• Title/Summary/Keyword: virus resistance

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Evaluation and Verification of Barley Genotypes with Known Genes for Resistance to Barley yellow mosaic virus and Barley mild mosaic virus Under Field Conditions in South Korea

  • Kim, Hong-Sik;Baek, Seong-Bum;Kim, Dea-Wook;Hwang, Jong-Jin;Kim, Si-Ju
    • The Plant Pathology Journal
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    • v.27 no.4
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    • pp.324-332
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    • 2011
  • Soil-borne barley yellow mosaic disease caused by Barley yellow mosaic virus (BaYMV) or Barley mild mosaic virus (BaMMV) gives a serious threat to the winter barley cultivated in the southern regions in Korea. It is important to develop resistant varieties for stable and high-yield production. The objectives of this study were to evaluate 22 genotypes of exotic barley germplasms carrying the resistance genes rym1 through rym12, with the exception of rym10, and to determine the genes that confer resistance to BaYMV or BaMMV in Korea. Using the traditional visual scoring of symptoms at 4 locations over 3 years, average disease rate values differed (P < 0.001) among the genotypes. ELISA test revealed the presence of both BaYMV and BaMMV in all of the field sites but Jinju and significantly different rates of infection among genotypes and years. Barley genotypes differed in how virus quantities and pathogen-induced symptoms were correlated, especially in response to BaYMV. Disease incidence was affected by the climatic conditions present during the early growing stage before overwintering. A Chinese landrace, 'Mokusekko 3', carrying rym1 and rym5 was comparatively resistant at all locations studied. The barley genotypes carrying either rym6 or rym9 were susceptible to the viral strains. The genotypes carrying rym5 were resistant in Jinju and Milyang but susceptible in Iksan and Naju. The resistance genes rym2 and rym3 were effective in local strains and would be potent contributors to disease resistance.

PVY Resistant Transgenic Potato Plants (cv Claustar) Expressing the Viral Coat Protein

  • Gargouri-Bouzid Radhia;Jaoua Leila;Mansour Riadh Ben;Hathat Yemna;Ayadi Malika;Ellouz Radhouane
    • Journal of Plant Biotechnology
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    • v.7 no.3
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    • pp.143-148
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    • 2005
  • The coat protein mediated resistance to potato virus Y is assessed here in transgenic potato plants (Solanum tuberosum L., cv Claustar). Therefore, the corresponding cDNA from tunisian isolate of the virus was cloned into Agrobacterium tumefaciens binary vector. The transgenic lines were subsequently analysed for the presence and expression of the transgene. The CP cDNA copy number was determined for kanamycin resistant plants. Three selected transgenic lines and their S1 progeny resulting from tuber germination showed a high protection level against the virus. These data appear to support the hypothesis that the virus resistance is mediated by the translated viral coat protein expressed in transgenic potato lines.

Derivation of Varletal Resistance to Rice Strip Virus in Korea (한국(韓國)에 있어서 수도(水稻) 줄무늬잎마름병(病)에 대(對)한 품종저항성(品種抵抗性)의 내력(來歷))

  • Choi, Jae Eul;Park, Nam Kyu
    • Korean Journal of Agricultural Science
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    • v.18 no.2
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    • pp.93-98
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    • 1991
  • This research was undertaken to clarify derivation of resistance of Japonica type of rice varieties to rice strip virus. 1. The source of resistance to the rice strip virus in rice cultivars of Nagdongbyeo, Hwaseongbyeo, Gwangmyeongbyeo, Yeongdeogbyeo, Dongjinbyeo, Gyehwabyeo, Hwacheongbyeo, Suweon 362, Iri 390, Milyang 64, Milyang 96 and Milyang 101 was derived from rice cultivar of Modan. 2. The resistance of rice cultivars Donghaebyeo, Sinseonchalbyeo, Palgongbyeo, Hwajinbyeo and Somjinbyeo to the rice strip virus was derived from cultivar Milyang 23 and/or Nangdongbyeo. 3. The resistance of cultivars Jinjubyeo, Tamjinbyeo and Yongsanbyeo to the rice strip virus was derived from cultivar HR 769 and/or Milyang 20. 4. The resistance of cultivar Daecheongbyeo to the rice strip virus was deriverl from cultivar Nagdongbyeo and/or HR 769.

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Resistance to Potato Virus Y Conferred by PVY Replicase Gene Sequence in Transgenic Burley Tobacco (감자바이러스 Y 복제 유전자로 형질전환된 버어리종 연초의 PVY에 대한 저항성 특성)

  • Young Ho Kim;Eun Kyung Park;Soon Yong Chae;Sang Seock Kim;Kyung-Hee Paek;Hye Sun Cho
    • Journal of the Korean Society of Tobacco Science
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    • v.20 no.1
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    • pp.50-56
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    • 1998
  • The complementary DNA (cDNA) of potato virus Y- vein necrosis strain (PVY-VN) replicase gene (Nlb) was transformed into tobacco (Nicotiana tabacum cv. Burley 21) plants. Out of 25 putative transformants regenerated, 3 were resistant to PVY-VN, one highly resistant plant with no symptom until seed harvest time and the other two with mild chlorotic spot symptoms at late stages after infection. No symptom was observed in the highly resistant plant, while mild vein necrotic symptoms were developed on suckers of the moderately resistant plants after seed harvest time, In the first generation (T1) via self fertilization, resistance to susceptibility frequency in transgenic plants from the highly resistant transformant was about 3 : 1, while it was lowered much (about 1:2 and 1:19) in T1 of the moderately resistant transformants. In the second generation (T2) of the highly resistant plant, resistance frequencies were similar to T1, but resistance levels varied greatly and appeared to be decreased. Key words : potato virus Y, viral replicate gene, transgenic tobacco plants, resistance.

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Breeding for Potato Virus Y Resistant Male-sterile $F_1$ Hybrid KB 109 in Nicotiana tabacum L. (연초의 감자바이러스 Y 저항성 웅성불임 일대잡종 KB 109 육성)

  • 조천준;김대송;정석훈;최상주;조명조
    • Journal of the Korean Society of Tobacco Science
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    • v.16 no.2
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    • pp.134-138
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    • 1994
  • Potato Virus Y(PVY), vein necrosis strain, in Korea causes severe symptoms on burley tobacco(Nicotiana tabacum L.). As the results, programs to incorporate PVY resistance into commercial cultivars were initiatEd. But the development of the homozygous fertile line resistant to PVY is time consumming. This study was conducted whether the Fl hybrid could be used to reduce the yield losses caused by PVY. Four F1 hybrids were made between male - sterile(ms) NC 107 and KB 107 as maternal parent, and TC 612 and TC 613 as Pollen donor, respectively, and were evaluated for their PVY resistance and negatively associated traits. (ms NC 107 X TC 612) F1, named as KB 109, Ivas applied to yield trial and compared with commercial cultivars for the level of disease resistance, agronomic characteristics, chemical contents and physical properties. All Fl hybrid could be used commercially as the PVY resistant cultivar. Especially KB 109 have the resistance against PVY, tobacco mosaic virus and black shank(Phytophthora parasitica var. nicotianae). It had wider leaves, flowered one day later, and yield of acceptable quality was higher than that of Burley 21, standard cultivar in Korea.

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바이러스 외피단백질 유전자로 형질전환된 연초 식물체의 TMV 저항성 발현 및 유전자 안정성

  • 박성원;이기원;이청호;이영기;강신웅;최순용
    • Journal of the Korean Society of Tobacco Science
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    • v.21 no.1
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    • pp.77-81
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    • 1999
  • Tobacco plants(Nicotiana tabacum cv. NC82) transformed with TMV CP cDNA were self-fertilized until 8th generation (R$_{8}$), and the transgenic plants from 6th to 8th generation were analized for their resistance to tobacco mosaic virus(TMV) and stability of the gene expression. The 6th generation of the plants(R$_{6}$) showed high resistance(81-91 %) to TMV at eight weeks after artificial inoculation with the virus. The transgenic cell line 601 was the most prominant in the expression of resistance. 98 % of the plants showed no symptom without any agronomic phynotepe variation when they were inoculated with the virus in a experimental field. However, 2% of the plants were revealed as delay type of symptom with mild mosaic on a few leaves. The viral resistance in greenhouse tests of the 7th generation (R$_{7}$) was 54-64%, and the number of delay type plants were increased than that of 6th generation plants. In the 8th generation, 81 % of the plants was complete resistant to the virus. The TMV CP cDNA of the transgenic plants of each generation was also confirmed by genomic PCR, and there was no systemic viral multiplication in the resistant plants. It suggests that the viral resistance and gene expression of the transgenic plants might be stable through the generations.ons.s.

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Induction of RNA-mediated Resistance to Papaya Ringspot Virus Type W

  • Krubphachaya, Pongrit;Juricek, Mila;Kertbundit, Sunee
    • BMB Reports
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    • v.40 no.3
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    • pp.404-411
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    • 2007
  • Transformation of cantaloupes with the coat protein (cp) gene of papaya ringspot virus type W (PRSV-W), Thai isolate, was used to introduce virus resistance. Binary vectors containing either the full length coat protein coding region under control of the 35S CaMV promoter(pSA1175), or the inverted-repeat of a coat protein coding region (pSA1304), were constructed and used for Agrobacteriummediated transformation of cotyledonary explants of the cantaloupe cultivar Sun Lady. Four independent transgenic lines were obtained using pSA1304 and one using pSA1175. Integration of the PRSV-W cp gene into the genome of these transgenic lines was verified by PCR amplification, GUS assays and Southern blot hybridization. In vitro inoculation of these lines with PRSV-W revealed that whereas the line containing pSA1175 remained sensitive, the four lines containing pSA1304 were resistant. The presence of small RNA species, presumably siRNA, corresponding to regions of the viral cp gene in transgenic lines resistant to PRSV-W supports the involvement of post-transcriptional gene silencing in the establishment of resistance.

Resistance to Bombyx mori Densonucleosis Virus Type 1 and Its Inheritance in Silkworm, Bombyx mori L.

  • Sen, Ratna;Nataraju, B.;Balavenkatasubbaiah, M.;Premalatha, V.;Thiagarajan, V.;Datta, R.K.
    • International Journal of Industrial Entomology and Biomaterials
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    • v.9 no.1
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    • pp.35-40
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    • 2004
  • Bombyx mori densonucleosis virus type 1 (BmDNV1)- a non occluded virus causes flacherie disease in the susceptible stocks of the silkworm, Bombyx mori. However, some stocks are non-susceptible. Non-susceptibility to BmDNV1 in B. mori is a unique case where the virus infection is completely inhibited by a single gene of the host. A survey conducted by this institute in some parts of Karnataka state has revealed that, 43.05% of the total incidence of flacherie disease caused by non-occluded viruses, are due to the synergistic infection of B. mori densonucleosis and infectious flacherie virus. Earlier study indicated that rearing of BmDNV1 resistant silkworm stock is effective in protecting silkworm against BmIFV also. In the present study the response of 78 silkworm stocks which include 42 of non-diapausing and 36 of diapausing groups, to BmDNV1 is investigated. Newly ecdysed third instar larvae were inoculated per-os with 10% inoculum of BmDNV1 extracted from the mid-gut of infected silkworm. One non-diapausing and three diapausing silkworm stocks were found to be resistant to BmDNV1. Eleven silkworm stocks were found to possess moderate resistance whereas rest sixty three were found to be susceptible to BmDNV1. Genetic analysis has shown that the resistance to BmDNV1 is autosomally inherited and controlled by a major dominant or a major recessive gene in different silkworm stocks. These resistant stocks can be utilized as the resource material to develop BmDNV1 resistant commercial hybrids. The selection strategies, depending upon the mode of inheritance of resistance in the resource material chosen, are discussed.

Genetic Polymorphism of Avian Leukosis Virus Host Receptors in Korean Native Chickens and Establishment of Resistant Line

  • Lee, Kyung Youn;Shin, Yun Ji;Han, Jae Young
    • Korean Journal of Poultry Science
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    • v.49 no.2
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    • pp.99-108
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    • 2022
  • Avian leukosis virus (ALV) is a highly contagious retrovirus that causes tumors and has resulted in great economic loss worldwide owing to its high transmission rate. Various ALV viral subgroups exist, with infections occurring via specific host receptors. The susceptibility or resistance of avian species to the ALV-A and K subgroups is determined by the host receptor, the tumor virus locus A (tva) gene, while that to ALV-B depends on another host receptor, the tumor virus locus B (tvb) gene. The resistance alleles of tva and tvb have primarily been identified in China, but none have beendetected in Korea. We analyzed the frequencies of tva and tvb genotypes in White Leghorn (WL), Korean Ogye (KO), and Korean native chicken (KNC) breeds, and assessed the resistance to ALV subgroups. In WL, both tva and tvb had various genotypes, including susceptibility and resistance alleles, whereas in KO, tva and tvb resistance alleles were dominant. In KNC, tva susceptibility and resistance alleles were mixed, whereas tvb resistance alleles were dominant. In addition, we showed that there were differences in the splicing pattern of tva transcripts and the expression level of tvb transcripts within breeds. Finally, we confirmed that ALV resistance depended on KO and KNC genotypes by in vitro infection of chicken embryonic fibroblasts with ALV. These results highlight that some KO and KNC individuals are naturally resistant to ALV subgroups A, B, and K, and will facilitate the preservation of economically superior traits through selective breeding.

Studies on the Flacherie Virus in the Silkworm, Bombyx mori L. I. Resistance to Flacherie and Ina-flacnerie Virus in the Leading Silkworm Varieties in Korea (가잠의 바이러스성 연화병에 관한 연구 I. 장려품종에 대한 저항성 검정)

  • 김권영;강석권;이재창
    • Journal of Sericultural and Entomological Science
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    • v.20 no.2
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    • pp.32-35
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    • 1978
  • The infectious flacherie viruses are serious diseases in the silkworm, which affects the cocoon crops. However, there is only a few study on this diseases up-to-date in Korea and, in this experiment, the authors investigated the resistance of the silkworm varieties to flacherie and Ina-flacherie viruses by peroral infection. A cross, Hansaeng #1$\times$ Harisaeng #2, showed the highest resistance to the flacherie virus a Mudeung$\times$Geumho showed the lowest resistance among the examined varieties. It seemed that the varietal difference of resistance against Ina-flacherie virus was appeared and Jam117$\times$ Jam118, Gyeongchu$\times$Yeonil, Mudeung$\times$Geumho, Hansaeng#1$\times$Hansaeng#2 and Hansaeng#3 $\times$ Hansaeng #4 showed non susceptibility by peroral infection. However it was shown that Jam115 $\times$Jam116 had the lowest resistance to Ina-flacherie virus.

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