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      귤응애 온도발육 매개변수 추정 및 개체군 추정 행렬모형 = Parameterization of the Temperature-Dependent Development of Panonychus citri (McGregor) (Acari: Tetranychidae) and a Matrix Model for Population Projection

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      https://www.riss.kr/link?id=A105212533

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      국문 초록 (Abstract)

      기존 보고된 귤응애 온도발육자료를 이용하여 온도발육 관련 매개변수 값을 추정하고 개체군 동태 추정에 필요한 행렬모형을 작성하였다. 귤응애 발육영점온도는 알 $8.4^{\circ}C$, 유충 $9.9^{\...

      기존 보고된 귤응애 온도발육자료를 이용하여 온도발육 관련 매개변수 값을 추정하고 개체군 동태 추정에 필요한 행렬모형을 작성하였다. 귤응애 발육영점온도는 알 $8.4^{\circ}C$, 유충 $9.9^{\circ}C$, 제 1약충 $9.2^{\circ}C$, 제 2약충 $10.9^{\circ}C$ 이었으며, 발육완료에 필요한 적산온도는 각각 113.6, 29.1, 29.8, 33.4일도(DD)로 추정되었다. 귤응애 각 발육단계별 비선형 발육모형을 수립하였으며 또한 산란모형 작성에 필요한 온도별 총산란수 모형, 연령별 누적산란율모형, 연령별 생존율 모형의 매개변수 값을 각각 추정하였다. 귤응애 연령군을 알, 유충, 제 1약충, 제 2약충, 성충 등 5단계로 구분하여 행렬모형을 작성하였다. 전환행렬의 구성요소인 다음 발육단계로 전이확률 또는 잔존확률은 각 발육단계의 발육률 함수를 이용하였다. 또한 성충의 산란계수는 해당온도에서 성충수명 완료율과 총산란수의 곱으로 추정하였다. 수립된 행렬모형의 포장적합 능력을 평가하기 위하여 실제 감귤원에서 조사된 귤응애 실측밀도와 행렬모형으로 추정한 개체군 밀도를 비교하였다(2004년). 계절 초기 저온기와 계절중후기 고온기에 모형결과를 실측치와 비교한 결과 알 및 성충 개체군은 계절초 및 중후기 모두 약 30일까지 큰 차이가 없었다. 따라서 본 개발된 행렬모형을 이용하여 30일 내외의 단기간 동안 귤응애의 개체군밀도 증가를 예측할 수 있을 것으로 기대되었다.

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      다국어 초록 (Multilingual Abstract)

      Temperature-related parameters of Panonychus citri (McGregor) (Acarina: Tetranychidae) development were estimated and a stage-structured matrix model was developed. The lower threshold temperatures were estimated as $8.4^{\circ}C$ for eggs, $9.9^{\cir...

      Temperature-related parameters of Panonychus citri (McGregor) (Acarina: Tetranychidae) development were estimated and a stage-structured matrix model was developed. The lower threshold temperatures were estimated as $8.4^{\circ}C$ for eggs, $9.9^{\circ}C$ for larvae, $9.2^{\circ}C$ for protonymphs, and $10.9^{\circ}C$ for deutonymphs. Thermal constants were 113.6, 29.1, 29.8, and 33.4 degree days for eggs, larvae, protonymphs, and deutonymphs, respectively. Non-linear development models were established for each stage of P. citri. In addition, temperature-dependent total fecundity, age-specific oviposition rate, and age-specific survival rate models were developed for the construction of an oviposition model. P. citri age was categorized into five stages to construct a matrix model: eggs, larvae, protonymphs, deutonymphs and adults. For the elements in the projection matrix, transition probabilities from an age class to the next age class or the probabilities of remaining in an age class were obtained from development rate function of each stage (age classes). Also, the fecundity coefficients of adult population were expressed as the products of adult longevity completion rate (1/longevity) by temperature-dependent total fecundity. To evaluate the predictability of the matrix model, model outputs were compared with actual field data in a cool early season and hot mid to late season in 2004. The model outputs closely matched the actual field patterns within 30 d after the model was run in both the early and mid to late seasons. Therefore, the developed matrix model can be used to estimate the population density of P. citri for a period of 30 d in citrus orchards.

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      참고문헌 (Reference)

      1 Bommarco,R, "Using matrix models to explore the influence of temperature on population growth of arthropod pests" 3 : 275-283, 2001

      2 Lefkovitch,L.P, "The study of population growth in organisms grouped by stages" 21 : 1-18, 1965

      3 Birley,M, "The estimation of insect density and instar survivorship functions from census data" 46 : 497-510, 1977

      4 Kim, D.-S, "The effects of elevated temperatures on the population phenology and abundance of citrus pests in Jeju, Korea" 28-30, 2009

      5 Kasap,I, "The biology and fecundity of the citrus red mite Panonychus citri (McGregor) (Acari: Tetranychidae) at different temperatures under laboratory conditions" 33 : 593-600, 2009

      6 Clements, A.N, "The analysis of mortality and survival rates in wild populations of mosquitoes" 18 : 373-399, 1981

      7 Eyring,H, "The activated complex in chemical reactions" 3 : 107-115, 1935

      8 Kim, D.-S, "Temperature-dependent development of Carposina sasakii (Lepidoptera: Carposinidae), and its stage emergence models" 30 : 298-305, 2001

      9 Allen, J.C, "Temperature effects on development and fecundity of the citrus rust mite (Acari: Eriophydae)" 24 : 996-1004, 1995

      10 Jandel Scientific, "TableCurve 2D. Automated curve fitting and equation discovery: version 4.0" Jandel Scientific 1996

      1 Bommarco,R, "Using matrix models to explore the influence of temperature on population growth of arthropod pests" 3 : 275-283, 2001

      2 Lefkovitch,L.P, "The study of population growth in organisms grouped by stages" 21 : 1-18, 1965

      3 Birley,M, "The estimation of insect density and instar survivorship functions from census data" 46 : 497-510, 1977

      4 Kim, D.-S, "The effects of elevated temperatures on the population phenology and abundance of citrus pests in Jeju, Korea" 28-30, 2009

      5 Kasap,I, "The biology and fecundity of the citrus red mite Panonychus citri (McGregor) (Acari: Tetranychidae) at different temperatures under laboratory conditions" 33 : 593-600, 2009

      6 Clements, A.N, "The analysis of mortality and survival rates in wild populations of mosquitoes" 18 : 373-399, 1981

      7 Eyring,H, "The activated complex in chemical reactions" 3 : 107-115, 1935

      8 Kim, D.-S, "Temperature-dependent development of Carposina sasakii (Lepidoptera: Carposinidae), and its stage emergence models" 30 : 298-305, 2001

      9 Allen, J.C, "Temperature effects on development and fecundity of the citrus rust mite (Acari: Eriophydae)" 24 : 996-1004, 1995

      10 Jandel Scientific, "TableCurve 2D. Automated curve fitting and equation discovery: version 4.0" Jandel Scientific 1996

      11 Kim, D.H, "Studies on the ecology and control methods of Panonychus citri In Annual Research Report for 1999, ed. by National Jeju Agricultural Experiment Station" Simindang Press 340-361, 1999

      12 Kim, D.-S, "Oviposition model of overwintered adult Tetranychus urticae (Acari: Tetranychidae) and mite phenology on the ground cover in apple orchards" 31 : 191-209, 2003

      13 Kim, D.-S, "Oviposition model of Carposina sasakii (Lepidoptera: Carposinidae)" 162 : 145-153, 2003

      14 Mack, T.P, "Modeling insect recruitment In Basics of Insect Modeling" American Society of Agricultural Engineers 1992

      15 Wagner, T.L, "Modeling distribution of insect development time: a literature review an application of Weibull function" 77 : 475-487, 1984

      16 Bartlett, P.W, "Modeling adult survival in the laboratory of diapause and non-diapause colorado beetle, Leptinotarsa decemlineata (Coleoptera: Chrysomelidae) from Normandy, France" 108 : 487-501, 1986

      17 Berry, J.S, "MiteSim - a simulation model for the banks grass mite (Acari: Tetranychidae) and the predatory mite, Neoseiulus fallacis (Acari: Phytoseiidae) on maize: model development and validation" 53 : 91-117, 1991

      18 Caswell,H, "Matrix population models: construction, analysis, and interpretation" Sinauer Associates, Inc 722-, 2001

      19 Curry, G.L, "Mathematical Foundations of Population Dynamics" Tex. Eng. Exp. Stn 246-, 1987

      20 Gotoh, T, "Life-history traits of the six Panonychus species from Japan (Acari: Tetranychidae)" 29 : 241-252, 2003

      21 Yasuda,M, "Influence of temperature on some of the life cycle parameters of the citrus red mite, Panonychus citri (McGregor) (Acari: Tetranychidae)" 26 : 52-57, 1982

      22 Fukuda, J, "Experimental studies on the influence of temperature and relative humidity upon the development of the citrus red mite in On the influence of temperature and relative humidity upon the development of the egg" 2 : 160-171, 1954

      23 Hilbert, D.W, "Empirical model of nymphal development for migratory grasshopper, Meldnoplus sanguinipes (Orthoptera: Acrididae)" 12 : 1-5, 1983

      24 Madden, L.V, "Effect of temperature on the population dynamics of three Dalbulus leafhopper species" 108 : 475-485, 1986

      25 Choi,D.S, "Ecology of Panonychus citri"

      26 Taylor, F, "Ecology and evolution of physiological time in insects" University of California

      27 Song, J.H, "Dispersion indices and sequential sampling plan for the citrus red mite, Panonychus citri (McGregor) (Acari: Tetranychidae) on satsuma mandarin on Jeju island" 40 : 105-109, 2001

      28 Takafuji,A, "Diapause attributes and seasonal occurrences of two populations of the citrus red mite, Panonychus citri (McGregor) on pear (Acarina: Tetranychidae)" 18 : 525-532, 1983

      29 Kim,D.-S, "Comparison of population regulation of Panonychus citri by predacious mite complex between abandoned and sprayed citrus orchards in Jeju island" Jeju Nat'l Univ 21 : 21-27, 2005

      30 McMurtry,J.A, "Citrus In Spider mites: their biology, natural enemies and control" Elsevier 1985

      31 Dover, M.J, "Biological control of Panonychus ulmi (Acarina: Tetranychidae) by Amblyseius fallacis (Acarina: Phytoseiidae) on apples: a prey-predator model" 8 : 282-292, 1979

      32 Readshaw, J. L, "Age-specific survival, fecundity and fertility of the adult blowfly in relation to crowding, protein food and population cycles" 52 : 879-887, 1983

      33 Kim,D.-S, "A tentative temperature-dependent matrix model for the short-term prediction of population dynamics of Panonychus citri (Acari: Tetranychidae) in citrus orchards" Jeju Nat'l Univ 23 : 51-57, 2007

      34 Shaffer, P.L, "A simulation model of population dynamics of the codling moth, Cydia pomonella" 30 : 247-274, 1985

      35 Choi, W.I, "A matrix model for predicting seasonal fluctuations in field populations of Paronychiurus kimi (Collembola: Onychiruidae)" 162 : 259-265, 2003

      36 Mack, T.P, "A mathematical model of the population dynamics of the lesser cornstalk borer, Elasmopalpus lignosellus (Lepidoptera: Pyralidae)" 39 : 269-286, 1987

      37 Richards,F.J, "A flexible growth function for empirical use" 10 : 290-300, 1959

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      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2027 평가예정 재인증평가 신청대상 (재인증)
      2021-01-01 평가 등재학술지 유지 (재인증) KCI등재
      2018-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2015-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2011-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2009-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2007-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2005-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2002-07-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2000-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.23 0.23 0.27
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.32 0.31 0.41 0.09
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