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Dissipation characteristics of mandipropamid and thiamethoxam for establishment of pre-harvest residue limits in lettuce

상추의 생산단계 잔류허용기준 설정을 위한 농약 Mandipropamid 및 Thiamethoxam의 잔류소실특성 연구

  • Yang, Seung-Hyun (Department of Bio-Environmental Chemistry, College of Agriculture and Food Sciences, Wonkwang University) ;
  • Lee, Jae-In (Department of Bio-Environmental Chemistry, College of Agriculture and Food Sciences, Wonkwang University) ;
  • Choi, Hoon (Department of Bio-Environmental Chemistry, College of Agriculture and Food Sciences, Wonkwang University)
  • Received : 2020.08.21
  • Accepted : 2020.09.16
  • Published : 2020.09.30

Abstract

The dissipation characteristics and kinetics of fungicide mandipropamid and insecticide thiamethoxam in lettuce under greenhouse conditions were investigated at three different lettuce-growing fields for estimating the pre-harvest residue limits (PHRLs). The analytical methods were fully validated for the quantitation of pesticide residues using High-Performance Liquid Chromatography-Photo Diode Array detector or Ultraviolet-Visible Detector and applied to real samples. The lettuces suitable for shipment were harvested during 10 days including pre-harvest interval after treatment at the recommended dose by safe-use guidelines. The initial mean residues in different fields were 6.68-17.87 and 4.96-8.31 mg/kg for mandipropamid and thiamethoxam, respectively, which decreased to 16-54 and 14-44% in 10 days. The clothianidin, a metabolite of thiamethoxam, was detected in <0.02 to 0.37 mg/kg. The dissipation of both pesticides followed first-order kinetics over a period of 10 days after application. Based on the residue data, the mean dissipation rate constant (λ) and biological half-lives (T1/2) were estimated to be -0.1060 and 6.5 days of mandipropamid and -0.1236 and 5.6 days of thiamethoxam. The PHRLs for lettuce on the 10th and 5th day before harvesting were calculated to be 63.24 and 43.56 mg/kg for mandipropamid, and 44.66 and 25.88 mg/kg for thiamethoxam, with -0.0746 and -0.1091 of the upper 95% confidence intervals of dissipation rate constant, respectively. This work would be useful as guidance for adjusting the shipment date and contribute to stabilizing the income of farmers in Korea.

상추 중 살균제 mandipropamid 및 살충제 thiamethoxam의 생산단계 잔류허용기준(PHRLs)를 추정하기 위해 3곳의 상추 시설재배지에서 두 약제의 경시적 잔류량 감소특성을 조사하였다. 상추 중 농약 잔류량은 HPLC-PDA 또는 UVD를 이용하여 분석하였으며 우수한 회수율 및 변이값을 보여 분석의 유효성을 확보하였다. 농약안전사용기준에 따라 약제살포 권고량을 살포한 후 살포 후 수확일(PHI)을 포함한 10일 동안 출하시기에 적합한 개체를 채취하여 잔류량을 분석하였다. 포장별 초기 평균 잔류량은 mandipropamid 6.68-17.87 mg/kg, thiamethoxam 4.96-8.31 mg/kg이었고 10일 경과 후 각각 초기잔류량의 16-54 및 14-44% 수준으로 감소하였다. Thiamethoxam의 대사산물인 clothianidin은 <0.02-0.37 mg/kg으로 검출되었다. 상추 중 두 약제의 잔류량은 단순 1차 감쇄반응처럼 감소하였으며 포장구분없이 일자별 잔류량 회귀식을 산출한 결과, 평균 감소상수 및 생물학적 반감기는 mandipropamid의 경우 -0.1060 및 6.5일이었고 thiamethoxam은 -0.1236 및 5.6일이었다. 상추 잔류량 감소상수의 95% 신뢰구간 상한치는 mandipropamid -0.0746 및 thiamethoxam -0.1091이었으며, 출하 10일 및 5일 전 PHRLs은 mandipropamid의 경우 63.24 및 43.56 mg/kg, thiamethoxam은 44.66 및 25.88 mg/kg으로 산출되었다. 본 연구결과는 농가에서 농작물 출하시기를 조절하는데 활용될 수 있으며 농가의 소득 안정화에 기여할 것으로 판단된다.

Keywords

References

  1. MAFRA (2019) 2018 status of greenhouse and production for vegetables. Ministry of Agriculture, Food and Rural Affairs, Sejong, Korea, pp 19-21
  2. MAFRA (2019) Primary statistics of agriculture, food and rural affairs. Ministry of Agriculture, Food and Rural Affairs, Sejong, Korea, pp 74-77
  3. NAQS (2020) Pesticide residue in agricultural products. National Agricultural Products Quality Management Service, Gimcheon, Korea
  4. KCPA (2019) Guideline Crop Protection Agents. Korea Crop Protection Association, Seoul, Korea
  5. Kim YS, Park JH, Park JW, Lee YD, Lee KS, Kim JE (2002) Persistence and dislodgeable residues of chlorpyrifos and procymidone in lettuce leaves under greenhouse condition. Korean J Environ Agric 21: 149-155 https://doi.org/10.5338/KJEA.2002.21.2.149
  6. Marin A, Oliva J, Garcia C, Navarro S, Barba A (2003) Dissipation rates of cyprodinil and fludioxonil in lettuce and table grape in the field and under cold storage conditions. J Agric Food Chem 51: 4708-4711 https://doi.org/10.1021/jf021222e
  7. MFDS (2020) Food Code. Ministry for Food and Drug Safety, Cheongju, Korea, pp 80-83, 655-657
  8. Lee HR, Riu MJ, Park HW, Na YL, Song HH, Keum YS, Zhu Y, Kim JH (2009) Establishment of analytical method for fenhexamid residue in Korean cabbage, apple, mandarin and green pepper. Korean J Pestic Sci 13: 223-231
  9. OECD (2011) OECD MRL Calculator: User Guide. OECD Environment, Health and Safety Publications Series on Pesticides No. 56. Organisation for Economic Cooperation and Development, Paris, France
  10. MFDS (2014) OECD MRL Calculator: Statistical white paper. Ministry for Food and Drug Safety, Cheongju, Korea
  11. Turner JA (2019) The Pesticide Manual. 18th edition, British Crop Production Council, UK, pp 235-236, 710-711, 1123-1124
  12. MFDS (2014) Pre-harvest residue limits (PHRLs) manual. Ministry for Food and Drug Safety, Cheongju, Korea
  13. Lee HD, Kyung KS, Kwon H, Ihm YB, Kim J, Park S, Kim J (2004) Residue characteristics of hexaconazole and chlorothalonil in several fruit. Korean J Pestic Sci 8: 107-111
  14. Lee HD, Ihm YB, Kwon HY, Kim JB, Kyung KS, Park SS, Oh BY, Im GJ, Kim JE (2005) Characteristics of pesticide residue in/on cucurbitaceous fruit vegetables applied with foliar spraying under greenhouse. Korean J Pestic Sci 9: 359-364
  15. Poulsen ME, Wenneker M, Withagen J, Christensen HB (2012) Pesticide residues in individual versus composite samples of apples after fine or coarse spray quality application. Crop Protect 35: 5-14 https://doi.org/10.1016/j.cropro.2011.12.013
  16. Choung MG, Ahn KG, Kim GP, Hwang YS, Kwon CH, Kang IK, Lee YD (2016) Dissipation pattern of a fungicide mandipropamid in Korean cabbage at different harvest times under greenhouse conditions. Korean J Hortic Sci Technol 34: 644-654
  17. Lee EY, Kim DK, Park IY, Noh HH, Park YS, Kim TH, Jin CW, Kim KI, Yun SS, Oh SK, Kyung KS (2008) Residue patterns of indoxacarb and thiamethoxam in chinese cabbage (Brassica campestris L.) grown under greenhouse conditions and their estimated daily intake. Korean J Environ Agri 27: 92-98 https://doi.org/10.5338/KJEA.2008.27.1.092
  18. Rahman MS (1999) Handbook of Food Preservation. Part IIConventional Food Preservation Methods, pH in Food Preservation. pp 384. Marcel Dekker, Inc. New York
  19. Rahman M, Farha W, Abd EI-Aty AM, Kabir H, Im SJ, Jung DI, Choi JH, Kim SW, Son YW, Kwan CH, Shin HC, Shim JH (2015) Dynamic behavior and residual pattern of thiamethoxam and its metabolite clothianidin in swiss chard using liquid chromatography-tandem mass spectrometry. Food Chem 174: 248-255 https://doi.org/10.1016/j.foodchem.2014.11.052
  20. Liu N, Pan X, Yang Q, Ji M, Zhang Z (2018) The dissipation of thiamethoxam and its main metabolite clothianidin during strawberry growth and jam-making process. Scientific Reports 8: 15242 https://doi.org/10.1038/s41598-018-33334-w