a mixed spore suspension (1 : 1) of two isolates. Of the tested genetic resources, four cabbage lines were moderately resistant and 'K166220' represented the highest resistance to P. brassicae. The others were susceptible to clubroot. On the other hand, to select resistant plants to Fusarium wilt, the genetic resources were inoculated with Fusarium oxysporum f. sp. conglutinans by dipping the roots in spore suspension of the fungus. Among them, 17 cabbage and 5 broccoli lines were resistant, 16 cabbage lines were moderately resistant, and the others were susceptible to Fusarium wilt. Especially, three cabbage ('IT227115', 'K161791', 'K173350') and two broccoli ('IT227100', 'IT227099') lines were highly resistant to the fungus. We suggest that the resistant genetic resources can be used as a basic material for resistant B. oleracea breeding system against clubroot and Fusarium wilt.

Effects of Bt Cabbage (Brassica oleracea) on the Host Preference and Performance of the Green Peach Aphid, Myzus persicae Sulzer (Hemiptera: Aphididae) (Bt 양배추가 복숭아혹진딧물의 발육과 기주선택에 미치는 영향)

  • Nam, Ki Jung;Kim, Young-Joong;Moon, Doo-Bum;Nam, Kyong-Hee;Pack, In Soon;Park, Jung-Ho;Jeong, Soon-Chun;Harn, Chee Hark;Kim, Chang-Gi
    • Korean journal of applied entomology
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    • v.53 no.2
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    • pp.193-197
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    • 2014
  • Transgenic crops that produce insecticidal toxins have a great potential for controlling target pest insects, but there is a growing concern about unintended influences on non-target species. In the present study, the preferences and performance of non-target green peach aphid, Myzus persicae (Sulzer), on transgenic cabbages (Brassica oleracea) that produce Bt toxin (Cry1Ac1) and untransformed control plants were investigated as a part of risk assessment. In a free-choice situation, the number of nymphs larviposited by 10 winged adults over 3 days was $21.9{\pm}1.8$ and $22.5{\pm}2.2$ on transgenic and the control plants, respectively, indicating that the aphids did not discriminate between the two types of plants. In a performance assay, the development time (D) and intrinsic rate of increase (rm) of wingless aphids reared on transgenic and control plants were also similar (D, $5.8{\pm}0.2$ and $5.9{\pm}0.1$ (days) and rm, $0.7{\pm}0.1$ and $0.8{\pm}0.1$, for transgenic and control plants, respectively). These results suggest that M. persicae is not significantly affected by transgenic Bt cabbage.

Effects of Different EC in Nutrient Solution on Growth and Quality of Red Mustard and Pak-Choi in Plant Factory (식물공장내 양액의 EC가 적겨자와 청경채의 생육 및 품질에 미치는 영향)

  • Lee, Sang Gyu;Choi, Chang Sun;Lee, Jun Gu;Jang, Yoon Ah;Nam, Chun Woo;Yeo, Kyung-Hwan;Lee, Hee Ju;Um, Young Chul
    • Journal of Bio-Environment Control
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    • v.21 no.4
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    • pp.322-326
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    • 2012
  • Recently, researches related to plant factory system has been activated and production of Ssam-vegetables using artificial lighting has been increasing. In South Korea, Ssam-vegetables are very popular and the consumption is increasing every year. Because leaf vegetables cultivated under hydroponic systems are more preferable rather than those cultivated by soil culture in Korea, the plant factory system would be more effective in production of Ssam-vegetables. Therefore, this study was carried out in order to analyze the yield and vitamin C contents in red mustard (Brassica juncea L.) and pak-choi (Brassica campestris var. chinensis), which are used a lot for the Ssam-vegetables in South Korea, as influenced by different concentrations of the nutrient solution in a plant factory system. As a results, there was no significant differences in the plant height among the treatment of EC in the nutrient solution, but for red mustard plants, the number of leaves tended to decrease in the treatment with higher EC. Leaf area of pak-choi plants was significantly increased in the higher EC, while the fresh weight had a tendency to increase along with increasing EC in the nutrient solution for both crops. The photosynthetic rates did not show a distinct tendency by EC levels for red mustard plants, but for pak-choi plants, it tended to be higher at the high EC. The contents of ascorbic acid in leaves were higher with decreasing EC concentration in the nutrient solution for red mustard plants, while the content was the highest at EC $2.0dS{\cdot}m^{-1}$ for pak-choi plants. In summary, considering the marketable yields and vitamin C at different nutrient concentrations in a plant factory, the optimal concentration for red mustard and pak-choi plants was thought to be EC $2.0{\sim}2.5dS{\cdot}m^{-1}$.

Changes in Abscisic Acid, Carbohydrate, and Glucosinolate Metabolites in Kimchi Cabbage Treated with Glutamic Acid Foliar Application under Extremely Low Temperature Conditions (이상저온 시 글루탐산 엽면 처리에 의한 배추의 ABA, 탄수화물 및 Glucosinolate 대사체 변화)

  • Sim, Ha Seon;Jo, Jung Su;Woo, Ui Jeong;Moon, Yu Hyun;Lee, Tae Yeon;Lee, Hee Ju;Wi, Seung Hwan;Kim, Sung Kyeom
    • Journal of Bio-Environment Control
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    • v.31 no.3
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    • pp.170-179
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    • 2022
  • Glutamic acid is a precursor of essential amino acids that play an important role in plant growth and development. It is one of the biostimulants that reduce cold stress damage by stimulating biosynthetic pathways leading to cryoprotectants. This study evaluated the effects of glutamic acid foliar application on Kimchi cabbage under low-temperature stress. There were six treatments, combining three photo-/dark periods temperature levels (11/-1℃ extremely low, E; 16/4℃ moderately low, M; and 21/9℃ optimal, O) with and without glutamic acid foliar application (0 and 10 mg·L-1; Glu 0 and Glu 10). Glutamic acid foliar application was sprayed once 10 days after transplanting, and then temperature treatment immediately after glutamic acid foliar application was conducted for up to four days. After four days of treatment, abscisic acid (ABA), phaseic acid (PA), dihydrophaseic acid (DPA), and abscisic acid-glucose ester (ABA-GE) contents were higher with Glu 10 treatment than Glu 0 treatment in M treatment. Glucose content was highest in E with Glu 10 treatment (52.1 mg·100 g-1 dry weight), while fructose content was highest in O with Glu 0 treatment (134.6 mg·100 g-1 dry weight). The contents of glucolepiddin (GLP), glucobrassicin (GBS), 4-methoxyglucobrassicin (4MGBS), neoglucobrassicin (GNBS), and gluconasturtiin (GNS) were highest among all treatments in E with Glu 10 treatments (0.72, 2.05, 1.67, 9.40 and 0.85 µmol·g-1 dry weight). After two days of treatment, rapid changes in PA and DPA contents of E with Glu 10 treatments were confirmed, and several individual glucosinolate contents (GLP, GBS, 4MGBS, GNBS, and GNS) were significantly different depending on low temperature and glutamic acid treatment. In addition, the content of fructose was significantly lower than that of O treatment in E and M treatments after four days of treatment. Therefore, although the changes in PA, DPA, glucose, fructose, and individual glucosinolates according to low temperature and glutamic acid foliar treatment were shown. A clear correlation between low temperature and glutamic acid effects could not be evaluated. Results indicated that Brassica crops are cryophilic vegetables, do not react sensitively to low temperatures, and mostly have cold resistance.

Nationwide survey of Turnip mosaic virus and selection of cabbage lines with resistance against major TuMV isolates

  • Chung, Jinsoo;Han, Jae-yeong;Kim, Jungkyu;Ju, Hyekyoung;Gong, Junsu;Seo, Eun-young;Choi, Su Ryun;Lim, Yong Pyo;Hammond, John;Lim, Hyoun-Sub
    • Korean Journal of Agricultural Science
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    • v.43 no.4
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    • pp.567-574
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    • 2016
  • This survey was conducted in 2015, following up on theed tthe occurrence of Turnip mosaic virus (TuMV) nationwide in radish and Chinese cabbage fields of 28 cities in South Korea. A total of 152 samples of Raphanus sativus and 29 samples of Brassica rapa, showing virus-like symptoms, were collected. Among these, 107 B. rapa samples and 9 B. rapa samples were positive for TuMV when analyzed by RT-PCR. The TuMV strains found in the two crops showed 99% homology in nucleotide and amino acid sequences of coat protein to each other. Furthermore, their sequences showed 99% homology to the sequences of TuMV isolates R007 (GenBank: KU140420) and R041 (GenBank: KU140421) that were collected in 2014. These results suggested TuMV isolated from radish and cabbage in 2015 were the same strain as the isolates R007 and R041 collected in 2014. A screening test was conducted using these two isolates to select TuMV-resistant B. rapa lines out of 167 B. rapa breeding lines.and identified eight lines resistant to R007 (Kenshin, 279002, 279012, 279064, 279081, MP, C-21, HKC-004) and nine lines resistant to R041 (C-26, HKC-005, 11Su-4, 11Su-5, 11Su-7, 11Su-8, Tian Jin Lv Qing Ma Ye, CNU_141193, Jing Lv 60). Our prior data indicated 4.24% difference in sequences between the two isolates and these can serve as potential tools to develop B. rapa markers to screen for resistance against TuMV strainsin breeding populations.

Convenient Screening Method of Chinese Cabbage for Resistance to Plasmodiophora brassicae Using Soil-Drenching Inoculation (관주 접종법을 이용한 효율적인 배추 뿌리혹병 저항성 검정법)

  • Jo, Su-Jung;Jang, Kyoung-Soo;Choi, Yong-Ho;Kim, Jin-Cheol;Choi, Gyung-Ja
    • Research in Plant Disease
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    • v.16 no.3
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    • pp.279-284
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    • 2010
  • Clubroot caused by Plasmodiophora brassicae is a widespread disease that causes serious problems in many brassica growing areas. To establish more simple and reliable clubroot screening method of Chinese cabbage to P. brassicae using soil-drenching inoculation, the development of clubroot on Chinese cabbage according to several conditions such as soil type, inoculum concentration of P. brassicae GN-1 (race 9), plant growth stage and incubation period was studied. In a commercial horticulture nursery media soil (CNS), disease severity of the seedling according to inoculum concentration increased in a dose-dependent manner, but did not in mixture of CNS and upland soil (1:1, v/v). To facilitate and acquire precise result of resistance screening of Chinese cabbage to clubroot, 10-day-old seedlings should be inoculated by drenching the spore suspension of P. brassicae to give inoculum density of $4.0{\times}10^8$ spores/pot. To develop the disease, the inoculated seedlings were incubated in a growth chamber at $20^{\circ}C$ for 3 days, and then cultivated in a greenhouse ($25{\pm}5^{\circ}C$) for five weeks. Under the optimum conditions, 25 clubroot-resistant (CR) and 3 clubroot-susceptible (CS) cultivars were tested for resistance to P. brassicae. All CR cultivars showed very clear resistance response, on the other hand all CS cultivars severly infected with the pathogen. The results suggest that this method is efficient screening method of Chinese cabbage for resistance to clubroot disease.

Characterization of an Isolate of Cucumber mosaic virus from Raphanus sativus L. (열무에서 분리한 오이모자이크바이러스 분리주의 특성)

  • Rhee, Sun-Ju;Hong, Jin-Sung;Choi, Jang-Kyung;Kim, Eun-Ji;Lee, Gung-Pyo
    • Research in Plant Disease
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    • v.17 no.2
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    • pp.211-215
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    • 2011
  • Cucumber mosaic virus (CMV)-like isolate was collected from Raphanus sativus (cv. Choon-hyang), which showed mosaic symptoms. The isolate was confirmed to a strain of CMV by host responses in Vigna unguiculata, Chenopodium amaranticolor and Gomphrena globosa, by viral genome composition with RT-PCR and PCR-RFLP, and by serological analysis. Symptom developed by the strain of CMV was severe in Nicotiana benthamiana, N. glutinosa, N. tabacum (cv. Samsun, cv. Xanthi), Cucumis melo (cv. Early hanover), Cucumis sativus (cv. White wonder), Capsicum annuum (cv. Chung-yang and cv. Geum-top), but mild symptom was developed in Raphanus sativus (cv. Choon-hyang), Brassica rapa ssp. pekinensis (cv. Bul-Am No. 3), and B. juncea (cv. Daenong Jukgot). Newly isolated strain of CMV could infect diverse crops including Solanaceae, Cucurbitaceae and Brassicaceae. We designated the new strain of CMV as Gn-CMV based on the novel infectivity of Brassicaceae. In double-stranded (ds) RNA analysis, Gn-CMV consisted of 3.3, 3.0, and 2.2 kb genomes likewise other strains of CMV. SDS-polyacrylamide gel electrophoresis (SDS-PAGE) showed 28 kDa of the CMV coat protein. By restriction enzyme mapping using Cac8I, ClaI and MspI of RT-PCR products indicated that Gn-CMV belongs to CMV subgroup I.

Differences of Electrical Conductivity, Organic and Inorganic Constituents in Leakage from Aged and Non-aged Vegetable Seeds (채소 퇴화종자와 건전종자 침지용액의 전기전도도, 유기및 무기성분의 차이)

  • 민태기
    • KOREAN JOURNAL OF CROP SCIENCE
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    • v.40 no.4
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    • pp.533-541
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    • 1995
  • The leakage characteristics of electrical conductivity, inorganic constituents-K, Ca, Mg and Na, total sugar and total amino acid from the exudates of some vegetable seeds of viable and non-viable(artificially aged) were quantified to get basic information about the detection of the non-viable seeds. The crops studied were radish, cabbage, broccoli, onion and carrot. The time course electrolyte leakage was different from viable and non-viable seed of cruciferae but not sensitive in onion and carrot seed In inorganic constituents, potassium leakage was the greatest amount and difference between viable and non-viable seeds, but Ca, Mg and Na leakages were not as much differences as potassium. Total sugar as glucose and total amino acid as glycin leaked a lot more in aged radish, cabbage and broccoli seed than non-aged seed and the large differences were appeared after 4 hour imbibition. As a results, in general the leakages from the aged seeds were greater than from the non-aged seeds in most components tested but they were varied depending on species or varieties and components.

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Effects of Biochar on Early Growth and Nutrient Content of Vegetable Seedlings (바이오차의 시용이 채소 유묘 생장 및 양분 흡수량에 미치는 영향)

  • Hong, Sung-Chang;Yu, Seon-Young;Kim, Kyeong-Sik;Lee, Gyu-Hyun;Song, Sae-Nun
    • Korean Journal of Environmental Agriculture
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    • v.39 no.1
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    • pp.50-57
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    • 2020
  • BACKGROUND: Biochar is used in various environmental fields, such as water quality and soil restoration, and affects soil fertility and nutrient cycling. Also, when crops are grown on biochar-applied soil, their characteristics may be affected. Biochar is used especially with commercial vegetable seedlings. METHODS AND RESULTS: The objective of this study was to determine the effects of biochar content in seeding mixes on early growth of lettuce (Lactuca sativa L.), Chinese cabbage (Brassica rapa L.), and red pepper (Capsicum annuum L.). Treatments consisted of a control (0: 10, ratio of biochar to seeding mixes (w/w)), 1: 9 (biochar 10%), 3: 7 (biochar 30%), 5: 5 (biochar 50%), and 7: 3 (biochar 70%). The biochar was made from risk husk and had a C/N ratio of 104. As the mixing ratio of biochar increased, pH increased whereas EC and nitrogen content decreased. The highest phosphorus content was with the treatment of 30% biochar, while there were significant increases in the weight of lettuce seedlings and concentrations of T-N, P2O5, K2O, MgO, and Na with the treatments of 30% and 50% biochar. Although the weight of Chinese cabbage seedlings increased with the treatment of 10% biochar, the increase was not statistically significant. Also, there was an increase in the weight of red pepper seedlings with the treatment of 30% biochar, but the increase was not statistically significant. With increases in the biochar mixing ratio, the K2O concentration of red pepper seedlings increased, but the concentrations of P2O5, CaO, MgO, and Na decreased. It was believed that this was because of absorption inhibition by calcium-phosphate formation in the seeding mixes owing to increased pH. CONCLUSION: In conclusion, adding biochar to seeding mixes is considered to be an important mean for growing healthy vegetable seedlings. More field experiments are needed to verify the effect of biochar on vegetable crop growth over the entire growing season.

Evaluation of Clubroot Resistance in Chinese Cabbage and Its Inheritance in the European Turnip Line 'IT033820', a New Genetic Resource

  • Cho, Kang Hee;Kim, Ki Taek;Park, Suhyung;Kim, Su;Do, Kyung Ran;Woo, Jong Gyu;Lee, Hee Jae
    • Horticultural Science & Technology
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    • v.34 no.3
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    • pp.433-441
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    • 2016
  • Clubroot caused by the protist Plasmodiophora brassicae is one of the most destructive diseases of Brassica crops. Developing Chinese cabbage cultivars with durable clubroot resistance (CR) is an important goal of breeding programs, which will require new genetic resources to be identified and introduced. In this study, we evaluated resistance to P. brassicae race 4 using 26 Chinese cabbage (B. rapa ssp. pekinensis ) cultivars compared to the clubroot-susceptible Chinese cabbage inbred line 'BP079' and the clubroot-resistant European turnip (B. rapa ssp. rapifera ) inbred line 'IT033820'. No symptoms of clubroot disease were found in 'IT033820' infected with P. brassicae race 4, whereas the Chinese cabbage cultivars exhibited disease symptoms to various degrees. The Chinese cabbage cultivars that were reported to be clubroot-susceptible were susceptible to P. brassicae race 4; however, seven of the 20 cultivars reported to be clubroot-resistant were susceptible to this race of P. brassicae to varying degrees. Resting spores of P. brassicae were abundant within the infected root tissues of 'BP079', as revealed by light microscopy and scanning electron microscopy (SEM), but they were not detected in root tissues of 'IT033820'. Although resting spores were not detected by light microscopy in root tissues of the clubroot-resistant Chinese cabbage cultivar 'Kigokoro 75', a few spores were observed by SEM. The $F_1$ hybrids from a cross between 'IT033820' and 'BP079' showed no disease symptoms, and all $BC_1P_1$ progenies from a cross between the $F_1$ hybrid and 'IT033820' exhibited a resistance phenotype. In the $BC_1P_2$ population from a cross between the $F_1$ hybrid and 'BP079', this trait segregated at a ratio of 3(R):1(S) (${\chi}^2=1.333$, p = 0.248) at a 5% significance level. Inoculated $BC_1P_2$ plants were either highly resistant or highly susceptible to the pathogen, indicating that the CR to race 4 of P. brassicae carried by 'IT033820' is dominant. In the $F_2$ population, this trait segregated at a ratio of 15(R):1(S) (${\chi}^2=0.152$, p = 0.696) at a 5% significance level, suggesting that CR in 'IT033820' is mainly controlled by two dominant genes. Therefore, 'IT033820' represents a promising genetic resource for developing durable CR breeding lines in Chinese cabbage.