دورية أكاديمية

Ethyl formate dilution in carbon dioxide for fumigation control of the brown marmorated stink bug Halyomorpha halys, Stål (Hemiptera: Pentatomidae).

التفاصيل البيبلوغرافية
العنوان: Ethyl formate dilution in carbon dioxide for fumigation control of the brown marmorated stink bug Halyomorpha halys, Stål (Hemiptera: Pentatomidae).
المؤلفون: Kawagoe JC; Agricultural and Environmental Chemistry Graduate Group, Department of Environmental Toxicology, University of California at Davis, Davis, CA, United States., Abrams AE; Horticulture and Agronomy Graduate Group, Department of Plant Sciences, University of California at Davis, Davis, CA, United States., Lourie AP; Agricultural and Environmental Chemistry Graduate Group, Department of Environmental Toxicology, University of California at Davis, Davis, CA, United States., Walse SS; Agricultural and Environmental Chemistry Graduate Group, Department of Environmental Toxicology, University of California at Davis, Davis, CA, United States.; USDA - Agricultural Research Service, San Joaquin Valley Agricultural Sciences Center, Parlier, CA, United States.
المصدر: Pest management science [Pest Manag Sci] 2022 Jul; Vol. 78 (7), pp. 3090-3097. Date of Electronic Publication: 2022 May 13.
نوع المنشور: Journal Article
اللغة: English
بيانات الدورية: Publisher: Published for SCI by Wiley Country of Publication: England NLM ID: 100898744 Publication Model: Print-Electronic Cited Medium: Internet ISSN: 1526-4998 (Electronic) Linking ISSN: 1526498X NLM ISO Abbreviation: Pest Manag Sci Subsets: MEDLINE
أسماء مطبوعة: Original Publication: West Sussex, UK : Published for SCI by Wiley, c2000-
مواضيع طبية MeSH: Carbon Dioxide*/pharmacology , Heteroptera*/physiology, Animals ; Dihydrotachysterol ; Formic Acid Esters ; Fumigation
مستخلص: Background: The brown marmorated stink bug (BMSB), Halyomorpha halys, has caused significant agricultural damage to numerous hosts, so agricultural producers seek to limit its spread. Where established, BMSB can also cause substantial urban and commercial disturbance, as overwintering adults may seek refuge inside dwellings, covered spaces, vehicles, and consignments. Phytosanitary authorities are most concerned with the importation of 'hitchhiking' adults in this refugia, with certain countries requiring a quarantine treatment to mitigate risk. This study explores fumigation with ethyl formate, applied as 16.7% by mass dilution in carbon dioxide, for control of adult BMSB.
Results: The induction of diapause, to simulate overwintering physiology, resulted in 2- and 3-fold increases in the tolerance of adults toward this ethyl formate fumigation at 10 ± 0.5 °C ( x ¯ ± 2 s ) lasting for 8 and 12 h, respectively. However, a decreased tolerance (0.7-fold) of diapausing specimens was observed for a 4-h duration. Diapausing and nondiapausing adult BMSB can be controlled at the probit 9 level if the headspace concentration of ethyl formate, [EF], in the carbon dioxide mixture is maintained ≥7.68 mg L -1 for 12 h at 10 ± 0.5 °C ( x ¯ ± 2 s ). If the duration is shortened to 4 h, [EF] must be maintained ≥14.73 mg L -1 over the course of fumigation.
Conclusion: The toxicity of ethyl formate in this mixture can be distinct for different physiological states of the same life stage, as evidenced by a ca. 3-fold increase in the Haber's z parameter for adult BMSB when in diapause. Respective to the physiological state of adults, this study identifies how the applied dose and/or treatment duration can be modulated (i.e. tuned) to ensure adequate toxicological efficacy toward BMSB infesting hosts or refuge at temperatures ca. >10 °C. Published 2022. This article is a U.S. Government work and is in the public domain in the USA.
(Published 2022. This article is a U.S. Government work and is in the public domain in the USA.)
References: Leskey TC, Hamilton GC, Nielsen AL, Polk DF, Rodriguez-Saona C, Christopher Bergh J et al., Pest status of the brown marmorated stink bug, Halyomorpha halys in the USA. Outlooks Pest Manag 23:218-226 (2012).
Abrams AE, Kawagoe JC, Najar-Rodriguez A and Walse SS, Sulfuryl fluoride fumigation to control brown marmorated stinkbug (Hempitera: Pentatomidae). Postharvest Biol Technol 163 (2020). https://doi.org/10.1016/j.postharvbio.2019.111111.
Lee D-H, Cullum JP, Anderson JL, Daugherty JL, Beckett LM and Leskey TC, Characterization of overwintering sites of the invasive brown marmorated stink bug in natural landscapes using human surveyors and detector canines. PLoS One 9:1-9 (2014).
Inkley DB, Characteristics of home invasion by the brown marmorated stink bug (Hemiptera: Pentatomidae). J Entomol Sci 47:125-130 (2012).
Australian Department of Agriculture and Water Resources, Draft Pest Risk Analysis for Brown Marmorated Stink Bug (Halyomorpha halys), Department of Agriculture and Water Resources, Canberra (2017).
Ministry for Primary Industries Treatment Requirement: Approved Biosecurity Treatments (2018). http://www.mpi.govt.nz/news-and-resources/publications/.
Bond EJ, Manual of Fumigation for Insect Control: FAO Plant Production and Protection Paper. Rome, IPPC, FAO (1984).
US Department of Commerce ITA. Trends in US Vehicle Exports, Office of Transportation and Machinery, 15 (2015).
Zabetakis MG, Flammability Characteristics of Combustiple Gases and Vapors, Bull 627. US Bureau of Mines, Washington, U.S. (1965).
Jones RM, Reducing inflammability of fumigants with carbon dioxide. Ind Eng Chem 25:394-396 (1933).
Nicolas G and Sillans D, Immediate and latent effects of carbon dioxide on insects. Ann Rev Entomol 34:97-116 (1989).
Bond EJ and Buckland CT, Control of insects with fumigants at low temperatures: toxicity of fumigants in atmospheres of carbon dioxide. J Econ Entomol 71:307-309 (1978).
Ryan RF and De Lima CPF, Ethyl formate fumigation an overview update, in 11th Int Work Conf Stored Prod Prot. Chiang Mai, Thailand, pp. 969-978 (2014).
Armstrong JW, Fruit fly disinfestation strategies beyond methyl bromide. New Zeal J Crop Hortic Sci 20:181-193 (1992).
Haritos VS, Damcevski KA and Dojchinov G, Improved efficacy of ethyl formate against stored grain insects by combination with carbon dioxide in a “dynamic” application. Pest Manag Sci 62:325-333 (2006).
Lee BH, Park CG, Park MG, Roh GH, Kim D, Riddick EW et al., Ethyl formate fumigation for the disinfestation of red imported fire ants Solenopsis invicta Buren. J Asia Pac Entomol 22:838-840 (2019).
Ren Y, Lee B, Padovan B and Cai L, Ethyl formate plus methyl isothiocyanate - a potential liquid fumigant for stored grains. Pest Manag Sci 68:194-201 (2012).
Kim K, Lee YH, Kim G, Lee B-H, Yang J-O and Lee S-E, Ethyl formate and phosphine fumigations on the two-spotted spider mite, Tetranychus urticae and their biochemical responses. Appl Biol Chem 62:50 (2019).
Xin N, Ren YL, Forrester RI, Ming X and Mahon D, Toxicity of ethyl formate to adult Sitophilus oryzae (L.), Tribolium castaneum (herbst) and Rhyzopertha dominica (F.). J Stored Prod Res 44:241-246 (2008).
Bikoba VN, Pupin F, Biasi WV, Rutaganira FU and Mitcham EJ, Use of ethyl formate fumigation to control adult bean thrips in navel oranges. J Econ Entomol 112:591-596 (2019).
Simpson T, Bikoba V and Mitcham EJ, Effects of ethyl formate on fruit quality and target pest mortality for harvested strawberries. Postharvest Biol Technol 34:313-319 (2004).
Graver JEV, Weller GL and Van Graver JE, Cut flower disinfestation: assessment of replacement fumigants for methyl bromide. Postharvest Biol Technol 14:325-333 (1998).
Simpson T, Bikoba V, Tipping C and Mitcham EJ, Ethyl formate as a postharvest fumigant for selected pests of table grapes. J Econ Entomol 100:1084-1090 (2007).
Haritos VS and Dojchinov G, Cytochrome c oxidase inhibition in the rice weevil Sitophilus oryzae (L.) by formate, the toxic metabolite of volatile alkyl formates. Comp Biochem Physiol - C Toxicol Pharmacol 136:135-143 (2003).
Montreal Protocol on Substances that Deplete the Ozone Layer. United Nations, Ozone Secretariat, Nairobi, Kenya, p. 960 (1987).
Coetzee EM, Du X, Thomas ML, Ren Y and McKirdy SJ, In-transit fumigation of shipping containers with ethyl formate+nitrogen on road and continued journey on sea. J Environ Sci Heal Part B 55:820-826 (2020).
Ethyl formate 21 C.F.R. § 184.1295, (1984).
Abrams AE, Alvarez A, Rodriguez MS, Kron CR, Bellamy DE and Walse SS, Greenhouse rearing methods for brown marmorated stink bug (Hemiptera: Pentatomidae) on live cowpea plants. J Econ Entomol 114:2297-2306 (2021).
Walse SS, Myers SW, Liu Y-B, Bellamy DE, Obenland D, Simmons GS et al., Postharvest treatment of fresh fruit from California with methyl bromide for control of light brown apple moth (Lepidoptera: Tortricidae). J Econ Entomol 106:1155-1163 (2013).
USDA, Fumigation and chemistry group of the commodity protection and quality research unit, 2010. http://www.ars.usda.gov//Main/site_main.htm?docid=18577.
Abbott WS, A method of computing the effectiveness of an insecticide. J Econ Entomol 18:265-267 (1925).
Finney DJ, The application of the probit method to toxicity test data adjusted for mortality in the controls. Ann Appl Biol 31:68-74 (1944).
Finney DJ, Probit Analysis, 3rd edn. Cambridge University Press, New York, NY, USA (1971).
Quinn TJ, Temperature (Monographs in Physical Measurement). Academic Press London Ltd, New York, London (1983).
Desmarchelier JM, Johnston FM and Le Trang V, Ethyl formate, formic acid and ethanol in air, wheat, barley and sultanas: analysis of natural levels and fumigant residues. Pestic Sci 55:815-824 (1999).
Gautam S, Corbett S, Grafton-Cardwell E and Walse SS, Commercial fumigation of fresh citrus with ethyl formate (Vapormate). Proc Methyl Bromide Altern Outreach 39 (2019).
Darby JA, A kinetic model of fumigant sorption by grain using batch experimental data. Pest Manag Sci 64:519-526 (2008).
Kim BS, Song JE, Park JS, Park YJ, Shin EM and Yang JO, Insecticidal effects of fumigants (EF, MB, and PH3) towards phosphine-susceptible and -resistant sitophilus oryzae (Coleoptera: Curculionidae). Insects 10:327 (2019).
Vincest LE and Lindgren DL, Hydrogen phosphide and ethyl formate: fumigation of insects infesting dates and other dried fruits. J Econ Entomol 65:1667-1669 (1972).
Park M, Lee B, Yang J, Kim B, Roh GH, Kendra PE et al., Ethyl formate as a methyl bromide alternative for fumigation of citrus: efficacy, fruit quality, and workplace safety. J Econ Entomol 114:2290-2296 (2021).
Wolfram Research Inc., Mathematica. Wolfram Research Inc., Champaign, Illinois (2021).
Kawagoe JC, Abrams AE and Walse SS, Ethyl formate fumigation for control of stinkbugs in vehicle consignments: the impact of diapause. Proc Methyl Bromide Altern Outreach 42 (2019).
Melvin Couey H and Chew V, Confidence limits and sample size in quarantine research. J Econ Entomol 79:887-890 (1986).
Bliss CI, The relation between exposure time, concentration and toxicity in experiments on insecticides. Ann Entomol Soc Am 33:721-766 (1940).
Miller FJ, Schlosser PM and Janszen DB, Haber's rule: a special case in a family of curves relating concentration and duration of exposure to a fixed level of response for a given endpoint. Toxicology 149:21-34 (2000).
Winks RG, The significance of response time in the detection and measurement of fumigant resistance in insects with special reference to phosphine. Pestic Sci 17:165-174 (1986).
Winks RG and Waterford CJ, The relationship between concentration and time in the toxicity of phosphine to adults of a resistant strain of Tribolium castaneum (Herbst). J Stored Prod Res 22:85-92 (1986).
Walse SS and Jimenez LR, Postharvest fumigation of fresh citrus with cylinderized phosphine to control bean thrips (Thysanoptera: Thripidae). Horticulturae 7:134 (2021).
Nitschke KD, Albee RR, Mattsson JL and Miller RR, Incapacitation and treatment of rats exposed to a lethal dose of sulfuryl fluoride. Toxicol Sci 7:664-670 (1986).
Mendrala AL, Markham DA and Eisenbrandt DL, Rapid uptake, metabolism, and elimination of inhaled sulfuryl fluoride fumigant by rats. Toxicol Sci 86:239-247 (2005).
Nicholls P, Formate as an inhibitor of cytochrome c oxidase. Biochem Biophys Res Commun 67:610-616 (1975).
Meikle RW and Stewart D, Fumigant mode of action: Drywood termite metabolism of vikane fumigant as shown by labeled pool technique. J Agric Food Chem 11:226-230 (1963).
Kim K, Lee BH, Park JS, Yang JO and Lee SE, Biochemical mechanisms of fumigant toxicity by ethyl formate towards Myzus persicae nymphs. J Appl Biol Chem 60:271-277 (2017).
ISPM 28, Phytosanitary Treatments for Regulated Pests, Rome, IPPC, FAO, pp. 1-13 (2007).
Ormsby M, Technical Review - Proposed Treatments for BMSB (Halyomorpha Halys (Stål); Pentatomidae) Technical Review - Proposed Treatments for BMSB, pp. 1-38 (2018). doi:10.13140/RG.2.2.21208.60160.
Schortemeyer M, Thomas K, Haack RA, Uzunovic A, Hoover K, Simpson JA et al., Appropriateness of probit-9 in the development of quarantine treatments for timber and timber commodities. J Econ Entomol 104:717-731 (2011).
Haack RA, Uzunovic A, Hoover K and Cook JA, Seeking alternatives to probit 9 when developing treatments for wood packaging materials under ISPM no. 15. EPPO Bull 41:39-45 (2011).
معلومات مُعتمدة: New Zealand Ministry for Primary Industries; Ministry for Primary Industries; New Zealand Institute for Plant and Food Research Limited; Agricultural Research Service; US Department of Agriculture
فهرسة مساهمة: Keywords: BMSB; eFUME; ethyl formate; postharvest fumigation
المشرفين على المادة: 0 (Formic Acid Esters)
0K3E2L5553 (ethyl formate)
142M471B3J (Carbon Dioxide)
R5LM3H112R (Dihydrotachysterol)
تواريخ الأحداث: Date Created: 20220419 Date Completed: 20220620 Latest Revision: 20220914
رمز التحديث: 20221213
DOI: 10.1002/ps.6935
PMID: 35437899
قاعدة البيانات: MEDLINE
الوصف
تدمد:1526-4998
DOI:10.1002/ps.6935