• Title/Summary/Keyword: 저항성기작

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The Roles of Protein Degradation During Fungal-plant Interactions (단백질 분해가 식물의 진균 병 진전에 미치는 영향)

  • Ahn, Il-Pyung;Park, Sang-Ryeol;Bae, Shin-Chul
    • The Korean Journal of Mycology
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    • v.38 no.2
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    • pp.89-94
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    • 2010
  • Plant pathogenic fungi are the most diverse and drastic causal agents of crop diseases threatening stable food production all over the world. Plant have evolved efficient innate immune system to scout and counterattack fungal invasion and pathogenic fungi also developed virulence system to nullify plant resistance machinery or signaling pathways and to propagate and dominate within their niche. A growing body of evidences suggests that post translational modifications (PTMs) and selective/nonselective degradations of proteins involved in virulence expression of plant pathogenic fungi and plant defense machinery should play pivotal roles during the compatible and incompatible interactions. This review elucidates recent investigations about the effects of PTMs and protein degradations on host defense and fungal pathogens' invasions.

Determination of paraquat-resistant biotype on Conyza canadensis and the resistant mechanism (Paraquat 저항성 생태형 망초의 선발과 저항성 기작)

  • Kim, Sung-Eun;Kim, Seung-Yong;Ahn, Sul-Hwa;Chun, Jae-Chul
    • The Korean Journal of Pesticide Science
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    • v.9 no.1
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    • pp.88-96
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    • 2005
  • Paraquat-resistant biotype of Conyza canadensis (L.) Cronq. was determined by chlorophyll loss and random amplified polymorphic DNA (RAPD) analysis and the resistant mechanism was investigated with respect to absorption, translocation, and binding constant. RAPD analysis for paraquat resistant (R) and susceptible (S) biotypes found in a pear orchard revealed that the biotypes possessed remote genetic relationship. Chlorophyll loss, as an indication of paraquat toxicity, of S biotype was 7.8-fold greater than that of R biotype. There were no differences in contents of epicuticular wax and cuticle and amounts of [14C]paraquat penetrating the cuticle between the two biotypes. Little translocation of the herbicide out of the treated leaf was observed in either biotype. Binding constants of paraquat to the cell wall and thylakoid membrane were 7.4-fold and 16.9-fold, respectively, higher in R biotype than in S biotype. The results suggest that the resistance mechanism of C. canadensis biotype is due partly to high binding affinity of paraquat to the cell wall and thylakoid membrane.

Evolution of Plant RNA Viruses and Mechanisms in Overcoming Plant Resistance (식물 RNA 바이러스의 진화와 병저항성 극복 기작)

  • Kim, Myung-Hwi;Kwon, Sun-Jung;Seo, Jang-Kyun
    • Research in Plant Disease
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    • v.27 no.4
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    • pp.137-148
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    • 2021
  • Plant RNA viruses are one of the most destructive pathogens that cause a significant loss in crop production worldwide. They have evolved with high genetic diversity and adaptability due to the short replication cycle and high mutation rate during genome replication, which are characteristics of RNA viruses. Plant RNA viruses exist as quasispecies with high genetic diversity; thereby, a rapid population transition with new fitness can occur due to selective pressure resulting from environmental changes. Plant resistance can act as selective pressure and affect the fitness of the virus, which may lead to the emergence of resistance-breaking variants. In this paper, we introduced the evolutionary perspectives of plant RNA viruses and the driving forces in their evolution. Based on this, we discussed the mechanism of the emergence of variant viruses that overcome plant resistance. In addition, strategies for deploying plant resistance to viral diseases and improving resistance durability were discussed.

The Change of Peroxidase Activity in Soybean Seed Followed by Infection with Cercospora kikuchii (대두종자의 자반병 감염과 Peroxidase 활성도변화)

  • Park W.M.;Ko Y.H.;Yoo Y.J.;Lee J.Y.
    • Korean journal of applied entomology
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    • v.21 no.1 s.50
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    • pp.23-26
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    • 1982
  • The present study was carried out to investigate the change of peroxidase activity of soybean seed infected with Cerrospora kikurhii. The protein content, polyphenol oxidase activity and peroxidase isozyme pattern in health and infected soybean seed were also compared. 1. The peroxidase activity was substantially higher in the infected soybean seeds than that in the healthy seeds either cracked or not. No significant differences in protein content were recognized among the seeds tested. 2. No significant differences in peroxidase activities and protein contents were notified between healthy and infected seeds from the measurements on each parts of dissected seeds, cotyledon and seedcoat, however the peroxidase activity in the seed coat of the stained seed was 2.5 times to healthy seed. 3. The activities of polyphenel oxidase were undectable in both healthy and diseased seeds. 4. The electrophoretic Patterns of the Peroridase isozyme were the same between healthy and in footed seed. 5. Therefore, the increase of peroxidase activity in infected soybean seedcoat was mainly due to the biochemical reaction against the pathogen.

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The Ecophysiological Changes of Capsicum annuum on Ozone-Sensitive and Resistant Varieties Exposed to Short-Term Ozone Stress (오존 감수성 및 저항성 고추 품종의 생리생태 변화)

  • Yun, Sung-Chul
    • Korean Journal of Environmental Agriculture
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    • v.23 no.3
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    • pp.128-132
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    • 2004
  • Ozone effects were studied by plant growth chamber to evaluate the impact of ozone ($O_3$) on the physiology of two hot pepper, Capsicum annuum L., cultivars, 'Dabotab' and 'Buchon'. Forty-day old plants with $5{\sim}7$ leaves were exposed to $O_3$ of <20 and 150 nL/L for 8h/d for 3 days. Net photosynthesis and stomatal conductance were measured and foliar injury was described. Foliar damage due to the treated $O_3$ was different from the varieties. 'Dabotab' was most sensitive to $O_3$ and 'Buchon' was resistant. Symptom of ozone damage on the leaves was bifacial necrosis. Decreases of net photosynthesis by $O_3$ were 56% and 40% on 'Dabotab' and 'Buchon', respectively. Decreases of stomatal conductance by $O_3$ were 66% and 63% on each variety. $O_3$ damage on net photosynthesis was started at the low levels of light on the two hot peppers. In addition, assimilation-internal $CO_2$ concentration curves were not different from the two varieties. In conclusion, $O_3$ closed the stomata and decrease net photosynthesis on hot peppers regardless of the ozone sensitivity on leaf injury, but the difference of ecophysiological responses between the two varieties was not found clearly.

In vivo metabolism of carbofuran in resistant and susceptible brown planthoppers, Nilaparvata lugens $St{\aa}l$ (저항성 및 감수성 벼멸구 체내에서의 카보후란 대사)

  • Yoo, Jai-Ki;Ahn, Yong-Joon;Shono, Toshio;Lee, Si-Woo
    • The Korean Journal of Pesticide Science
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    • v.2 no.2
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    • pp.75-82
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    • 1998
  • This study was conducted to find out the biochemical or metabolic resistance mechanism of brown planthopper (BPH) to carbofuran. Differences between resistant ($LD_{50};\;20.3{\mu}g/g$) and susceptible strains($LD_{50};\;0.3{\mu}g/g$) were shown. The amounts of carbofuran metabolite, benzofuranol, and the origin, not developed by Thin Layer Chromatography, were much more in the susceptible strain. But the mother compound, carbofuran, was much more in the resistant strain. The tendencies of metabolism one and three hours after treatment were similar in both strains except for the amounts of metabolites described above. From the study, it is supposed that hydrolytic enzyme, esterase, changes its role from cleaving the esteric bond of carbofuran to making conjugates with carbofuran. This seems to be the main resistance mechanism of BPH to carbofuran. Oxidase and transferase may play little or no role in resistance mechanism. Oxidative and transferring enzymes gave no effects on the metabolism of carbofuran in the resistant strain compared with the susceptible strain.

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In vitro metabolism of carbofuran in resistant and susceptible brown planthoppers, Nilaparvata lugens $St{\aa}l$ (저항성 및 감수성 벼멸구 체외에서의 카보후란 대사)

  • Yoo, Jai-Ki;Ahn, Yong-Joon;Shono, Toshio;Lee, Si-Woo
    • The Korean Journal of Pesticide Science
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    • v.2 no.2
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    • pp.68-74
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    • 1998
  • 벼멸구의 카보후란에 대한 저항성 기작을 구명하기 위해 실내에서 카보후란으로 30세대 도태하여 얻은 저항성계통($LD_{50};\;20.3{\mu}g/g$)과 약제를 12년 동안 처리하지 않은 벼멸구 감수성 계통($LD_{50};\;0.3{\mu}g/g$)을 완충용액과 마쇄하여, 105,000g에서 2시간 원심분리하여 얻은 상등액(에스테라제층)과 침전물(P450-산화효소층)을 효소액으로 하여 $^{14}C$-카보후란을 반응시켜 계통 간 대사물 량의 차이를 조사한 바 저해제(piperonyl butoxide; 산화효소저해제, diethylmalate; 글루타치온 전이효소 저해제, iprobenfos; 에스테라제 저해제)와 보조인자 (NADPH; P-450 산화효소, 글루타치온; 글루타치온전이효소)에 상관없이 카보후란의 대사물과 그 양이 계통간 차이가 없었다. 이상의 결과로부터 저항성 벼멸구에서 일반적으로 곤충에서 생화학적 저항성 기구로 잘 알려진 가수 분해 효소의 일종인 에스테라제와 p-450 산화효소, 글루타치온 전이효소의 활성 증가가 저항성 발달에 관여하지 않음을 알 수 있었다.

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Development of Acaricidal Resistance and Esterase Isozyme of Tetranychus urticae (Acarina : Tetranychidae) (점박이응애의 살비제저항성 발달과 Esterase Isozyme에 관한 연구)

  • 김상수;이승찬
    • Korean journal of applied entomology
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    • v.29 no.3
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    • pp.170-175
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    • 1990
  • These studies were conducted to examine the mechanism of acaricidal resistance in the twospotted spider mite (Tetranychus urticae Koch). The resistant strains were obtained by succssive selection of five acaricides including carbonphenothion and ethion of organophosphorus compound, dicofol of organochlorine compound, cyhexatin of compound and biphenthrin of synthetic pyrethroid. Esterase isozymes were separated by polyacrlyamide gel susceptible strains. The differences of the esterase isozymes of the resistant strains were Est. 1, Est. 3 in the carbonphenothion-selected strain, Est. 3 in the ethion- and the cyhexatin-selected strains, Est. 1, Est. 3, Est. 7 in the dicofol-selected strain, Est. 7 in the biphenthrin-selected strain as compared to the susceptible strain. With the difference of electrophoretic bands and their activities, esterases were related to the resistant mechanism of tested acaricides.

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벼 도열병 저항성 변이체 선별

  • 김혜경;조지연;이상규;홍연규;이기환;이선우;최경자;이시철;안진흥
    • Proceedings of the Plant Resources Society of Korea Conference
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    • 2003.04a
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    • pp.127-127
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    • 2003
  • 벼 도열병 저항성 조절과정을 연구하는 효율적인 방법은 돌연변이를 분리하여 해당유전자를 분석하는 것이다. 이를 위하여 벼에서 제조된 4가지 돌연변이 집단을 이용하여 도열병 저항성 돌연변이를 분리하였다. 실험재료로는 1) fast neturon을 처리하여 제조된 Moroberekan 2,000 라인, 2)T-DNA의 형질전환에 의해서 제조된 화영 1,000 라인, 3)DEB처리에 의해서 제조된 RIL260 3,000라인, 4) gamma ray 처리에 의해서 제조된 상해향혈나 10,000 라인 등이 사용되었다. 병 저항성이 감소된 돌연변이의 분리를 위하여 재료로 사용된 벼 품종과 비친화적 상호작용을 보이는 균주의 포자를 2-3주된 벼 잎에 직접 살포하는 방법을 이용하였다. 균주 접종 7 일 후에 blast lesion을 형성하거나 lesion mimic 표현형을 보이는 돌연변이 등 병저항성이 감소된 라인을 선별하였다. 현재까지 1) Moroberakan 5 라인, 2) 화영 4 라인, 3) RIL260 1 라인 등이 선별되었다. 이와 함께 병저항성이 현저히 증가된 돌연 변이를 선별하기 위하여 친화적인 균주를 사용한 실험에서는 상해향렬나 2 라인이 선별되었다. 선별된 돌연변이는 벼 도열병 저항성 유전자의 분리 및 저항성 조절기작을 연구하는데 효과적으로 사용될 것이다.

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