Please use this identifier to cite or link to this item: http://hdl.handle.net/1893/28208
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dc.contributor.authorWalsh, Thomas Ken_UK
dc.contributor.authorJoussen, Nicoleen_UK
dc.contributor.authorTian, Kaien_UK
dc.contributor.authorMcGaughran, Angelaen_UK
dc.contributor.authorAnderson, Craig Jen_UK
dc.contributor.authorQiu, Xinghuien_UK
dc.contributor.authorAhn, Seung-Joonen_UK
dc.contributor.authorBird, Lisaen_UK
dc.contributor.authorPavlidi, Nenaen_UK
dc.contributor.authorVontas, Johnen_UK
dc.contributor.authorRyu, Jaeeunen_UK
dc.contributor.authorRasool, Akhtaren_UK
dc.contributor.authorBarony Macedo, Isabellaen_UK
dc.contributor.authorTay, Wee Teken_UK
dc.contributor.authorZhang, Yongjunen_UK
dc.date.accessioned2018-11-13T01:01:23Z-
dc.date.available2018-11-13T01:01:23Z-
dc.date.issued2018-11-01en_UK
dc.identifier.othere0197760en_UK
dc.identifier.urihttp://hdl.handle.net/1893/28208-
dc.description.abstractThe cotton bollworm, Helicoverpa armigera (Hübner) is one of the most serious insect pest species to evolve resistance against many insecticides from different chemical classes. This species has evolved resistance to the pyrethroid insecticides across its native range and is becoming a truly global pest after establishing in South America and having been recently recorded in North America. A chimeric cytochrome P450 gene, CYP337B3, has been identified as a resistance mechanism for resistance to fenvalerate and cypermethrin. Here we show that this resistance mechanism is common around the world with at least eight different alleles. It is present in South America and has probably introgressed into its closely related native sibling species, Helicoverpa zea. The different alleles of CYP337B3 are likely to have arisen independently in different geographic locations from selection on existing diversity. The alleles found in Brazil are those most commonly found in Asia, suggesting a potential origin for the incursion of H. armigera into the Americas.en_UK
dc.language.isoenen_UK
dc.publisherPublic Library of Scienceen_UK
dc.relationWalsh TK, Joussen N, Tian K, McGaughran A, Anderson CJ, Qiu X, Ahn S, Bird L, Pavlidi N, Vontas J, Ryu J, Rasool A, Barony Macedo I, Tay WT & Zhang Y (2018) Multiple recombination events between two cytochrome P450 loci contribute to global pyrethroid resistance in Helicoverpa armigera. PLoS One, 13 (11), Art. No.: e0197760. https://doi.org/10.1371/journal.pone.0197760en_UK
dc.rights© 2018 Walsh et al. This is an open access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.en_UK
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/en_UK
dc.titleMultiple recombination events between two cytochrome P450 loci contribute to global pyrethroid resistance in Helicoverpa armigeraen_UK
dc.typeJournal Articleen_UK
dc.identifier.doi10.1371/journal.pone.0197760en_UK
dc.identifier.pmid30383872en_UK
dc.citation.jtitlePLoS ONEen_UK
dc.citation.issn1932-6203en_UK
dc.citation.volume13en_UK
dc.citation.issue11en_UK
dc.citation.publicationstatusPublisheden_UK
dc.citation.peerreviewedRefereeden_UK
dc.type.statusVoR - Version of Recorden_UK
dc.contributor.funderCommonwealth Scientific Industrial Research Organisationen_UK
dc.citation.date01/11/2018en_UK
dc.description.notesAdditional co-authors: Mary E A Whitehouse, Pierre Jean Silvie, Sharon Downes, Lori Nemec, David G. Heckelen_UK
dc.contributor.affiliationCommonwealth Scientific and Industrial Research Organisation (CSIRO)en_UK
dc.contributor.affiliationMax Planck Institute for Chemical Ecologyen_UK
dc.contributor.affiliationChinese Academy of Sciencesen_UK
dc.contributor.affiliationCommonwealth Scientific and Industrial Research Organisation (CSIRO)en_UK
dc.contributor.affiliationBiological and Environmental Sciencesen_UK
dc.contributor.affiliationChinese Academy of Sciencesen_UK
dc.contributor.affiliationOregon State Universityen_UK
dc.contributor.affiliationNew South Wales Department of Primary Industriesen_UK
dc.contributor.affiliationUniversity of Crete, Greeceen_UK
dc.contributor.affiliationAgricultural University of Athensen_UK
dc.contributor.affiliationCommonwealth Scientific and Industrial Research Organisation (CSIRO)en_UK
dc.contributor.affiliationNational Institute for Biotechnology and Genetic Engineeringen_UK
dc.contributor.affiliationFederal University of Minas Geraisen_UK
dc.contributor.affiliationCommonwealth Scientific and Industrial Research Organisation (CSIRO)en_UK
dc.contributor.affiliationChinese Academy of Agricultural Sciencesen_UK
dc.identifier.isiWOS:000449027600001en_UK
dc.identifier.scopusid2-s2.0-85055906765en_UK
dc.identifier.wtid1051990en_UK
dc.contributor.orcid0000-0002-2832-9313en_UK
dc.date.accepted2018-08-10en_UK
dcterms.dateAccepted2018-08-10en_UK
dc.date.filedepositdate2018-11-12en_UK
rioxxterms.apcnot requireden_UK
rioxxterms.typeJournal Article/Reviewen_UK
rioxxterms.versionVoRen_UK
local.rioxx.authorWalsh, Thomas K|en_UK
local.rioxx.authorJoussen, Nicole|en_UK
local.rioxx.authorTian, Kai|en_UK
local.rioxx.authorMcGaughran, Angela|en_UK
local.rioxx.authorAnderson, Craig J|0000-0002-2832-9313en_UK
local.rioxx.authorQiu, Xinghui|en_UK
local.rioxx.authorAhn, Seung-Joon|en_UK
local.rioxx.authorBird, Lisa|en_UK
local.rioxx.authorPavlidi, Nena|en_UK
local.rioxx.authorVontas, John|en_UK
local.rioxx.authorRyu, Jaeeun|en_UK
local.rioxx.authorRasool, Akhtar|en_UK
local.rioxx.authorBarony Macedo, Isabella|en_UK
local.rioxx.authorTay, Wee Tek|en_UK
local.rioxx.authorZhang, Yongjun|en_UK
local.rioxx.projectProject ID unknown|Commonwealth Scientific Industrial Research Organisation|en_UK
local.rioxx.freetoreaddate2018-11-12en_UK
local.rioxx.licencehttp://creativecommons.org/licenses/by/4.0/|2018-11-12|en_UK
local.rioxx.filenamejournal.pone.0197760.pdfen_UK
local.rioxx.filecount1en_UK
local.rioxx.source1932-6203en_UK
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