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dc.contributor.authorHasselmann, Martin-
dc.contributor.authorGempe, Tanja-
dc.contributor.authorSchiøtt, Morten-
dc.contributor.authorNunes-Silva, Carlos Gustavo-
dc.contributor.authorOtte, Marianne-
dc.contributor.authorBeye, Martin-
dc.date.accessioned2020-06-15T22:02:05Z-
dc.date.available2020-06-15T22:02:05Z-
dc.date.issued2008-
dc.identifier.urihttps://repositorio.inpa.gov.br/handle/1/18546-
dc.description.abstractSex determination in honeybees (Apis mellifera) is governed by heterozygosity at a single locus harbouring the complementary sex determiner (csd) gene, in contrast to the well-studied sex chromosome system of Drosophila melanogaster. Bees heterozygous at csd are females, whereas homozygotes and hemizygotes (haploid individuals) are males. Although at least 15 different csd alleles are known among natural bee populations, the mechanisms linking allelic interactions to switching of the sexual development programme are still obscure. Here we report a new component of the sex-determining pathway in honeybees, encoded 12 kilobases upstream of csd. The gene feminizer (fem) is the ancestrally conserved progenitor gene from which csd arose and encodes an SR-type protein, harbouring an Arg/Ser-rich domain. Fem shares the same arrangement of Arg/Ser- and proline-rich-domain with the Drosophila principal sex-determining gene transformer (tra), but lacks conserved motifs except for a 30-amino-acid motif that Fem shares only with Tra of another fly, Ceratitis capitata. Like tra, the fem transcript is alternatively spliced. The male-specific splice variant contains a premature stop codon and yields no functional product, whereas the female-specific splice variant encodes the functional protein. We show that RNA interference (RNAi)-induced knockdowns of the female-specific fem splice variant result in male bees, indicating that the fem product is required for entire female development. Furthermore, RNAi-induced knockdowns of female allelic csd transcripts result in the male-specific fem splice variant, suggesting that the fem gene implements the switch of developmental pathways controlled by heterozygosity at csd. Comparative analysis of fem and csd coding sequences from five bee species indicates a recent origin of csd in the honeybee lineage from the fem progenitor and provides evidence for positive selection at csd accompanied by purifying selection at fem. The fem locus in bees uncovers gene duplication and positive selection as evolutionary mechanisms underlying the origin of a novel sex determination pathway. ©2008 Macmillan Publishers Limited. All rights reserved.en
dc.language.isoenpt_BR
dc.relation.ispartofVolume 454, Número 7203, Pags. 519-522pt_BR
dc.rightsRestrito*
dc.subjectAmino Aciden
dc.subjectArginineen
dc.subjectProlineen
dc.subjectSerineen
dc.subjectEvolutionen
dc.subjectGene Expressionen
dc.subjectHeterozygosityen
dc.subjectHoneybeeen
dc.subjectSelectionen
dc.subjectSex Determinationen
dc.subjectAlleleen
dc.subjectAnimals Tissueen
dc.subjectCodonen
dc.subjectComplementary Sex Determiner Geneen
dc.subjectDrosophilaen
dc.subjectEmbryoen
dc.subjectEvolutionen
dc.subjectFemaleen
dc.subjectFeminizer Geneen
dc.subjectGene Duplicationen
dc.subjectGene Functionen
dc.subjectHeterozygosityen
dc.subjectHoneybeeen
dc.subjectMaleen
dc.subjectMediterranean Fruit Flyen
dc.subjectNonhumanen
dc.subjectNucleotide Sequenceen
dc.subjectPriority Journalen
dc.subjectProtein Domainen
dc.subjectProtein Motifen
dc.subjectRna Interferenceen
dc.subjectRna Splicingen
dc.subjectSex Determinationen
dc.subjectSexual Developmenten
dc.subjectSry Geneen
dc.subjectAllelesen
dc.subjectAlternative Splicingen
dc.subjectAmino Acid Substitutionen
dc.subjectAnimalen
dc.subjectBeesen
dc.subjectEvolution, Molecularen
dc.subjectFemaleen
dc.subjectGenomeen
dc.subjectHeterozygoteen
dc.subjectHomozygoteen
dc.subjectInsect Proteinsen
dc.subjectMaleen
dc.subjectMolecular Sequence Dataen
dc.subjectSex Determination (genetics)en
dc.subjectApis Melliferaen
dc.subjectApoideaen
dc.subjectCeratitis Capitataen
dc.subjectDrosophila Melanogasteren
dc.titleEvidence for the evolutionary nascence of a novel sex determination pathway in honeybeesen
dc.typeArtigopt_BR
dc.identifier.doi10.1038/nature07052-
dc.publisher.journalNaturept_BR
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