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RESEARCH PRODUCT
A Complex Gene Network Mediated by Ethylene Signal Transduction TFs Defines the Flower Induction and Differentiation in Olea europaea L.
Tiziana Maria SirangeloFrancesco SunseriA. SalimontiFrancesco MercatiFabrizio CarboneAntonio MauceriGuglielmo PuccioIvano Forgionesubject
0106 biological sciences0301 basic medicineCandidate genelcsh:QH426-470Flower differentiationFlowersBiology01 natural sciencesArticleTranscriptome03 medical and health sciencesalternate bearingGene Expression Regulation PlantFlower inductionOleaBotanyGeneticsGene Regulatory NetworksOlea europaeaGeneGenetics (clinical)Plant ProteinsfloweringPhenylpropanoidfood and beveragesCell Differentiationtranscriptome profilingEthylenesbiology.organism_classificationOlive treesPlant Breedinglcsh:Genetics030104 developmental biologylateral budOleaNGS<i>Olea europaea</i>Transcriptome010606 plant biology & botanyTranscription Factorsdescription
The olive tree (Olea europaea L.) is a typical Mediterranean crop, important for olive and oil production. The high tendency to bear fruits in an uneven manner, defined as irregular or alternate bearing, results in a significant economic impact for the high losses in olives and oil production. Buds from heavy loaded (‘ON’) and unloaded (‘OFF’) branches of a unique olive tree were collected in July and the next March to compare the transcriptomic profiles and get deep insight into the molecular mechanisms regulating floral induction and differentiation. A wide set of DEGs related to ethylene TFs and to hormonal, sugar, and phenylpropanoid pathways was identified in buds collected from ‘OFF’ branches. These genes could directly and indirectly modulate different pathways, suggesting their key role during the lateral bud transition to flowering stage. Interestingly, several genes related to the flowering process appeared as over-expressed in buds from March ‘OFF’ branches and they could address the buds towards flower differentiation. By this approach, interesting candidate genes related to the switch from vegetative to reproductive stages were detected and analyzed. The functional analysis of these genes will provide tools for developing breeding programs to obtain olive trees characterized by more constant productivity over the years.
year | journal | country | edition | language |
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2021-04-01 | Genes |