263
Views
1
CrossRef citations to date
0
Altmetric
Articles

Multi-residue analysis, dissipation behavior, and final residues of four insecticides in supervised eggplant field

, , &
Pages 1086-1099 | Received 28 Oct 2021, Accepted 27 Jan 2022, Published online: 10 May 2022

References

  • Abdel-Ghany ME, Hussein LA, El Azab NE. 2017. Multiresidue analysis of five neonicotinoid insecticides and their primary metabolite in cucumbers and soil using high-performance liquid chromatography with diode-array detection. J AOAC Int. 100(1):176–188.
  • Akoto O, Gavor S, Appah MK, Apau J. 2015. Estimation of human health risk associated with the consumption of pesticide-contaminated vegetables from Kumasi, Ghana. Environ Monit Assess. 187(5):9.
  • Alam MN, Chowdhury MAZ, Hossain MS, Rahman MM, Rahman MA, Gan SH, Khalil MI. 2015. Detection of residual levels and associated health risk of seven pesticides in fresh eggplant and tomato samples from Narayanganj district, Bangladesh. J Chem. 2015:1–7.
  • An JM, Shin SJ, Kim MG, Hwang HR, Chang SY, Kim IS, Kwon MJ, Park DH, Lee GH. 2019. Residual characteristics of etofenprox, pyrifluquinazon, spirotetramat and sulfoxaflor in cow parsnip (Heracleum moellendorffii L.) of minor crop. KJPS. 23(2):61–69.
  • Bai AJ, Chen A, Chen WY, Liu SW, Luo XW, Liu Y, Zhang DY. 2021. Residue behavior, transfer and risk assessment of tolfenpyrad, dinotefuran and its metabolites during tea growing and tea brewing. J Sci Food Agric. 101(14):5992–6000.
  • Belarbi S, Vivier M, Zaghouani W, De Sloovere A, Agasse-Peulon V, Cardinael P. 2021. Comparison of new approach of GC-HRMS (Q-Orbitrap) to GC-MS/MS (triple-quadrupole) in analyzing the pesticide residues and contaminants in complex food matrices. Food Chem. 359:129932.
  • Besil N, Perez-Parada A, Bologna F, Cesio MV, Rivas F, Heinzen H. 2019. Dissipation of selected insecticides and fungicides applied during pre-harvest on Mandarin and orange trees in Uruguay. Sci Hortic. 248:34–40.
  • Chahil GS, Mandal K, Sahoo SK, Singh B. 2015. Risk assessment of mixture formulation of spirotetramat and imidacloprid in chilli fruits. Environ Monit Assess. 187(1):4105.
  • Chawla S, Gor HN, Patel HK, Parmar KD, Patel AR, Shukla V, Ilyas M, Parsai SK, Somashekar, Meena RS. 2018. Validation, residue analysis, and risk assessment of fipronil and flonicamid in cotton (Gossypium sp.) samples and soil. Environ Sci Pollut R. 25(19):19167–19178.
  • Chen L, Li FG, Jia CH, Yu PZ, Zhao ER, He M, Jing JJ. 2021. Determination of thiamethoxam and its metabolite clothianidin residue and dissipation in cowpea by QuEChERS combining with ultrahigh-performance liquid chromatography-tandem mass spectrometry. Environ Sci Pollut Res. 28(7):8844–8852.
  • Chen X, Liu X, Dong B, Hu J. 2018. Simultaneous determination of pyridaben, dinotefuran, DN and UF in eggplant ecosystem under open-field conditions: Dissipation behaviour and residue distribution. Chemosphere. 195:245–251.
  • Chen XJ, Meng ZY, Zhang YY, Gu HT, Ren YJ, Lu CL. 2016. Degradation kinetics and pathways of spirotetramat in different parts of spinach plant and in the soil. Environ Sci Pollut Res Int. 23(15):15053–15062.
  • Chowdhury MAZ, Jahan I, Karim N, Alam MK, Rahman MA, Moniruzzaman M, Gan SH, Fakhruddin AM. 2014. Determination of carbamate and organophosphorus pesticides in vegetable samples and the efficiency of gamma-radiation in their removal. Biomed Res Int. 2014(1):1–9.
  • Daunay MC, Laterrot H, Janick J. 2008. Iconography and history of solanaceae: Antiquity to the 17th century. In: Janick J, editor. Horticultural Reviews, Vol. 34. Wiley; p. 1–111.
  • Del Prado-Lu JL. 2015. Insecticide residues in soil, water, and eggplant fruits and farmers' health effects due to exposure to pesticides. Environ Health Prev Med. 20(1):53–62.
  • Dong MF, Wen GY, Tang HX, Wang T, Zhao ZH, Song WG, Wang WM, Zhao L. 2018. Dissipation and safety evaluation of novaluron, pyriproxyfen, thiacloprid and tolfenpyrad residues in the citrus-field ecosystem. Food Chem. 269:136–141.
  • European Commission. 2019. Guidance document on analytical quality control and method validation procedures for pesticides residues and analysis in food and feed. European Commission Directorate-General for Health and Food Safety. Document No. SANTE/12682/2019.
  • Fan XQ, Zhao SM, Hu JY. 2019. Dissipation behavior and dietary risk assessment of lambda-cyhalothrin, thiamethoxam and its metabolite clothianidin in apple after open field application. Regul Toxicol Pharm. 101:135–141.
  • Fan S, Zhao P, Yu C, Pan C, Li X. 2014. Simultaneous determination of 36 pesticide residues in spinach and cauliflower by LC-MS/MS using multi-walled carbon nanotubes-based dispersive solid-phase clean-up. Food Addit Contam Part A Chem Anal Control Expo Risk Assess. 31(1):73–82.
  • Georgakopoulos P, Zachari R, Mataragas M, Athanasopoulos P, Drosinos EH, Skandamis PN. 2011. Optimisation of octadecyl (C18) sorbent amount in QuEChERS analytical method for the accurate organophosphorus pesticide residues determination in low-fatty baby foods with response surface methodology. Food Chem. 128(2):536–542.
  • Hou X, Qiao T, Zhao Y, Liu D. 2019. Dissipation and safety evaluation of afidopyropen and its metabolite residues in supervised cotton field. Ecotox Environ Safe. 180:227–233.
  • Hou B, Wu LH. 2010. Safety impact and farmer awareness of pesticide residues. Food Agric Immunol. 21(3):191–200.
  • Karthika P, Vadivalagan C, Muthusankar A, Murugan K, Krishnaveni N, Del Serrone P, Nicoletti M, Benelli G. 2018. Methyl linolenate as a feeding stimulant for the 28-spotted potato ladybird, Henosepilachna vigintioctopunctata? A molecular docking approach. Physiol Mol Plant Pathol. 101:75–84.
  • Kodandaram MH, Kumar YB, Banerjee K, Hingmire S, Rai AB, Singh B. 2017. Field bioefficacy, phytotoxicity and residue dynamics of the insecticide flonicamid (50 WG) in okra Abelmoschus esculenta (L) moench. Crop Prot. 94:13–19.
  • Li S, Liu X, Dong F, Xu J, Xu H, Hu M, Zheng Y. 2016. Chemometric-assisted QuEChERS extraction method for the residual analysis of thiacloprid, spirotetramat and spirotetramat's four metabolites in pepper: application of their dissipation patterns. Food Chem. 192:893–899.
  • Li Y, Xu J, Zhao X, He H, Zhang C, Zhang Z. 2021. The dissipation behavior, household processing factor and risk assessment for cyenopyrafen residues in strawberry and mandarin fruits. Food Chem. 359:129925.
  • Li HX, Zhong Q, Wang XR, Luo FJ, Zhou L, Sun HZ, Yang M, Lou ZY, Chen ZM, Zhang XZ. 2021. The degradation and metabolism of chlorfluazuron and flonicamid in tea: A risk assessment from tea garden to cup. Sci Total Environ. 754
  • Liang Y, Wu W, Cheng X, Hu J. 2019. Residues, fate and risk assessment  of spirotetramat and its four metabolites in pineapple under field conditions. Int J Environ an Ch. 100(8):900–911. doi:https://doi.org/10.1080/03067319.2019.1645839
  • Liu F. 2011. Practical detection technology of pesticide quality and residue (in Chinese). Beijing, China: Chemical Industry Press.
  • Liu XG, Zhu YL, Dong FS, Xu J, Zheng YQ. 2014. Dissipation and residue of flonicamid in cucumber, apple and soil under field conditions. Int J Environ Anal Chem. 94(7):652–660.
  • Łozowicka B, Mojsak P, Kaczyński P, Konecki R, Borusiewicz A. 2017. The fate of spirotetramat and dissipation metabolites in apiaceae and brassicaceae leaf-root and soil system under greenhouse conditions estimated by modified QuEChERS/LC-MS/MS. Sci Total Environ. 603–604:178–184.
  • Lu JL. 2011. Insecticide residues in eggplant fruits, soil, and water in the largest eggplant-producing area in the Philippines. Water Air Soil Pollut. 220(1–4):413–422.
  • Malhat F, Bakery M, Anagnostopoulos C, Youssef M, Abd El-Ghany W, Abdallah A, Abd El-Salam S. 2021. Investigation of the dissipation behaviour and exposure of spitotetramat, flonicamid, imidacloprid and pymetrozine in open field strawberries in Egypt. Food Addit Contam A. 38(12):2128–2136.
  • Mathew TB, Beevi SN, Thomas G, Pallavi NK, Rajith R, Pratheesh KN. 2012. Persistence and dissipation of combination-mix (Spirotetramat + Imidacloprid) on chilli (Capsicum annum L.). Pesticide Res J. 24(2):151–154.
  • Mohapatra S, Siddamallaiah L, Matadha NY, Udupi VR, Raj DP, Gadigeppa S. 2019. Dissipation of neonicotinoid insecticides imidacloprid, indoxacarb and thiamethoxam on pomegranate (Punica granatum L.). Ecotox Environ Safe. 171:130–137.
  • Pandiselvi S, Sathiyanarayanan S, Ramesh A. 2010. Determination of spirotetramat and imidacloprid residues in cotton seed, lint, oil and soil by HPLC UV method and their dissipation in cotton plant. Pesticide Res J. 22(2):168–173.
  • Pathan NP, Bharpoda TM, Parmar KD. 2017. Dissipation and persistence of flonicamid in/on okra fruits. Trends Biosci. 10(28):6002–6005.
  • Prodhan MDH, Papadakis E-N, Papadopoulou-Mourkidou E. 2015. Determination of multiple pesticide residues in eggplant with liquid chromatography-mass spectrometry. Food Anal Methods. 8(1):229–235.
  • Prodhan MDH, Papadakis E-N, Papadopoulou-Mourkidou E. 2017. Variability of pesticide residues in eggplant units collected from a field trial and marketplaces in Greece. J Sci Food Agr. 98(6):644–653. doi:https://doi.org/10.1002/jsfa.8716
  • Saleh SS, Monir HH, El-Naem OA. 2021. Appraisal for edible use of vegetable crops cultivated in egypt after treatment with selected insecticides and fungicides: insights of dissipation rates and pre-harvest intervals. Anal Sci. 37(12):1775–1781.
  • Vinothkumar B, Kuttalam S, Chandrasekaran S. 2012. Dissipation pattern of spirotetramat in/on green chillies. Pesticide Res J. 24(1):96–100.
  • Wang SS, Jin F, Cao XL, Shao Y, Wang J, She YX, Qi Y, Zhang C, Li H, Jin MJ, et al. 2018. Residue behaviors and risk assessment of flonicamid and its metabolites in the cabbage field ecosystem. Ecotoxicol Environ Saf. 161:420–429.
  • Wang YJ, Xue J, Jin HY, Ma SC. 2017. Dissipation of flonicamid in honeysuckle and its transfer during brewing process. Chem Pharm Bull. 65(5):492–497.
  • Wang X, Zhang X, Wang Z, Zhou L, Luo F, Chen Z. 2022. Dissipation behavior and risk assessment of tolfenpyrad from tea bushes to consuming. Sci Total Environ. 806(Pt 4):150771.
  • Wu FN, Eannetta NT, Xu YM, Tanksley SD. 2009. A detailed synteny map of the eggplant genome based on conserved ortholog set II (COSII) markers. Theor Appl Genet. 118(5):927–935..
  • Xu F, Du GM, Xu D, Chen LY, Zha XX, Guo ZY. 2021. Residual behavior and dietary intake risk assessment of flonicamid, dinotefuran and its metabolites on peach trees. J Sci Food Agric. 101(14):5842–5850.
  • Yang X, Zhang Y, Cheng YF, Chen XH. 2019. Transcriptome analysis reveals multiple signal network contributing to the Verticillium wilt resistance in eggplant. Sci Hortic. 256:108576.
  • Yuan Y, Han Y, Han D, Yang C, Yan H. 2020. Ultrasound-assisted dispersive-filter extraction coupled with high-performance liquid chromatography: a rapid miniaturized method for the determination of phenylurea pesticides in vegetables and fruits. Food Control. 118(4):107417.
  • Zeid MIA, Awad MK, Melki KC, Abou Jawdah Y, Jammoul AM. 2021. Pesticides residues on Loquat: a minor crop in Lebanon. Food Control. 130:108297.
  • Zhang QT, Chen YL, Wang SY, Yu YR, Lu P, Hu DY, Yang ZH. 2018. Dissipation, residues and risk assessment of spirotetramat and its four metabolites in citrus and soil under field conditions by LC-MS/MS. Biomed Chromatogr. 32(4). doi:https://doi.org/10.1002/bmc.4153
  • Zhang QT, Yang Y, Liu XW, Chen Y, Hu DY, Lu P. 2019. Simultaneous determination of flonicamid and its metabolites in tea by liquid chromatography-tandem mass spectrometry. Anal Lett. 52(6):948–961.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.