298
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Tuta absoluta (Meyrick) resistance in tomato (Solanum lycopersicum L.) accessions and species

, , , ORCID Icon, &
Received 17 Jun 2021, Accepted 10 Mar 2022, Published online: 24 Mar 2022

References

  • Andrade MC, da Silva AA, Neiva IP, Oliveira IRC, De Castro EM, Francis DM, Maluf WR. 2017. Inheritance of type IV glandular trichome density and its association with whitefly resistance from Solanum galapagense accession LA1401. Euphytica. 213(2):52.
  • Attwa WA, Omar NA, Ebadah IMA, Abd El-Wahab TE, Moawad SM, Sadek HE. 2015. Life table parameters of the tomato leaf miner, Tuta absoluta (Meyrick) and potato tuber moth Phthorimaea operculella Zeller (Lepidoptera: Gelechiidae) on tomato plants in Egypt. Agric Sci Res J. 5(1):1–5.
  • Bekheit HKM, Impiglia A. 2011. Tuta absoluta (Tomato borer) outbreak and control measures in Egypt. EPPO/IOBC/FAO/NEPPO Joint International Symposium on Management of Tuta Absoluta (Tomato Borer). Vol. 16. p. 18–69.
  • Bernard SM, Habash DZ. 2009. The importance of cytosolic glutamine synthetase in nitrogen assimilation and recycling. New Phytol. 182(3):608–620.
  • Biondi A, Guedes RNC, Wan FH, Desneux N. 2018. Ecology, worldwide spread, and management of the invasive south American tomato pinworm, Tuta absoluta: past, present, and future. Annu Rev Entomol. 63:239–258.
  • Bitew MK. 2018. Significant role of wild genotypes of tomato trichomes for Tuta absoluta resistance. J Plant Genet Breed. 2(1):12.
  • Bleeker PM, Diergaarde PJ, Ament K, Schütz S, Johne B, Dijkink J, Hiemstra H, de Gelder R, de Both MTJ, Sabelis MW, et al. 2011. Tomato-produced 7-epizingiberene and R-curcumene act as repellents to whiteflies. Phytochemistry. 72(1):68–73.
  • Bottega DB, Boiça Junior AL, Souza BHS, Lourençáo AL. 2015. Biological aspects of Tuta absoluta (Lepidoptera: Gelechiidae) reared on leaves of different tomato genotypes. Rev Ciênc Agrár. 38(2):139–148.
  • Burgess EPJ, Lovei GL, Malone LA, Nielsen IW, Gatehouse HS, Christeller JT. 2002. Prey-mediated effects of the protease inhibitor aprotinin on the predatory carabid beetle, Nebria brevicollis. J Insect Physiol. 48(12):1093–1101.
  • Campos MR, Biondi A, Adiga A, Guedes RNC, Desneux N. 2017. From the western palaearctic region to beyond: Tuta absoluta 10 years after invading. J Pest Sci. 90(3):787–796.
  • Carter CD, Gianfagna TJ, and Scalis JN. 1989. Sesquiterpenes in glandular trichomes of a wild tomato species and toxicity to the Colorado potato beetle. J. Agri. Food Chem. 37, 1425–1428. https://doi.org/https://doi.org/10.1021/jf00089a048.
  • Christeller JT, Malone LA, Todd JH, Marshall RM, Burgess EP, Philip BA. 2005. Distribution and residual activity of two insecticidal proteins, avidin and aprotinin, expressed in transgenic tobacco plants, in the bodies and frass of Spodoptera litura larvae following feeding. J Insect Physiol. 51(10):1117–1126.
  • Cocco A, Deliperi S, Delrio G. 2013. Control of Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae) in greenhouse tomato crops using the mating disruption technique. J Appl Entomol. 137(1–2):16–28.
  • De Azevedo SM, Faria MV, Maluf WR, de Oliveira ACB, De Freitas JA. 2003. Zingiberene-mediated resistance to the South American tomato pinworm derived from Lycopersicon hirsutum var. hirsutum. Euphytica. 134(3):347–351.
  • Desneux N, Wajnberg E, Wyckhuys KAG, Burgio G, Arpaia S, Narváez-Vasquez CA, González-Cabrera J, Catalán Ruescas D, Tabone E, Frandon J, et al. 2010. Biological invasion of European tomato crops by Tuta absoluta: ecology, geographic expansion and prospects for biological control. J Pest Sci. 83(3):197–215.
  • DiMario RJ, Clayton H, Mukherjee A, Ludwig M, Moroney JV. 2017. Plant carbonic anhydrases: structures, locations, evolution, and physiological roles. Mol Plant. 10(1):30–46.
  • Eigenbroade SD and Trumble JT. 1993. Antiobiosis to beet armyworm (Spodoptera exigue) in Lycopersicon accessions. HortScience. 28(9):932–934. https://doi.org/https://doi.org/10.21273/HORTSCI.28.9.932
  • El-Aassar MR, Soliman MHA, Elaal AAA. 2015. Efficiency of sex pheromone traps and some bio and chemical insecticides against tomato borer larvae, Tuta absoluta (Meyrick) and estimate the damages of leaves and fruit tomato plant. Ann Agric Sci. 60(1):153–156.
  • Emre İ, Özdemir E, Atış AE, Zelyüt FR, İnak A, Demir Ü, Roditakis E, Vontas J. 2021. Population structure and insecticide resistance status of Tuta absoluta populations from Turkey. Pest Manag Sci. 77(10):4741–4748.
  • Firdaus S, van Heusden AW, Hidayati N, Supena EDJ, Visser RGF, Vosman B. 2012. Resistance to Bemisia tabaci in tomato wild relatives. Euphytica. 187(1):31–45.
  • Fobes JF, Mudd JB, and Marsden MPF. 1985. Epicuticular lipid accumulation on the leaves of Lycopersicon ­pennellii (Corr.) D’Arcy and Lycopersicon esculentum Mill. Plant Physiol. 77(3):567–570.
  • Freitas JA, Maluf WR, Cardoso MG, Gomes LAA, Bearzotti E. 2002. Inheritance of foliar zingiberene contents and their relationship to trichome densities and whitefly resistance in tomatoes. Euphytica. 127(2):275–287.
  • Gervassio NGS, Aquino D, Vallina C, Biondi A, Luna MG. 2019. A re-examination of Tuta absoluta parasitoids in South America for optimized biological control. J Pest Sci. 92(4):1343–1357.
  • Gharekhani GH, Salek-Ebrahimi H. 2014. Evaluating the damage of Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae) on some cultivars of tomato under greenhouse condition. Archiv Phytopathol Plant Protec. 47(4):8.
  • Ghosh B, Westbrook TC, Jones AD. 2014. Comparative structural profiling of trichome specialized metabolites in tomato (Solanumlycopersicum) and S. habrochaites: acylsugar profiles revealed by UHPLC/MS and NMR. Metabolomics. 10(3):496–507.
  • Glas JJ, Schimmel BCJ, Alba JM, Escobar-Bravo R, Schuurink RC, Kant MR. 2012. Plant glandular trichomes as targets for breeding or engineering of resistance to herbivores. Int J Mol Sci. 13(12):17077–17103.
  • Guedes RNC, Picanço MC. 2011. Tuta absoluta in South America: pest status, management and insecticide resistance. EPPO/IOBC/FAO/NEPPO Joint International Symposium on Management of Tuta absoluta (tomato borer, Lepidoptera: Gelechiidae) in collaboration with the IRAC and IBMA; Nov 16–18. Agadir, Morocco.
  • Guedes RNC, Roditakis E, Campos MR, Haddi K, Bielza P, Siqueira HAA, Tsagkarakou A, Vontas J, Nauen R. 2019. Insecticide resistance in the tomato pinworm Tuta absoluta: patterns, spread, mechanisms, management and outlook. J Pest Sci. 92(4):1329–1342.
  • Jollés J, Jollés P. 1975. The lysozyme from Asterias rubens. Eur J Biochem. 54:19–23.
  • Jongsma MA, Peters J, Stiekema WJ, Bosch D. 1996. Characterisation and pertial purification of gut proteinases of Spodoptera exigua Hübner (Lepidoptera; Noctuidae). Insect Biochem Molec Biol. 26(2):185–193.
  • Josephrajkumar J, Chakrabarty R, Thomas G. 2006. Midgut proteases of the cardamom shoot and capsule borer Conogethes punctiferalis (Lepidoptera: Pyralidae) and their interaction with aprotinin. Bull Entomol Res. 96(1):91–98.
  • Kim J, Kang K, Gonzales-Vigil E, Shi F, Jones AD, Barry CS, Last RL. 2012. Striking natural diversity in glandular trichome acylsugar composition is shaped by variation at the Acyltransferase2 locus in the wild tomato Solanum habrochaites. Plant Physiol. 160(4):1854–1870.
  • Laemmli UK. 1970. Cleavage of structural proteins during the assembly of the head of bacteriophage T4. Nature. 227(5259):680–685.
  • Laskowski M, Jr, Kato I. 1980. Protein inhibitors of proteinases. Annu Rev Biochem. 49:593–626.
  • Leckie BM, De Jong DM, Mutschler MA. 2013. Quantitative trait loci regulating sugar moiety of acylsugars in tomato. Mol Breed. 31(4):957–970.
  • Maluf WR, Barbosa LV, Santa-Cecília LVC. 1997. 2-Tridecanone-mediated mechanisms to resistance to the South American tomato pinworm Scrobipalpuloides absoluta (Meyrick, 1917) (Lepidoptera-Gelechiidae) in Lycopersicon spp. Euphytica. 93(2):189–194.
  • Maluf WR, Silva VF, Cardoso MG, Gomes LAA, Neto ACG, Maciel GM, Nízio DAC. 2010. Resistance to the South American tomato pinworm Tuta absoluta in high acylsugar and/or high zingiberene tomato genotypes. Euphytica. 176(1):113–123.
  • Mansour R, Brévault T, Chailleux A, Cherif A, Grissa-Lebdi K, Haddi K, Mohamed SA, Nofemela RS, Oke A, Sylla S, et al. 2018. Occurrence, biology, natural enemies and management of Tuta absoluta in Africa. Entomologia. 38(2):83–112.
  • Mayer RT, Inbar M, McKenzie CL, Shatters R, Borowicz V, Albrecht U, Powell CA, Doostdar H. 2002. Multitrophic interactions of the silverleaf whitefly, host plants, competing herbivores, and phytopathogens. Arch Insect Biochem Physiol. 51(4):151–169.
  • Morant AV, Jørgensen K, Jørgensen C, Paquette SM, Sánchez-Pérez R, Møller BL, Bak S. 2008. beta-Glucosidases as detonators of plant chemical defense. Phytochemistry. 69(9):1795–1813.
  • Oliveira FA, da Silva DJH, Leite GLD, Jham GN, Picanço M. 2009. Resistance of 57 greenhouse-grown accessions of Lycopersicon esculentum and three cultivars to Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae). Sci Hort. 119(2):182–187.
  • Oliveira CM, Júnior VCA, Maluf WR, Neiva IP, Maciel GM. 2012. Resistance of tomato strains to the moth Tuta absoluta imparted by allelochemicals and trichome density. Ciênc Agrotec. 36(1):45–52.
  • Puthoff DP, Holzer FM, Perring TM, Walling LL. 2010. Tomato pathogenesis-related protein genes are expressed in response to Trialeurodes vaporariorum and Bemisia tabaci biotype B feeding. J Chem Ecol. 36(11):1271–1285.
  • Qiu X, Xie W, Lian X, Zhang Q. 2009. Molecular analyses of the rice glutamate dehydrogenase gene family and their response to nitrogen and phosphorous deprivation. Plant Cell Rep. 28(7):1115–1126.
  • Rahimi FR, Carter CD. 1993. Inheritance of zingiberene in Lycopersicon. Theor Appl Genet. 87(5):593–597.
  • Rakha M, Zekeya N, Sevgan S, Musembi M, Ramasamy S, Hanson P. 2017. Screening recently identified whitefly/spider mite-resistant wild tomato accessions for resistance to Tuta absoluta. Plant Breed. 136(4):562–568.
  • Resende JTV, Maluf WR, Cardoso MG, Nelson DL, Faria MV. 2002. Inheritance of acylsugar contents in tomatoes derived from an interspecific cross with the wild tomato Lycopersicon pennellii and their effect on spider mite repellence. Genet Mol Res. 1(2):106–116.
  • Resende JTV, Maluf WR, Faria MV, Pfann AZ, do Nascimento IR. 2006. Acylsugars in tomato leaflets confer resistance to the South American tomato pinworm, Tuta absoluta Meyr. Sci Agric (Piracicaba Braz)). 63(1):20–25.
  • Shapiro SS, Wilk MB. 1965. An analysis of variance test for normality (complete samples). Biometrika. 52(3–4):591–611.
  • Sharaby A, Abdel-Rhman H, Abdel-Aziz S, Moawad SS. 2014. Susceptibility of different potato varieties to infestation by potato tuber moth and role of the plant powders on their protection. IOSRJAVS. 7(4):71–80.
  • Silva KFAS, Michere-Filho M, Fonseca MEN, Silva-Filho JG, Texeira ACA, Moita AW, Torres JB, Fernández-Muñoz R, Boiteux LS. 2014. Resistance to Bemisia tabaci biotype B of Solanum pimpinellifolium is associated with higher densities of type IV glandular trichomes and acylsugar accumulation. Entomol Exp Appl. 151(3):218–230.
  • Siqueira HAA, Guedes RNC, Fragoso DDB, Magalhaes LC. 2001. Abamectin resistance and synergism in Brazilian populations of Tuta absoluta (Meyrick) (Lepidoptera: Gelechiidae). Intern J Pest Manag. 47(4):247–251.
  • Smith CM, Clement SL. 2012. Molecular bases of plant resistance to arthropods. Annu Rev Entomol. 57:309–328.
  • Sridhar V, Sadashiva A, Rao VK, Swathi P, Gadad HS. 2019. Trichome and biochemical basis of resistance against Tuta absoluta in tomato genotypes. Plant Genet Resour. 17(03):301–305.
  • Steel RGD, Torrie JH. 1984. Principles and procedures of statistics. New York (USA): McGraw Hill Book Co., Inc.
  • van Lenteren JC, Lanzoni A, Hemerik L, Bueno VHP, Cuervo JGB, Biondi A, Burgio G, Calvo FJ, de Jong PW, López SN, et al. 2021. The pest kill rate of thirteen natural enemies as aggregate evaluation criterion of their biological control potential of Tuta absoluta. Sci Rep. 11(1):10756.
  • Vassão DG, Wielsch N, Gomes A, Gebauer-Jung S, Hupfer Y, Svatoš A, Gershenzon J. 2018. Plant defensive ß-glucosidases resist digestion and sustain activity in the gut of a lepidopteran herbivore. Front Plant Sci. 9:1389.
  • Vitta N, Estay P, Chorbadjian RA. 2016. Characterization of resistance expression in genotypes of Solanum section Lycopersicon against Tuta absoluta (Lepidoptera: Gelechiidae). Cienc Inv Agr. 43(3):3–372. https://doi.org/10.4067/S0718-16202016000300003.
  • Zeist AR, da Silva AA, de Resende JTV, Maluf WR, Gabriel A, Zanin DS, Guerra EP. 2019. Tomato breeding for insect-pest resistance. In: Nyaku ST, Danquah A, editors. Recent advances in tomato breeding and production. London, United Kingdom: IntechOpen Limited. p. 20.

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.