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      EPG를 이용한 담배가루이(Bemisia tabaci)의 섭식행동과 Cyantraniliprole에 대한 섭식변화 = Feeding Behaviors of Bemisia tabaci (Gennadius) (Hemiptera: Aleyrodidae) and Changing of Feeding Behaviors to Cyantraniliprole

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      https://www.riss.kr/link?id=A105055692

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      다국어 초록 (Multilingual Abstract)

      Feeding behaviors of the sweet potato whitefly, Bemisia tabaci, and changing of their feeding behaviors were recorded and analyzed with an Electrical Penetration Graph (EPG) analysis against cyantraniliprole. The characteristic patterns of feeding behaviors investigated were as follows; NP (non probing), pathway phase waveform, waveform of feeding xylem. In results, B. tabaci did not almost feeding the phloem. And It was not appeared potential drop during recording time. It was predominantly indicated pathway activity waveform and waveform of xylem feeding. After treatment of cyantraniliprole with recommended concentrations to tomato plants, EPG waveforms were recorded during 3 hours. Cyantraniliprole treatment showed longer time to first feeding xylem than untreated (P=0.043). It was showed shorter duration of first feeding xylem than untreated (P=0.017). And it was showed longer NP (non-probing) time than untreated. Consequently, It was supposed that cyantraniliprole was effect of anti-feeding or avoidance to B. tabaci.
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      Feeding behaviors of the sweet potato whitefly, Bemisia tabaci, and changing of their feeding behaviors were recorded and analyzed with an Electrical Penetration Graph (EPG) analysis against cyantraniliprole. The characteristic patterns of feeding beh...

      Feeding behaviors of the sweet potato whitefly, Bemisia tabaci, and changing of their feeding behaviors were recorded and analyzed with an Electrical Penetration Graph (EPG) analysis against cyantraniliprole. The characteristic patterns of feeding behaviors investigated were as follows; NP (non probing), pathway phase waveform, waveform of feeding xylem. In results, B. tabaci did not almost feeding the phloem. And It was not appeared potential drop during recording time. It was predominantly indicated pathway activity waveform and waveform of xylem feeding. After treatment of cyantraniliprole with recommended concentrations to tomato plants, EPG waveforms were recorded during 3 hours. Cyantraniliprole treatment showed longer time to first feeding xylem than untreated (P=0.043). It was showed shorter duration of first feeding xylem than untreated (P=0.017). And it was showed longer NP (non-probing) time than untreated. Consequently, It was supposed that cyantraniliprole was effect of anti-feeding or avoidance to B. tabaci.

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      참고문헌 (Reference)

      1 Chu D, "The invasive mechanism of a world important pest, Bemisia tabaci biotype B" 47 : 400-406, 2004

      2 Perring TM., "The Bemisia tabaci species complex" 20 : 725-737, 2001

      3 McLean DL, "Technique for electrically recording aphid feeding + salivation" 202 : 1358-1359, 1964

      4 Montllor CB, "Stylet penetration by two aphid species on susceptible and resistant lettuce" 52 (52): 103-111, 1989

      5 Backus EA, "Stylet penetration by adult Homalodisca coagulata on grape:Electrical penetration graph waveform characterization, tissue correlation, and possible implications for transmission of Xylella fastidiosa" 98 (98): 787-813, 2005

      6 Xue K, "Stylet penetration behaviors of the cotton aphid Aphis gossypii on transgenic Bt cotton" 16 : 137-146, 2009

      7 Johnson DD, "Stylet penetration behavior resulting in inoculation of a semipersistently transmitted closterovirus by the whitefly Bemisia argentifolii" 102 : 115-123, 2002

      8 Navas-Castillo J, "Severe yellowing outbreaks in tomato in Spain associated with infections of Tomato chlorosis virus" 84 : 835-837, 2000

      9 Lahm GP, "Rynaxypyr™ : A new insecticidal anthranilic diamide that acts as a potent and selective ryanodine receptor activator" 17 (17): 6274-6279, 2007

      10 Lei H, "Probing and feeding characteristics of the greenhouse whitefly in association with host-plant acceptance and whitefly in association with host-plant acceptance and whitefly strains" 79 : 77-84, 1998

      1 Chu D, "The invasive mechanism of a world important pest, Bemisia tabaci biotype B" 47 : 400-406, 2004

      2 Perring TM., "The Bemisia tabaci species complex" 20 : 725-737, 2001

      3 McLean DL, "Technique for electrically recording aphid feeding + salivation" 202 : 1358-1359, 1964

      4 Montllor CB, "Stylet penetration by two aphid species on susceptible and resistant lettuce" 52 (52): 103-111, 1989

      5 Backus EA, "Stylet penetration by adult Homalodisca coagulata on grape:Electrical penetration graph waveform characterization, tissue correlation, and possible implications for transmission of Xylella fastidiosa" 98 (98): 787-813, 2005

      6 Xue K, "Stylet penetration behaviors of the cotton aphid Aphis gossypii on transgenic Bt cotton" 16 : 137-146, 2009

      7 Johnson DD, "Stylet penetration behavior resulting in inoculation of a semipersistently transmitted closterovirus by the whitefly Bemisia argentifolii" 102 : 115-123, 2002

      8 Navas-Castillo J, "Severe yellowing outbreaks in tomato in Spain associated with infections of Tomato chlorosis virus" 84 : 835-837, 2000

      9 Lahm GP, "Rynaxypyr™ : A new insecticidal anthranilic diamide that acts as a potent and selective ryanodine receptor activator" 17 (17): 6274-6279, 2007

      10 Lei H, "Probing and feeding characteristics of the greenhouse whitefly in association with host-plant acceptance and whitefly in association with host-plant acceptance and whitefly strains" 79 : 77-84, 1998

      11 Martín B, "Intracellular ingestion and salivation by aphids may cause the acquisition and inoculation of non-persistently transmitted plant viruses" 78 : 2701-2705, 1997

      12 Lahm GP, "Insecticidal anthranilic diamides: A new class of potent ryanodine receptor activators" 15 (15): 4898-4906, 2005

      13 Sattelle DB, "Insect ryanodine receptors: molecular targets for novel pest control chemicals" 8 : 107-119, 2008

      14 Yin HD, "Impacts of transgenic Bt cotton on the stylet penetration behaviors of Bemisia tabaci biotype B : Evidence from laboratory experiments" 17 : 344-352, 2010

      15 Muñiz M., "Host suitability of two biotypes of Bemisia tabaci on some common weeds" 95 : 63-70, 2000

      16 Oliveira MRV, "History, current status and collaborative research project for Bemisia tabaci" 20 : 709-723, 2001

      17 Bedford ID, "Geminivirus transmission and biological characterisation of Bemisia tabaci (Gennadius) biotypes from different geographic regions" 125 : 311-325, 1994

      18 Pollard DG., "Feeding habits of the cotton whitefly, Bemisia tabaci Genn. (Homoptera: Aleyrodidae)" 43 (43): 664-671, 1955

      19 Garzo E, "Feeding behavior of Aphis gossypii on resistant accessions of different melon genotypes (Cucumis melo)" 30 : 129-140, 2002

      20 Tjallingii WF., "Electronic recording of penetration behavior by aphids" 24 : 721-730, 1978

      21 Youn YN., "Electrically recorded feeding behavior of Nephotettix cincticeps" 1 (1): 147-161, 1998

      22 Youn YN, "Electrical feeding patterns and stylet movement of rice brown planthopper, Nilaparvata lugens (Homoptera), in the rice plant" 32 (32): 208-217, 1993

      23 Boina DR, "Effects of pymetrozine, an antifeedant of Hemiptera, on Asian citrus psyllid, Diaphorina citri, feeding behavior, survival and transmission of Candidatus Liberibacter asiaticus" 67 : 146-155, 2011

      24 Youn YN, "Correlation of an electrical penetration graph waveform with walking by Asian citrus psyllid, Diaphorina citri(Hemiptera : Psyllidae)" 94 (94): 1084-1087, 2011

      25 Jiang YX, "Correlation between whitefly (Homoptera: Aleyrodidae) feeding behavior and transmission of tomato yellow leaf curl virus" 52 : 69-81, 2000

      26 van Lenteren JC, "Biological and integrated pest control in greenhouses" 33 : 239-269, 1988

      27 Blua MJ, "Bemisia argentifolii (Homoptera:Aleyrodidae) development and honeydew production as an function of cotton nitrogen status" 23 : 317-321, 1994

      28 Caballero RS, "Baseline susceptibility of Bemisia tabaci (Genn.) biotype B in southern Florida to cyantranilliprole" 44 : 104-108, 2013

      29 Tjallingii WF., "Aphid, their biology, Nature Enemies and Control" Elsevier Science Publishers 95-108, 1988

      30 Cordova D, "Anthranilic diamides: A new class of insecticides with a novel mode of action, ryanodine receptor activation" 84 (84): 196-214, 2006

      31 Zhang LP, "Analysis of genetic diversity among different geographical populations and determination of biotypes of Bemisia tabaci in China" 129 : 121-128, 2005

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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.28 0.28 0
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0 0 0 0.1
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