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      KCI등재 SCIE SCOPUS

      Multiple down-regulated cytochrome P450 monooxygenase genes contributed to synergistic interaction between chlorpyrifos and imidacloprid against Nilaparvata lugens

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      https://www.riss.kr/link?id=A106610588

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      다국어 초록 (Multilingual Abstract)

      Insecticide mixtures are an effective strategy in pest resistance management. The synergistic chlorpyrifos and imidacloprid mixture could significantly increase toxicity against rice pest, Nilaparvata lugens, despite their high levels of resistance. H...

      Insecticide mixtures are an effective strategy in pest resistance management. The synergistic chlorpyrifos and imidacloprid mixture could significantly increase toxicity against rice pest, Nilaparvata lugens, despite their high levels of resistance. However, synergism mechanisms to explain this phenomenon remain unknown. Chlorpyrifos and imidacloprid at a 1:0.5 ratio showed significant synergism on N. lugens with a combination index value of 0.18 after topical exposure. We constructed a genetic database of the genes expressed in individual and synergistic chlorpyrifos and imidacloprid treatments of N. lugens using Illumina Hiseq™ X Ten, and 17 co-downregulated genes putatively involved in synergism were detected by comparative transcriptome analyses.
      Expression patterns of the 17 candidate synergistic genes matched with transcriptome sequencing data by quantitative real-time PCR analyses. Feeding of dsRNAs further reduced the expression levels of 10 of these candidate synergistic genes (from 1.68 to 4.13-fold). Nymphs fed with only dsRNAs of CYP4DE1, CYP6AY1v2, CYP353D1, and CYP439A1 experienced more high mortality rates (81.45–90.34%) to improve synergism between chlorpyrifos and imidacloprid. Multiple reductive expressed P450 genes were potentially associated with synergism of a mixture of chlorpyrifos and imidacloprid, as confirmed by comparative transcriptome analyses and RNAi assays. Our findings suggested that synergistic interactions between chlorpyrifos and imidacloprid might be controlled by P450s.

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      참고문헌 (Reference)

      1 Hellemans, J., "qBase relative quantification framework and software for management and automated analysis of real-time quantitative PCR data" 8 : R19-, 2007

      2 Teng, X., "Validation of reference genes for quantitative expression analysis by real-time RT-PCR in four lepidopteran insects" 12 : 1-17, 2012

      3 Gao, Y., "Transcriptomebased identification and characterization of genes commonly responding to five different insecticides in the diamondback moth, Plutella xylostella" 144 : 1-9, 2018

      4 Xue, J., "Transcriptome analysis of the brown planthopper Nilaparvata lugens" 5 : e14233-, 2010

      5 Ilias, A., "Transcription analysis of neonicotinoid resistance in Mediterranean(MED)populations of B. tabaci reveal novel cytochrome P450s, but no nAChR mutations associated with the phenotype" 16 : 939-, 2015

      6 Xu, D. J., "The different susceptibility of the brown planthopper, Nilaparvata lugens, and the small brown planthopper, Laodelphax striatellus to eighteen insecticides and ten mixtures" 25 : 286-291, 2009

      7 Yang Yung Yu, "Synergistic effect and field control efficacy of the binary mixture of permethrin and chlorpyrifos to brown planthopper (Nilaparvata lugens)" 한국응용곤충학회 22 (22): 67-76, 2019

      8 Bielza, P., "Synergism studies with binary mixtures of pyrethroid, carbamate and organophosphate insecticides on Frankliniella occidentalis (Pergande)" 63 : 84-89, 2007

      9 Yu, H. M., "Study on synergistic mechanism of a mixture of triazophos and fipronil to Mythimna separate" 11 : 317-322, 2009

      10 Zhu, G. N., "Studies on synergistic mechanism for a mixture of chlorpyrifos and avermectin B1a in cotton bollworm, Helicoverpa armigera" 28 : 319-324, 2002

      1 Hellemans, J., "qBase relative quantification framework and software for management and automated analysis of real-time quantitative PCR data" 8 : R19-, 2007

      2 Teng, X., "Validation of reference genes for quantitative expression analysis by real-time RT-PCR in four lepidopteran insects" 12 : 1-17, 2012

      3 Gao, Y., "Transcriptomebased identification and characterization of genes commonly responding to five different insecticides in the diamondback moth, Plutella xylostella" 144 : 1-9, 2018

      4 Xue, J., "Transcriptome analysis of the brown planthopper Nilaparvata lugens" 5 : e14233-, 2010

      5 Ilias, A., "Transcription analysis of neonicotinoid resistance in Mediterranean(MED)populations of B. tabaci reveal novel cytochrome P450s, but no nAChR mutations associated with the phenotype" 16 : 939-, 2015

      6 Xu, D. J., "The different susceptibility of the brown planthopper, Nilaparvata lugens, and the small brown planthopper, Laodelphax striatellus to eighteen insecticides and ten mixtures" 25 : 286-291, 2009

      7 Yang Yung Yu, "Synergistic effect and field control efficacy of the binary mixture of permethrin and chlorpyrifos to brown planthopper (Nilaparvata lugens)" 한국응용곤충학회 22 (22): 67-76, 2019

      8 Bielza, P., "Synergism studies with binary mixtures of pyrethroid, carbamate and organophosphate insecticides on Frankliniella occidentalis (Pergande)" 63 : 84-89, 2007

      9 Yu, H. M., "Study on synergistic mechanism of a mixture of triazophos and fipronil to Mythimna separate" 11 : 317-322, 2009

      10 Zhu, G. N., "Studies on synergistic mechanism for a mixture of chlorpyrifos and avermectin B1a in cotton bollworm, Helicoverpa armigera" 28 : 319-324, 2002

      11 Zhang, Y. N., "Reproductive switching analysis of Daphnia similoides between sexual female and parthenogenetic female by transcriptome comparison" 6 : 34241-, 2016

      12 Lu Xu, "RNAi suppression of nuclear receptor genes results in increased susceptibility to sulfoxaflor in brown planthopper, Nilaparvata lugens" 한국응용곤충학회 20 (20): 645-653, 2017

      13 Chou, T. C., "Quantitative analysis of dose-effect relationships: the combined effects of multiple drugs or enzyme inhibitors" 22 : 27-55, 1984

      14 Krempl, C., "Potential detoxification of gossypol by UDP-glycosyltransferases in the two Heliothine moth species Helicoverpa armigera and Heliothis virescens" 71 : 49-57, 2016

      15 Zhang, Y. H., "Nextgeneration sequencing-based transcriptome analysis of Cryptolaemus montrouzieri under insecticide stress reveals resistance-relevant genes in ladybirds" 100 : 35-41, 2012

      16 Sugimura, T., "Mutagens-carcinogens in foods" 43 : 2415-2421, 1983

      17 Perre, C. D., "Mixture toxicity of phostebupirim and cyfluthrin: species-specific responses" 36 : 1947-1954, 2017

      18 Zhang, X. L., "Insecticide resistance monitoring and correlation analysis of insecticides in field populations of the brown planthopper Nilaparvata lugens (stål) in China 2012–2014" 132 : 13-20, 2016

      19 Elzaki, M. E. A., "Imidacloprid is degraded by CYP353D1v2, a cytochrome P450 overexpressed in a resistant strain of Laodelphax striatellus" 73 : 1358-1363, 2017

      20 Bao, H. B., "IPPA08 allosterically enhances the action of imidacloprid on nicotinic acetylcholine receptors" 79 : 36-41, 2016

      21 Lao, S. H., "Genomic and transcriptomic insights into the cytochrome P450 monooxygenase gene repertoire in the rice pest brown planthopper, Nilaparvata lugens" 106 : 301-309, 2015

      22 Xue, J., "Genomes of the rice pest brown planthopper and its endosymbionts reveal complex complementary contributions for host adaptation" 15 : 521-, 2014

      23 Mamakani, K., "Generating simple convex Venn diagrams" 16 : 270-286, 2012

      24 Gunning, R. V., "Esterase inhibitors synergise the toxicity of pyrethroids in Australian Helicoverpa armigera (Hübner) (Lepidoptera:Noctuidae)" 63 : 50-62, 1999

      25 Shi, X. Q., "Efficacy of endosulfan and fipronil and joint toxic action of endosulfan mixtures against Leptinotarsa decemlineata (Say)" 85 : 519-526, 2012

      26 Zhang, Z. J., "De novo transcriptome sequencing in Frankliniella occidentalis to identify genes involved in plant virus transmission and insecticide resistance" 101 : 296-305, 2013

      27 Ji, R., "Comparative transcriptome analysis of salivary glands of two populations of rice brown planthopper, Nilaparvata lugens, that differ in virulence" 8 : e79612-, 2013

      28 Ding, Z. P., "Biochemical mechanisms of imidacloprid resistance in Nilaparvata lugens: over-expression of cytochrome P450 CYP6AY1" 43 : 1021-1027, 2013

      29 Xu, L., "Biochemical and molecular characterization and cross resistance in field and laboratory chlorpyrifos-resistant strains of Laodelphax striatellus (Hemiptera: Delphacidae) from eastern China" 70 : 1118-1129, 2014

      30 Tong, S. M., "A mixture of putative sodium salts of camptothecin and bamboo tar is a novel botanical insecticide against rice planthoppers and stem borers" 89 : 1003-1011, 2016

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      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2008-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2006-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2003-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2002-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2001-07-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 1.08 0.26 0.85
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.72 0.62 0.212 0.08
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