• 제목/요약/키워드: recessive virus resistance

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바이러스 열성 저항성: 병저항성 작물 개발을 위한 유전자 교정 소재 발굴 연구의 동향 (Recessive Resistance: Developing Targets for Genome Editing to Engineer Viral Disease Resistant Crops)

  • 한수정;허경재;최보람;서장균
    • 식물병연구
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    • 제25권2호
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    • pp.49-61
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    • 2019
  • 식물 바이러스는 작물 생산량 손실을 일으키는 주요 병원체 중 하나로, 돌연변이 발생이 빈번하고 치료 약제가 개발되어 있지 않아 방제가 매우 어렵다. 이러한 바이러스병을 방제하기 위한 가장 효과적인 방법은 저항성 품종을 재배하는 것이며, 바이러스 저항성 품종을 개발하기 위해서는 바이러스와 기주 식물 간의 다양한 유전자적 상호작용에 대한 정확한 이해가 필요하다. 열성 저항성은 병원체가 살아가는데 필요한 식물 유전자가 결핍되었을 때 획득되는데, 저항성 유전자(R gene)에 의해 유도되는 우성 저항성에 비해 넓은 범위의 저항성을 발현하고 돌연변이 출현에 쉽게 저항성이 깨지지 않는 특성을 보인다. 현재까지 알려진 바이러스병에 대한 열성 저항성 유전자는 대부분 순행유전학(forward genetics)를 통해 밝혀졌으나, 최근 CRISPR/Cas9 등을 이용한 유전자 교정 기술의 급속한 발전에 힘입어 역유전학(reverse genetics)을 통한 열성 저항성 작물개발의 가능성이 열리고 있다. 이러한 역유전학적 접근을 통한 열성 저항성 작물 개발은 먼저 바이러스 단백질과 상호작용하는 기주 인자를 밝히고 이들간의 상호작용을 억제하도록 하는 기주 인자에 대한 유전자 교정을 통해 이루어 질 수 있다. 본 논문에서는 열성 저항성에 대한 소개와 새로운 열성 저항성 후보 유전 소재 발굴을 위한 기주 인자 연구의 중요성 및 방법을 소개하고, 열성 저항성 작물 개발에 적용할 수 있는 유전자 교정기술의 최신 동향에 관해 정리하였다.

연초 (Nicotiana tabacum L.) 감자바이러스Y 저항성 품종육성 I. 황색종 품종 McNair30의 감자바이러스Y 저항성유전 (BREEDING TOBACCO (NICOTIANA TABACUM L.) RESISTANT TO POTATO VIRUS Y IN KOREA I. INHERITANCE OF RESISTANCE TO POTATO VIRUS Y OF FLUE-CURED TOBACCO VARIETY MCNAIR 30)

  • 정윤화;정석훈;금완수;최상주;이승철
    • 한국연초학회지
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    • 제6권2호
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    • pp.185-189
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    • 1984
  • To classify the inheritance of resistance to potato virus Y, crosses between susceptible flue-cured tobacco variety NC 95 and resistant variety McNair 30 were conducted. The parents, $F_1$ plants, $F_2$ populations, and haploid plants derived from anthers of $F_1$ plants were screened for a resistance of two potato virus Y strains (PVY-VB and PVY-VN) isolated in Korea. The Chi-square values for the $F_3$ populations and haploids of $F_1$ fitted 1 :3 and 1 :1 ratios of resistant to susceptible for two strains, respectively. Therefore, it was found that the resistance of McNair 30 for the potato virus Y was controlled by a single recessive gene. Moreover the resistance to two strains screened was inherited dependently.

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Developmental Changes of Recessive Genes-mediated Cucumber mosaic virus (CMV) Resistance in Peppers (Capsicum annuum L.)

  • Min, Woong-Ki;Ryu, Jae-Hwang;Ahn, Su-Hyeon
    • 원예과학기술지
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    • 제32권2호
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    • pp.235-240
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    • 2014
  • Cucumber mosaic virus (CMV) is one of the most important viral diseases in pepper (Capsicum annuum L.), and several genes for resistance were reported in Capsicum spp. In Korea, a single dominant gene that is resistant to $CMV_{Fny}$ and $CMV_{P0}$ has been used for breeding. Recently, a new strain ($CMV_{P1}$) was reported that could infect cultivars resistant to both $CMV_{Fny}$ and $CMV_{P0}$. Therefore, breeding of more robust CMV-resistant cultivars is required. In this study, we surveyed the inheritance of $CMV_{P1}$ resistance and analyzed the location of the resistance loci. After $CMV_{P1}$ inoculation of various germplasms and breeding lines, one accession (ICPN18-8) showed no visual symptoms at 15 dpi (days post inoculation) but was susceptible after 45 dpi, and one resistant line (I7339) showed resistance until at 45 dpi. The latter line was used for tests of resistance inheritance. A total of 189 $F_2$ plants were examined, with 42 individuals showing resistance at 15 dpi and a phenotype segregation ratio close to 1:3 (resistant:susceptible plants). In a lateral ELISA test at 45 dpi, 11 plants showed resistance, and the segregation ratio was changed to 1:15. These results indicate that resistance in C. annuum 'I7339' is controlled by two different recessive genes; we named these resistance genes 'cmr3E' and 'cmr3L,' respectively. To locate these two resistant loci in the pepper linkage map, various RAPD, SSR, and STS markers were screened; only nine markers were grouped into one linkage group (LG). Only one RAPD primer (OPAT16) was distantly linked with cmr3E (22.3 cM) and cmr3L (20.7 cM). To develop more accurate markers for marker-assisted breeding, enriching for molecular markers spanning two loci will be required.

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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    • 제9권1호
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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.

Double Mutations in eIF4E and eIFiso4E Confer Recessive Resistance to Chilli Veinal Mottle Virus in Pepper

  • Hwang, JeeNa;Li, Jinjie;Liu, Wing-Yee;An, Song-Ji;Cho, Hwajin;Her, Nam Han;Yeam, Inhwa;Kim, Dosun;Kang, Byoung-Cheorl
    • Molecules and Cells
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    • 제27권3호
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    • pp.329-336
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    • 2009
  • To evaluate the involvement of translation initiation factors eIF4E and eIFiso4E in Chilli veinal mottle virus (ChiVMV) infection in pepper, we conducted a genetic analysis using a segregating population derived from a cross between Capsicum annuum 'Dempsey' containing an elF4E mutation ($pvr1^2$) and C. annuum 'Perennial' containing an elFiso4E mutation (pvr6). C. annuum 'Dempsey' was susceptible and C. annuum 'Perennial' was resistant to ChiVMV. All $F_1$ plants showed resistance, and $F_2$ individuals segregated in a resistant-susceptible ratio of 166:21, indicating that many resistance loci were involved. Seventy-five $F_2$ and 329 $F_3$ plants of 17 families were genotyped with $pvr1^2$ and pvr6 allele-specific markers, and the genotype data were compared with observed resistance to viral infection. All plants containing homozygous genotypes of both $pvr1^2$ and pvr6 were resistant to ChiVMV, demonstrating that simultaneous mutations in elF4E and eIFiso4E confer resistance to ChiVMV in pepper. Genotype analysis of $F_2$ plants revealed that all plants containing homozygous genotypes of both $pvr1^2$ and pvr6 showed resistance to ChiVMV. In protein-protein interaction experiments, ChiVMV viral genome-linked protein (VPg) interacted with both eIF4E and eIFiso4E. Silencing of elF4E and eIFiso4E in the VIGS experiment showed reduction in ChiVMV accumulation. These results demonstrated that ChiVMV can use both eIF4E and eIFiso4E for replication, making simultaneous mutations in eIF4E and eIFiso4E necessary to prevent ChiVMV infection in pepper.

Identification of Productive Mulberry Silkworm Hybrids Resistant to Densonucleosis Virus Type 1 (BmDNV1)

  • Rao, P. Sudhakara;Nataraju B.;Balavenkatasubbaiah M.;Dandin S.B.
    • International Journal of Industrial Entomology and Biomaterials
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    • 제13권2호
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    • pp.109-112
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    • 2006
  • The use of commercial silkworm hybrids resistant to important silkworm diseases is economical and better option particularly in tropical areas. This necessitated the evolution of productive bivoltine silkworm breeds non-susceptible to $BmDNV_1$. Non-susceptibility to $BmDNV_1$, infection was found to be controlled by a single recessive gene, nsd-l or a dominant gene, Nid-l. A major dominant/recessive gene confers resistance to $BmDNV_1$, from potent donor parents have been transferred to 10 productive but susceptible bivoltine silkworm strains through conventional breeding methods. By utilizing these breeds prepared 25 hybrids $(5{\times}5)$ and hybrid evaluation was carried out to identify most promising hybrids resistant to $BmDNV_1$. All these hybrids are inoculated with $BmDNV_1$ inoculum along with productive control hybrid $CSR2{\times}CSR4$ and reared under standard rearing procedure. Based on inoculated rearing and test reeling results, two most promising hybrids $(CSR18DR{\times}CSR29DR\;and\;CSR21DR{\times}CSR50DR)$ were selected for commercial exploitation. The selected hybrids have shown a survival rate of >85% with productive traits, where as control hybrid have shown 11.1% survival with inferior cocoon traits. The methodologies adopted were discussed.

국내 감자바이러스 Y (PVY) 저항성 육성 계통에서 분리한 PVY Mutant의 특성 (Characteristics of Potato Virus Y (PVY) Mutant Isolated from PVY Resistance Breeding Line in Korea)

  • 김재현;금완수;이신호;김정수;전용호;정석훈;정열영;박용학
    • 한국연초학회지
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    • 제28권2호
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    • pp.100-110
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    • 2006
  • A mutant of Potato vims Y (PVY) was occurred in PVY resistance flue-cured tobacco breeding line KF0402 $(TC1146{\times}KF117)$ showing vein necrosis at Suwon in Korea. This isolate, PVY-SWM, was differentiated from other PVY based on biological properties and nucleotide sequence analyses of coat protein gene. PVY-SWM caused typical symptoms on 21 indicator plants as compared to the PVY-TOJC37. Remarkably, the PVY-SWM induced distinctly different symptom of systemic vein necrosis on tobacco cultivars V.SCR, PBD6, TN86, TN90, Virgin A Mutant (VAM), Wislica, NC744, KB108 and KB111, which were reported to have the recessive potyvirus resistance gene va. In RT-PCR assays with specific primers for detection of PVY, a single band of about 800bp in length was produced. The amplified DNA was cloned and the nucleotide sequence was determined. The coat protein gene of PVY-SWM showed 88.4%-99.0% and 92.5%-98.5% identities to the 12 different PVY isolates of Genbank Database at the nucleotide and amino acidi respectively. Multiple alignments as well as cluster dendrograms of PVY-SWM isolate revealed close phylogenetic relationship to the $PVY^{NTN}$ subgroup.

식물바이러스 면역반응 최신 연구 동향 및 전망 (Plant Immunity against Viruses: Moving from the Lab to the Field)

  • 김남연;홍진성;정래동
    • 식물병연구
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    • 제24권1호
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    • pp.9-25
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    • 2018
  • 전 세계적으로 주요 작물에서 기후변화, 무역의 다변화 등 여러 요인에 의해 식물바이러스에 의한 작물 생산량 감소 등의 경제적 손실이 심각하다. 이에 경제 작물에서 심각한 바이러스 병 피해를 줄이기 위한 여러 바이러스에 대한 광범위한 저항성 작물개발이 시급하다. 식물바이러스 병 예방 및 방제를 위해서 지금까지 연구해왔던 바이러스-식물간의 상호작용 기초 연구결과물 뿐만 아니라 식물면역 관련 과학적 방법 종합화를 통한 응용화된 연구 진행이 필요하다. 본 리뷰에서는 바이러스 저항성 작물 도입을 위해 지금까지 연구되어 왔던 식물면역 기작을 소개하고 이를 활용한 작물 개발 사례를 소개하였다. 또한 유전자교정기술과 같은 게놈 공학 기술을 활용한 바이러스 저항성 작물의 필요성과 연구 방향에 대해 기술하였다. 본 리뷰를 통해 현재까지 알려져 있는 바이러스 면역 기작에 대한 이해를 돕고, 최신 바이러스 병방제 기술들을 소개함으로써 농민들뿐만 아니라 연구자들에게도 도움이 되기를 바라며, 식물면역 연구가 작물 재배 중 발생할 수 있는 바이러스 병 농가 피해를 감소시킬 수 있는 효과적인 대응 방안으로 이어지길 바란다.

옥수수의 위축모자이크바이러스에 대한 저항성: 이면교배에 의한 유전분석 (Resistance of Corn to Maize Dwarf Mosaic Virus: Genetic Analysis by Diallel Cross)

  • 허노열;김달웅;유갑희;강창식;이경휘
    • 한국식물병리학회지
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    • 제1권2호
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    • pp.136-140
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    • 1985
  • 옥수수 위축모자이크바이러스병의 저항성품종 육성을 위한 기초자료를 얻고자 8개 옥수수 자식계통을 공시하여 이면교배에 의하여 조합능력검정 및 유전자의 분포상태를 추정한 요약하면 다음과 같다. 28개 $F_1$ 잡종조합의 본 바이러스에 대한 반응은 다양하여 이병도(1-4)의 조사결과 1.87에서 3.63까지 변이의 폭을 보였다. 조합능력의 분산분석결과 일반조합능력은 고도의 유의성이 인정되었으며, 특정조합능력은 유의성이 확정되지 않았다. 일반조합능력의 효과는 A632와 KS15가 부의 효과를 나타내어 이들 계통을 모본으로 사용하였을 때 잡종조합에 있어서 저항성을 증대시킬 수 있을 것으로 기대되었다. 특정조합능력의 효과는 A632와 KS5의 조합에서 가장 높은 부의 값을 나타내었으며 몇 개의 조합에서 부의 효과를 나타내었다. 회귀분석에 의한 유전자의 분포상태조사에서 저항성계통에는 우성유전자가 이병성계통에는 열성유전자가 많이 존재하는 것으로 나타났다.

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Variability in the Viral Protein Linked to the Genome of Turnip Mosaic Virus Influences Interactions with eIF(iso)4Es in Brassica rapa

  • Li, Guoliang;Zhang, Shifan;Li, Fei;Zhang, Hui;Zhang, Shujiang;Zhao, Jianjun;Sun, Rifei
    • The Plant Pathology Journal
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    • 제37권1호
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    • pp.47-56
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    • 2021
  • Plants protect against viruses through passive and active resistance mechanisms, and in most cases characterized thus far, natural recessive resistance to potyviruses has been mapped to mutations in the eukaryotic initiation factor eIF4E or eIF(iso)4E genes. Five eIF4E copies and three eIF(iso)4E copies were detected in Brassica rapa. The eIF4E and eIF(iso)4E genes could interact with turnip mosaic virus (TuMV) viral protein linked to the genome (VPg) to initiate virus translation. From the yeast two-hybrid system (Y2H) and bimolecular fluorescence complementation (BiFC) assays, the TuMV-CHN2/CHN3 VPgs could not interact with BraA.eIF4E.a/c or BraA.eIF(iso)4E.c, but they could interact with BraA.eIF(iso)4E.a in B. rapa. Further analysis indicated that the amino acid substitution L186F (nt T556C) in TuMV-UK1 VPg was important for the interaction networks between the TuMV VPg and eIF(iso)4E proteins. An interaction model of the BraA. eIF(iso)4E protein with TuMV VPg was constructed to infer the effect of the significant amino acids on the interaction of TuMV VPgs-eIF(iso)4Es, particularly whether the L186F in TuMV-UK1 VPg could change the structure of the TuMV-UK1 VPg protein, which may terminate the interaction of the BraA.eIF(iso)4E and TuMV VPg protein. This study provides new insights into the interactions between plant viruses and translation initiation factors to reveal the working of key amino acids.