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RESEARCH PRODUCT
Sex versus parthenogenesis: A transcriptomic approach of photoperiod response in the model aphid Acyrthosiphon pisum (Hemiptera: Aphididae)
Andrés MoyaTeresa CortesDenis TaguDavid Martínez-torresJ. C. Simonsubject
0106 biological sciencesCandidate genePhotoperiodParthenogenesis01 natural sciencesSexual Behavior Animal03 medical and health sciencesGeneticsAnimalsGeneGene Library030304 developmental biologyExpressed Sequence TagsGenetics[SDV.GEN]Life Sciences [q-bio]/Genetics0303 health sciencesAphidbiologyfood and beveragesAphididaeGeneral MedicineParthenogenesisbiology.organism_classificationHemipteraAcyrthosiphon pisum010602 entomologyGene Expression RegulationSuppression subtractive hybridizationAphidsInsect Proteinsdescription
International audience; Most aphids develop a cyclic parthenogenesis life-cycle. After several generations of viviparous parthenogenetic females, it follows a single annual generation of sexual individuals, usually in autumn, that mate and lay the sexual eggs. Shortening of photoperiod at the end of the summer is a key factor inducing the sexual response. With the survey here reported we aimed at identifying a collection of candidate genes to participate at some point in the cascade of events that lead to the sexual phenotypes. Following a suppression subtractive hybridization methodology (SSH) on the model aphid Acyrthosiphon pisum, we built and characterised two reciprocal cDNA libraries (SDU and SDD) enriched respectively in genes up-regulated or down-regulated by short photoperiod conditions that lead to the sexual response in this aphid species. A total of 557 ESTs were obtained altogether representing 223 non-overlapping contigs. 29% of these were new sequences not present in previous aphid EST libraries. BLAST searches allowed putative identification of about 54% of the contigs present in both libraries. Relative quantification of expression through real-time quantitative PCR demonstrated the differential expression in relation with the photoperiod of 6 genes (3 up-regulated and 3 down-regulated by shortening the day length). Among these, expression of a tubulin gene, two cuticular proteins and a yet unidentified sequence along the day-night cycle was further investigated. Implications for current studies on gene regulation of the dichotomy sex vs. parthenogenesis in aphids are discussed.
year | journal | country | edition | language |
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2007-07-02 | Gene |