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tuta absoluta

Profile

Order Family Common Name(s) Group Host
lepidoptera gelechiidae tomato leafminer AG tomatoes, potatoes

Shown Resistance to Active Ingredient(s)

  1. abamectin (#6)
  2. bifenthrin
  3. cartap (#5)
  4. chlorantraniliprole (#5)
  5. cyfluthrin-beta
  6. cypermethrin-alpha
  7. deltamethrin (#2)
  8. diflubenzuron (#2)
  9. etofenprox
  10. flubendiamide
  11. indoxacarb (#6)
  12. metaflumizone (#3)
  13. novaluron
  14. permethrin (#2)
  15. spinosad (#16)
  16. teflubenzuron (#3)
  17. tetraniliprole (#2)
  18. triflumuron (#3)

Citation(s) of Resistance

# Citation
1 Siqueira, H.A.A., Guedes, R.N.C., Picanco, M.C. (2000). Cartap resistance and synergism in populations of Tuta absoluta. Journal of Applied Entomology, 124 233-238.
2 Siqueira, H.A.A., Guedes, R.N.C., Fragoso, D.B., Magalhaes, L.C. (2001). Abamectin resistance and synergism in Brazilian populations of Tuta absoluta. International Journal of Pest Management, 47 27-251.
3 Lietti, M.M.M., Botto, E., Alzogaray, R.A. (2005). Insecticide Resistance in Argentine populations of Tuta Absoluta (Meyrick) (Lepidoptera: Gelechiidae). Neotropical Entomology, 34 113-119.
4 Silva, G., Picano, M., Bacci, L., Crespo, A., Rosado, J., and Guedes, R. (2011). Control failure likelihood and spatial dependence of insecticide resistance in the tomato pinworm, Tuta absoluta. Pest Management Science, 67 913-920.
5 Reyes, M., Rocha, K., Alarcón, L., Siegwart, M., and Sauphanor, B. (2012). Metabolic mechanisms involved in the resistance of field populations of tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae) to spinosad. Pesticide Biochemistry and Physiology, 102 45-50.
6 Barros, E., Bacci, L., Picanco, M., Martins, J., Rosado, J., and Silva, G. (2014). Physiological selectivity and activity reduction of insecticides by rainfall to predatory wasps of Tuta absoluta. Journal of Environmental Science and Health, 50 (1) 45-54.
7 Silva, W., Berger, M., Bass, C., Balbino, V., Amaral, M., Campos, M., and Siqueira, H. (2015). Status of pyrethroid resistance and mechanisms in Brazilian populations of Tuta absoluta. Pesticide Biochemistry and Physiology.
8 Campos, R. M., Silva, M. B. T., Silva, M. W., Silva, E. J., and Siqueira, A. A. H. (2015). Spinosyn resistance in the tomato borer Tuta absoluta (Meyrick) ( Lepidoptera: Gelechiidae). Journal of Pest Science , 88 405-412.
9 Silva, T.B.M., Silva, W.M., Campos, M.R., Silva, J.E., Ribeiro, L.M.S., and Siqueira H.A.A. (2016). Susceptibility levels of Tuta absoluta (Meyrick) (Lepidoptera:Gelechiidae) to minor classes of insecticides in Brazil. Crop Protection, 79 80-86.
10 Silva, W., Berger, M., Bass, C., Williamson, M., Moura, D., Ribeiro, L., and Siqueira, H. (2016). Mutation (G275E) of the nicotinic acetylcholine receptor alpha-6 subunit is associated with high levels of resistance to spinosyns in Tuta absoluta (Meyrick)(Lepidoptera:Gelechiidae). Pesticide Biochemistry and Physiology, 131 1-8.
11 Douris, V., Papapostolou, K. M., Ilias, A., Roditakis, E., Kounadi, S., Riga, M., Nauen, R. and Vontas, J. (2017). Investigation of the contribution of RyR target-site mutations in diamide resistance by CRISPR/Cas9 genome modification in Drosophila. Insect Biochemistry and Molecular Biology, 87 127-135.
12 Grant, C., Jacobson, R., Ilias, A., Berger, M., Vasakis, E., Bielza, P., Zimmer, C. T., Williamson, M. S., ffrench-Constant, R. H., Vontas, J., Roditakise, E., and Bass, C. (2019). The evolution of multiple-insecticide resistance in UK populations of tomato leafminer, Tuta absoluta. Pest Management Science.
13 Silva, J.E., Silva, W.M., Silva, T.B.M. et al. (2021). High resistance to insect growth disruptors and control failure likelihood in Brazilian populations of the tomato pinworm Tuta absoluta. Phytoparasitica.
14 Aboutalebian-Soureshjani, A., Rafiee-Dastjerdi, H., Naseri, B., Hassanpour, M., and Khajehali, J. (2023). Indoxacarb resistance in Iranian populations of Tuta absoluta (Lepidoptera: Gelechiidae): Cross-resistance, biochemical and molecular mechanisms. Pesticide Biochemistry and Physiology, 196.
15 Aboutalebian-Soureshjani, A., Rafiee-Dastjerdi, H., Naseri, B., Hassanpour, M., and Khajehali, J. (2023). Indoxacarb resistance in Iranian populations of Tuta absoluta (Lepidoptera: Gelechiidae): Cross-resistance, biochemical and molecular mechanisms. Pesticide Biochemistry and Physiology, 196.
16 Grant, C., Singh, K. S., Hayward, A., Hunt, B. J., Troczka, B. J., Pym, A., Ahn, S. J., Zeng, B., Gao, C. F., Leroux, A., Daum, E., Süess, P., Souza, D., Elias, J., Ffrench-Constant, R. H., Vontas, J., Roditakis, E., Bielza, P., Zimmer, C. T., & Bass, C. (2023). Overexpression of the UDP-glycosyltransferase UGT34A23 confers resistance to the diamide insecticide chlorantraniliprole in the tomato leafminer, Tuta absoluta.. Insect biochemistry and molecular biology, 159.
17 Pereira, D. L., Silva, P. A. F., Langa, T. P., de Oliveira, M., Ribeiro, L. M. S., & Siqueira, H. A. A. (2023). Recent assessment and characterization of Tuta absoluta resistance to cartap hydrochloride. Pesticide biochemistry and physiology, 193.
18 Qu, C., Yao, J., Huang, J., Che, W., Fang, Y., Luo, C., & Wang, R. (2024). Tetraniliprole resistance in field-collected populations of Tuta absoluta (Lepidoptera: Gelechiidae) from China: Baseline susceptibility, cross-resistance, inheritance, and biochemical mechanism. Pesticide biochemistry and physiology, 203.
19 Qu, C.; Yao, J.; Zhan, Q.; Zhang, D.; Li, Y.; Huang, J.; Wang, R. (2024). Risk assessment, cross-resistance, biochemical mechanism and fitness cost of tetraniliprole resistance in the tomato pinworm Tuta absoluta. Crop. Prot., 183.

Location(s) Where Resistance is Reported

# Location
1 2358 -- Brazil -- Minas Gerais -- Uberlandia -- greenhouses -- 4
2 2359 -- Brazil -- Minas Gerais -- Vicosa -- greenhouses -- 4
3 2360 -- Brazil -- Minas Gerais -- Araguari -- greenhouses -- 4
4 2361 -- Brazil -- Rio de Janeiro -- Sao Joao da Barra -- laboratory -- 4
5 2362 -- Brazil -- Sao Paulo -- Paulinia -- greenhouses -- 4
6 2363 -- Brazil -- Minas Gerais -- Guiricema -- field -- 4
7 2364 -- Brazil -- Rio de Janeiro -- Sao Joao da Barra -- greenhouses -- 4
8 2365 -- Brazil -- Minas Gerais -- Vicosa -- field -- 4
9 2366 -- Brazil -- Minas Gerais -- Lavras -- field -- 4
10 2367 -- Brazil -- Minas Gerais -- Araguari -- field -- 4
11 3435 -- Argentina -- Santa Fe -- Rosario -- Modulo Experimental de Nuevas Tecnologias -- 4
12 3436 -- Argentina -- Corrientes -- Bella Vista -- Experimental Station, INTA -- 4
13 4369 -- Brazil -- Camocim de Sao -- Semi-arid -- 4
14 4370 -- Brazil -- Uberlandia -- Savannah -- 4
15 4371 -- Brazil -- Vicosa -- Atlantic forest -- 4
16 4372 -- Brazil -- Sao Joao da Barra -- Atlantic forest -- 4
17 4373 -- Brazil -- Sao Joao da Barra -- Atlantic forest -- 4
18 4374 -- Brazil -- Camocim de Sao -- Semi-arid -- 4
19 4375 -- Brazil -- Goianapolis -- Savannah -- 4
20 4376 -- Brazil -- Vicosa -- Atlantic forest -- 4
21 4377 -- Brazil -- Paulinia -- Atlantic forest -- 4
22 4378 -- Brazil -- Uberlandia -- Savannah -- 4
23 4379 -- Brazil -- Santa Tereza -- Atlantic forest -- 4
24 4380 -- Brazil -- Sao Joao da Barra -- Atlantic forest -- 4
25 6353 -- Chile -- Arica -- 4
26 6354 -- Chile -- Arica -- 4
27 6355 -- Chile -- Arica -- 4
28 6356 -- Chile -- Maule -- 4
29 6357 -- Chile -- Los Ríos -- 4
30 9737 -- Brazil -- Minas Gerais -- Vicosa -- 4
31 9738 -- Brazil -- Minas Gerais -- Vicosa -- 4
32 9739 -- Brazil -- Minas Gerais -- Vicosa -- 4
33 10029 -- Brazil -- Espirito Santo -- Venda Nova -- 4
34 10571 -- Brazil -- Ceara -- Tiangua -- 4
35 10572 -- Brazil -- Goias -- Anapolis -- 4
36 10573 -- Brazil -- Ceara -- Guaraciaba do Norte -- 4
37 10574 -- Brazil -- Espirito Santo -- Venda Nova do imigrante -- 4
38 10575 -- Brazil -- Bahia -- Iraquara -- 4
39 10576 -- Brazil -- Sao Paulo -- Sumare -- 4
40 10900 -- Brazil -- Espírito Santo -- Venda Nova do imigrante -- 4
41 10901 -- Brazil -- Ceará -- Guaraciaba do Norte -- 4
42 10902 -- Brazil -- Sao Paulo -- Paulínia -- 4
43 11555 -- Brazil -- Bahia -- Iraquara -- 4
44 11556 -- Brazil -- Bahia -- Iraquara -- 4
45 12350 -- Greece -- Ierapetra -- 4
46 12592 -- United Kingdom -- North Yorkshire -- Jan Bezemer and Sons -- 4
47 12600 -- United Kingdom -- North Yorkshire -- Jan Bezemer and Sons -- 4
48 12601 -- United Kingdom -- Worcestershire -- Evesham -- R and L Holt -- 4
49 12619 -- United Kingdom -- Lacanshire -- Flavourfresh Salads -- 4
50 12661 -- United Kingdom -- Evesham -- R and L Holt -- 4
51 13400 -- Brazil -- Goiás -- Anápolis -- 4
52 14877 -- Iran -- Ardabil -- 4
53 14878 -- Iran -- ShahreKord -- 4
54 14879 -- Iran -- Yazd -- 4
55 14921 -- Spain -- Murcia -- 4
56 14922 -- Spain -- Cartagena -- 4
57 15212 -- Brazil -- Pernambuco -- Bezerro -- 4
58 15568 -- China -- Hebei -- Huailai -- 4
59 15569 -- China -- Hebei -- Huailai -- 4
60 15605 -- China -- Yunnan -- 4

Other Reference

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