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      다국어 초록 (Multilingual Abstract)

      To enhance Bacillus thuringiensis (Bt) efficacy, four Cry toxins were purified from four different Bt strains and assessed in their combined efficacy. The Cry mixtures significantly expanded their target insect spectra. Bacterial culture broth of Xeno...

      To enhance Bacillus thuringiensis (Bt) efficacy, four Cry toxins were purified from four different Bt strains and assessed in their combined efficacy. The Cry mixtures significantly expanded their target insect spectra. Bacterial culture broth of Xenorhabdus nematophila (Xn) significantly suppressed insect cellular immune response and increased Cry toxicity. The addition of Xn culture broth to Cry mixture significantly enhanced Bt efficacy in target insect spectrum and insecticidal activity.

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      참고문헌 (Reference)

      1 김규순, "배추좀나방에 대한 프루텔고치벌과 미생물농약의 통합생물방제" 한국응용곤충학회 52 (52): 35-43, 2013

      2 Park, Y., "Xenorhabdus nematophilus inhibits p-bromophenacyl bromide (BPB)-sensitive PLA2 of Spodoptera exigua" 54 : 143-142, 2003

      3 Kim, Y., "Two groups of entomopathogenic bacteria, Photorhabdus and Xenorhabdus, share an inhibitory action against phospholipase A2 to induce host immunodepression" 89 : 258-264, 2005

      4 Contreras, E., "Tribolium castaneum apolipophorin-III acts as an immune response protein against Bacillus thuringiensis Cry3Ba toxic activity" 113 : 209-213, 2013

      5 Park, Y., "The bacterium Xenorhabdus nematophila inhibits phospholipase A2 from insect, prokaryote, and vertebrate sources" 91 : 371-373, 2004

      6 Park, H. W., "Synthesis of additional endotoxins in Bacillus thuringiensis subsp. morrisoni PG-14 and Bacillus thuringiensis subsp. jegathesan significantly improves their mosquitocidal efficacy" 42 : 337-341, 2005

      7 Jung, S., "Synergistic effect of entomopathogenic bacteria (Xenorhabdus sp. and Photorhabdus temperata ssp. temperata) on the pathogenicity of Bacillus thuringiensis ssp. aizawai against Spodoptera exigua (Lepidoptera: Noctuidae)" 35 : 1584-1589, 2006

      8 Gho, H. K., "Simple mass-rearing of beet armyworm, Spodoptera exigua (Hbner) (Lepidoptera: Noctuidae), on an artificial diet." 29 : 180-183, 1991

      9 엄성현, "Sequential Immunosuppressive Activities of Bacterial Secondary Metabolites from the Entomopahogenic Bacterium Xenorhabdus nematophila" 한국미생물학회 52 (52): 161-168, 2014

      10 SAS Institute, Inc., "SAS/STAT user's guide, Release 6.03"

      1 김규순, "배추좀나방에 대한 프루텔고치벌과 미생물농약의 통합생물방제" 한국응용곤충학회 52 (52): 35-43, 2013

      2 Park, Y., "Xenorhabdus nematophilus inhibits p-bromophenacyl bromide (BPB)-sensitive PLA2 of Spodoptera exigua" 54 : 143-142, 2003

      3 Kim, Y., "Two groups of entomopathogenic bacteria, Photorhabdus and Xenorhabdus, share an inhibitory action against phospholipase A2 to induce host immunodepression" 89 : 258-264, 2005

      4 Contreras, E., "Tribolium castaneum apolipophorin-III acts as an immune response protein against Bacillus thuringiensis Cry3Ba toxic activity" 113 : 209-213, 2013

      5 Park, Y., "The bacterium Xenorhabdus nematophila inhibits phospholipase A2 from insect, prokaryote, and vertebrate sources" 91 : 371-373, 2004

      6 Park, H. W., "Synthesis of additional endotoxins in Bacillus thuringiensis subsp. morrisoni PG-14 and Bacillus thuringiensis subsp. jegathesan significantly improves their mosquitocidal efficacy" 42 : 337-341, 2005

      7 Jung, S., "Synergistic effect of entomopathogenic bacteria (Xenorhabdus sp. and Photorhabdus temperata ssp. temperata) on the pathogenicity of Bacillus thuringiensis ssp. aizawai against Spodoptera exigua (Lepidoptera: Noctuidae)" 35 : 1584-1589, 2006

      8 Gho, H. K., "Simple mass-rearing of beet armyworm, Spodoptera exigua (Hbner) (Lepidoptera: Noctuidae), on an artificial diet." 29 : 180-183, 1991

      9 엄성현, "Sequential Immunosuppressive Activities of Bacterial Secondary Metabolites from the Entomopahogenic Bacterium Xenorhabdus nematophila" 한국미생물학회 52 (52): 161-168, 2014

      10 SAS Institute, Inc., "SAS/STAT user's guide, Release 6.03"

      11 Crickmore, N., "Revision of the nomenclature for the Bacillus thuringiensis pesticidal crystal proteins" 62 : 807-813, 1998

      12 BenFarhat, D, "Response of larval Ephestia kueniella (Lepidoptera: Pyralida) to individual Bacillus thuringiensis kurstaki toxins mixed with Xenorhabdus nematophila" 114 : 71-75, 2013

      13 Seo, S., "Phospholipase A2 inhibitors synthesized by two entomopathogenic bacteria, Xenorhabdus nematophila and Photorhabdus temperata subsp. temperata" 78 : 3816-3823, 2012

      14 Brownbridge, M., "New Bacillus thuringiensis strains isolated in Israel are highly toxic to mosquito larvae" 48 : 216-222, 1986

      15 Wirth, M. C, "Mtx toxins synergize Bacillus spaericus and Cry11Aa against susceptible and insecticide-resistant Culex quinquefasciatus larvae" 73 : 6066-6071, 2007

      16 Akhurst, R. J, "Morphological and functional dimorphism in Xenorhabdus spp., bacteria symbiotically associated with the insect pathogenic nematodes Neoaplectana and Heterorhabditis" 121 : 303-309, 1980

      17 Broderick, N. A, "Midgut bacteria required for Bacillus thuringiensis insecticidal activity" 103 : 15196-15199, 2006

      18 Park, J. W, "Insect immunology, In Insect molecular biology and biochemistry" Academic Press 480-512, 2012

      19 Beckage, N. E, "Insect immunology" Academic Press 348-, 2008

      20 Rahman, M. M, "Induction and transmission of Bacillus thuringiensis tolerance in the flour moth Ephestia kuehniella" 101 : 2696-2699, 2004

      21 Adamo, S. A, "In Insect immunology" Academic Press 129-149, 2008

      22 Kwon, S, "Immunosuppressive action of pyriproxyfen, a juvenile hormone analog, enhances pathogenicity of Bacillus thuringiensis subsp. kurstaki against diamondback moth, Plutella xylostella (Lepidoptera: Yponomeutidae)." 42 : 72-76, 2007

      23 de Máagd, R. A, "How Bacillus thuringiensis has evolved specific toxins to colonize the insect world" 17 : 193-199, 2001

      24 Dong, F., "Fusing the vegetative insecticidal protein Vip3Aa7 and the N terminus of Cry9Ca improves toxicity against Plutella xylostella larvae" 96 : 921-929, 2012

      25 Bravo, A., "Evolution of Bacillus thuringiensis Cry toxins insecticidal activity" 6 : 17-26, 2012

      26 Kaya, H. K, "Entomopathogenic nematodes" 38 : 181-206, 1993

      27 Stanley, D, "Eicosanoid signaling in insects; from discovery to plant protection" 33 : 20-63, 2014

      28 Vojtech, E., "Effects of Bt maize on the herbivore Spodoptera littoralis (Lepidoptera: Noctuidae) and the parasitoid Cotesia marginiventris (Hymenoptera: Braconidae)" 14 : 133-144, 2005

      29 Grizanova, E. V, "Contributions of cellular and humoral immunity of Galleria mellonella larvae in defence against oral infection by Bacillus thuringiensis" 119 : 40-46, 2014

      30 Bravo, A., "Comprehensive molecular insect science" Elsevier 175-206, 2005

      31 Washburn, J. O., "Comparative pathogenesis of Helicoverpa zea S nucleopolyhedrovirus in noctuid larvae" 82 : 1777-1784, 2001

      32 Washburn, J. O, "Comparative pathogenesis of Autographa californica M nuclear polyhedrosis virus in larvae of Trichoplusia ni and Heliothis virescens" 209 : 561-568, 1995

      33 Broderick, N. A, "Chemical modulators of the innate immune response alter gypsi moth larval susceptibility to Bacillus thuringiensis" 10 : 129-, 2010

      34 Gillespie, J. P, "Biological mediators of insect immunity" 42 : 611-643, 1997

      35 Sony Shrestha, "Biochemical Characteristics of Immune-Associated Phospholipase A2 and Its Inhibition by an Entomopathogenic Bacterium, Xenorhabdus nematophila" 한국미생물학회 47 (47): 774-782, 2009

      36 Bravo, A., "Bacillus thuringiensis: a story of a successful bioinsecticide" 41 : 423-431, 2011

      37 Crickmore, N., "Bacillus thuringiensis toxin nomenclature"

      38 노종열, "Bacillus thuringiensis as a Specific, Safe, and Effective Tool for Insect Pest Control" 한국미생물·생명공학회 17 (17): 547-559, 2007

      39 Hwang, J., "An entomopathogenic bacterium, Xenorhabdus nematophila, suppresses expression of antimicrobial peptides controlled by Toll and IMD pathways by blocking eicosanoid biosynthesis." 83 : 151-169, 2013

      40 Park, Y., "An entomopathogenic bacterium, Xenorhabdus nematophila, inhibits hemocytic phospholipase A2 (PLA2) in tobacco hornworm, Manduca sexta" 86 : 65-71, 2004

      41 Singh, G., "Acute, sublethal and combination effects of azadirachtin and Bacillus thuringiensis toxins on Helicoverpa armigera (Lepidoptera: Noctuidae) larvae" 97 : 351-357, 2007

      42 Kirkpatrick, B. A, "AcMNPV pathogenesis and developmental resistance in fifth instar Heliothis virescens" 72 : 63-72, 1998

      43 Zhang, X., "A mechanism of cell death involving an adenylyl cyclase/PKA signaling pathway is induced by the Cry1Ab toxin of Bacillus thuringiensis" 103 : 9897-9902, 2006

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      2027 평가예정 재인증평가 신청대상 (재인증)
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      학술지 인용정보

      학술지 인용정보
      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.42 0.42 0.41
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