• Title/Summary/Keyword: 저항성 계통

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Studies of the Insecticide Resistance in the Green Peach Aphid, Myzus persicae Sulzer (V). Development of Cypermethrin and Pirimicarb Resistance, and Cross Resistance (복숭아혹진딧물의 살충제 저항성에 관한 연구 (V). Cypermethrin과 Pirimicarb에 의한 저항성 발달과 교류저항성)

  • 최승윤;김길하;안용준
    • Korean journal of applied entomology
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    • v.28 no.1
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    • pp.23-27
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    • 1989
  • The green peach aphid(Myzus pericae Sulzer) was selected over 20 generations with cypermethrin and pirmicarb, respectively. The resulting resistant strains were tested to inverting-ate the development of insecticide resistance and cross-resistance to some insecticides in the laboratory. The development of insecticide resistance against green peach aphid at the 20th selected generation was greatly varied with the insecticides: 20.5 fold for cypermethrin and 3.2 fold for pirimicarb compared with the parent strain. The cypermethrin selected strain exhibited cross resistance to acephate and pirimicarb, and pirimicarb selected strain to acephate and cypermethrin, respectively. Demeton-S-methyl, however, has not been shown cross-resistance by the selected strains.

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Virus-Resistance Analysis in Transgenic Tobacco Expressing Coat Protein Gene of Cucumber Mosaic Virus (오이모자이크바이러스 외피단백질유전자 발현 담배의 바이러스 저항성 분석)

  • 손성한;김경환;박종석;황덕주;한장호;이광웅;황영수
    • Korean Journal of Plant Tissue Culture
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    • v.24 no.3
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    • pp.153-160
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    • 1997
  • Cucumber mosaic virus (CMV) leads to a cause of poor crop productivity and quality. To solve this problem, we attempted to develop a virus-resistance tobacco plants by using viral coat protein (CP) gene. Transgenic tobacco plants expressing CMV CP gene were analysed by the resistance upon CMV infection. The virus-resistance was measured in $\textrm{T}_{1}$, generation by the inhibition of plant growth and the expression of the mosaic symptoms infected with CMV. The transgenic lines were divided into four groups: highly resistant, resistant, moderate and susceptible based on their growth and symptom severity. Out of 39 transgenic lines, 16 lines showed significant virus-resistance. And of resistant lines, 2 lines were designated highly resistant based on the facts that they achieved similar plant height to that of non-infected tobacco plants and showed lower disease symptom than that of other lines. The steady state level of CP RNA and coat protein level were measured by northern blot and immunoblot analysis. The CP RNA was highly accumulated in most resistant and moderate lines but barely detected in susceptible lines. The coat protein was detected in most lines regardless of their resistance to CMV. from this result, virus-resistance appeared to correlate more with CP RNA level than the level of coat protein. However, in two highly resistant lines, CP RNA level was unexpectedly low. This unexpected phenomenon need to be further investigated.

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Studies on Chemical Resistance of Mites. II. Orchard Mite Control and their Resistance to Metasystox, Folidol and C-8514 in Korea (응애류의 약제 저항성에 관한 연구 II . Metasystox, Folidol 및 C-8514에 대한 과수응애류의 저항성과 방제시험)

  • Lee S. C.;Yoo J. K.
    • Korean journal of applied entomology
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    • v.10 no.2
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    • pp.109-116
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    • 1971
  • The study involved determination of resistance levels of spider mites to Metasystox, Folidol and C-8514 using slide dip technique: a feid trial of alternative acaricides using an O/P resistant strain. 1. Resistant strains of two-spotted spider mite( Tetranychus urticae Koch) were collected from Taegu, Kyungsan, Chunchun, Yesan, Suwon, Osan and Chungju, and kept in the glasshouse through the experiments. Resistant strains of European red mite (Panonychus ulmi Koch) were collected from Chungju, Taegu, Yesan, Chunchun, Suwon and Whasung, and Wonju susceptible was collected. Immediately after collection, tests were applied. All strains except susceptible populations had regularly been sprayed with Organo-phosphates including Parathion (or Folidol), Metasystox, Phenkapton and Trithion for more than the ten Bast years; and Organo-chlorines such as Kelthane and C-8514 more than five years. Comparisons of the resistant strains and susceptible strains at the $LC_50$ values are as follows: a. With Metasystox, resistance levels of the Chungju, Taegu, Yesan, Chunchun and Suwon resistant strains of P. ulmi were respectively, 96,52,4,3 and 2, times as resistant as the Wonju susceptible strain. b. With Folidol, resistance levels of the Chungju, Chunchun, Yesan, Whasung and Suwon strains of P. ulmi showed respectively, 126, 48, 33, 30 and 6-fold resistance levels over the susceptible strain. c. With C-8514, resistance levels of the Taegu, Suwon, Whasung and Chungju strains of P. ulmi were 42, 31, 30 and 20 times greater than the susceptible strain, respectively. d. With Metasystox, resistance levels of the Taegu, Chunchun, Yesan and Suwon, strains of T urticae were respectively, 32,29,25 and 17 times as resistant as the susceptible strain. e. With C-8514, resistance levels of the Taegu, Chungju and Kyungsan strains of T. urticae showed respectively, 59, 29 and 19-fold resistance levels over the Osan strain. 2. Field trials were carried out to assess the toxicities of eleven alternative materials which would be used for control of O/P resistant strain of Panonychus ulmi. The acaricide groups represented were 2 Organo-chlorines (Kelthane MF and Prethylen), 1 carbamate (Furadan), 1 nitrophenyl (Morocide), 1 carbonate (Morestan), 1 tin(Plictran), 1 fluorine (Nissol), 2 mixtures (Fundal and Banmite) and Organo-phosphate (Phenkapton). Of all acaricides tested Kelthane, Plictran, Fundal and Morestan were the most effective; fol]owed by Banmite, Furadan, Prethylen and Nissol. Sumite and Morocide were intermediate, but Phenkapton(Organo-phosphate) was very poor. In other words, a first application of the above outstanding materials gave very high degrees of control of O/P resistant population of European red mite for about 7 to 12 days. However, the results indicate that secondary application would sometimes be necessary. There was no foliage damage to apple trees by any of the acaricides tested of the concentrations used.

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Establishment of Chlorantraniliprole-Resistant Drosophila Strains and Identification of Their Resistant Characteristics (Chlorantraniliprole 저항성 초파리 계통 확립과 저항성 특성 구명)

  • Kim, A-Young;Kwon, Deok Ho;Jeong, In Hong;Thuc, Ahn Phan;Tran, Vi Ngan;Lee, Si Hyeock;Koh, Young Ho
    • Korean journal of applied entomology
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    • v.55 no.4
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    • pp.413-419
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    • 2016
  • Ryanodine receptors (RyRs) regulate the contractions of insect muscles by altering intracellular $Ca^{2+}$ concentration and are the targets of chlorantraniliprole. Recently, a chlorantraniliprole-resistant strain was reported in the diamondback moth Plutella xylostella by obtaining point mutations on the RyRs. In the present study, we established two resistant strains from Drosophila melanogaster, which were treated with low or high concentrations of chlorantraniliprole, and their resistance levels were determined on the basis of contact and ingestion toxicities. Compared with the control strain, the two resistant strains did not show any significant differences in contact toxicity. However, they showed significantly increased resistance ratios in ingestion toxicity than that by the control strain. The low and high concentration resistant strains exhibited 2.1- and 8.1-fold increased resistance ratios, respectively, compared with that by the control strain. Moreover, we found that the resistant strains had altered expression levels of RyRs and more enhanced Acetylcholinesterase and Glutathione-S-transferase activities than that by the non-selected strain. These results suggested that the resistance development of chlorantraniliprole in the two strains might be mediated by the activation of detoxification pathways in D. melanogaster.

Evaluation and Selection of Breeding Lines of Pepper Developed by Incorporation of Resistance to Phytophthora capsid into Local Cultivars of Gyeungbuk Province (고추 역병 저항성 도입 경북지역 재래종 육성계통의 평가와 선발)

  • Kim, Byung-Soo;Kim, Jeong-Hoon
    • Current Research on Agriculture and Life Sciences
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    • v.21
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    • pp.11-16
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    • 2003
  • Lines bred for resistance to Phytophthora capsici by incorporation of resistance to P. capsici in PI201234 or CM334 into 'Subi' and 'Chilseong', land races in Youngyang, and 'Punggak', a land race in Cheongdo in Gyeungbuk province, and lines bred for fortification of one of them above with resistance to viral complex, and tolerant selections from another landrace collection from Punggak (KC268) were evaluated for resistance to P. capsici by inoculation at seedling stage. Almost all the breeding lines showed high level of resistance to P. capsid and selections from KC268 showed tolerance or moderate resistance to P. capsid. The selected plants were grown in a net cage in an outdoor nursery for seed production. Utilization of the lines in breeding was discussed.

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Development of Fenvalerate Resistance in the Diamondback Moth, Plutella xylostela Linne (Lepidoptera : Yponomeutidae) and its Cross Resistance (배추좀나방의 Fenvalerate에 대한 저항성 발달과 교차저항성)

  • 김길하;서영식;이준호;조광연
    • Korean journal of applied entomology
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    • v.29 no.3
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    • pp.194-200
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    • 1990
  • The diamondback moth (Plutella xylostella L.) was selected over 24 generations with fenvalerate. The resulting resistant strain was tested to study development of insecticide resistance and cross resistance to some insecticides in the laboratory. Insecticide resistance of diamondback moth at the 24th generation devleoped 66.2 fold compared to the parent strain for fenvalerate. The fenvalerate selected strain exhibited 145 fold, a high level of cross resistance to deltamethrin, and also showed 17.4-45.0 fold cross resistance to alphamethrin, cypermethrin, fenvalerate, permethrin, and tetramethrin in the pyrethroid insecticides. The fenvalerate selected strain showed 2.5-4.3 fold, low cross resistance to diazinon, dichlorvos, EPN, BPMC, cabaryl, and methomyl. However, it did not show cross resistance to acephate, fenitrothion, phenthoate, and carbofuran.

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기고 - 살충제 저항성관리를 위한 원칙 - 연속세대에 걸친 연용살포 저항성발현 가능성 높여 -

  • Park, Ung
    • Life and Agrochemicals
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    • s.258
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    • pp.38-40
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    • 2010
  • 서로 다른 계통의 살충제 교호살포를 추천한다. 그 이유로는 한 개체군내에서 저항성이 일반적으로 일정하게 발현되는 것이 아니기 때문에 다른 계통의 살충제를 교호살포하여 예견된 저항성을 사전에 효과적으로 지연 또는 방지하는데 그 목적이 있다.

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Resistance Mechanisms of Green Peach Aphid, Myzus persicae (Homoptera: Aphididae), to Imidacloprid (복숭아혹진딧물(Myzus persicae)의 imidacloprid에 대한 저항성 기작)

  • 최병렬;이시우;유재기
    • Korean journal of applied entomology
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    • v.40 no.3
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    • pp.265-271
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    • 2001
  • Resistance mechanisms in the green peach aphid (Myzus persicae) resistant to imidacloprid were investigated. Imidacloprid residues on the aphid integuments decreased slowly as time passed with no significant difference between the susceptible and resistant strains. Residue in the aphid body increased in both strains with time elapse, and was slightly more in the susceptible strain. A higher metabolic rate of imidacloprid in the resistant strain can be expected by the fact that more amount of imidacloprid were excreted in the resistant strain than in the susceptible one. The activity of AChE was higher 1.4 times in the resistant strain than in the susceptible one, and imidacloprid did not inhibit AChE at all in both strains. Piperonyl butoxide (PBO) and iprobenfos (IBP) synergized imidacloprid activity. The mixtures of imidacloprid and PBO (1 : 1 and 1 : 5) caused 69.4- and 250-fold increase of imidacloprid toxicity against the aphid. Insecticide toxicity of the mixtures of IBP and imidacloprid (1 : 1 and 1 : 5) was also increased 227 and 80.6 times. Esterase activity when $\alpha$-naphtyl butyrate and $\beta$-naphtyl acetate were used as substrates was higher in the resistance strain than in the susceptible one. This means that P450 monooxygenase and esterase are responsible for the resistance to imidacloprid in this aphid strain.

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Development of Acaricide Resistance and Cross-Resistance in Tetranychus urticae(Acarina: Tetranychidae) (점박이응애의 설비제정항성 발달과 교차저항성에 관한 연구)

  • 김상수;이승찬
    • Korean journal of applied entomology
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    • v.28 no.3
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    • pp.146-153
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    • 1989
  • These studies were conducted to investigate development of chemical resistance in two-spotted spider mite (Tetranychus urticae Koch) trough single selection for a given period of time with five acaricides including carbophenothion and ethion of organo-phosphate compound, dicofol of organo-chlorine compound, cyhexatin of organo-tin compound, biphenthrin of synthetic pyrethroid compound; and to examine cross-resistance among the acaricides to the selected populations. The development of chemical resistance of two-spotted spider mite was greatly varied under single selection of the each five acaricides. The carbophenothion- and the ethion-populations at the 22nd and the 24th selected generations showed 156- and 64.1-fold resistant levels, respectively, as compared with the susceptible population. However, the dicofol population at the 28th selected generation exhibited 39.7-fold resistant level, and the biphenthrin population at the 24th selected generation revealed 25.2-fold resistant level, while the cyhexatin population at the 20th selected generation showed 13-fold resistant level. The carbophenothion-selected population showed high cross-resistance to ethion, and low cross-resistance to dicofol and biphenthrin. The ethion-selected population revealed also high cross-resistance to carbophenothion. The dicofol-or the biphenthrin-selected populations, however, exhibited moderate cross-resistance to carbophenothion and ethion. Meantime, the cyhexatin-selected population showed high cross-resistance to ethion and carbophenothion.

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Mechanisms of Parathion Resistance in a Ethyl Fenitrothion-Selected Yumenoshima III Strain of House Flies (페니트로치온 도태 Yumenoshima 저항성 집파리에 있어서의 파라치온 저항성 메카니즘)

  • ;;Toshio SHONO
    • Korean journal of applied entomology
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    • v.35 no.3
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    • pp.254-259
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    • 1996
  • The biochemical factors responsible for parathion resistance in a ethyl fenitrothion-selected Yumenoshima I11 (EF-30) strain of the housefly were examined. Great difference (167-fold) in the Iso was observed between the resistant EF-30 (R) and susceptible SRS (S) strains in vitro, suggesting that altered acetylcholinesterase (AChE) in the housefly strain was an important factor in the resistance. The in vitro degradative activity of parathion and paraoxon in both strains was associated with the microsomal and soluble fractions and required NADPH and reduced glutahione (GSH), respectively. The R strain possessed higher activity for GSH S-transferase than the S strain, and this enzyme appears to be important in the resistance mechanism. The R strain was highly resistant to parathion (101,487-fold), but substitution of the methoxy group for ethoxy group decreased the resistance level (25,914-fold) and parathion could be a substrate of GSH S-transferase. It is concluded that the combination of some factors (altered AChE, and enhanced activity of cytochrome P450 dependent monooxygenase and GSH S-transferase) could be sufficient to account for the extremely high level of resistance to parathion and parathion-methyl, although a possible involvement of other factor(s) can not be excluded.

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