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A transcriptomic approach to understanding the combined impacts of supra‐optimal temperatures and co2 revealed different responses in the polyploid coffea arabica and its diploid progenitor c. Canephora
ArticleAbstract: Understanding the effect of extreme temperatures and elevated air (CO2) is crucial for mitigating thPalabras claves:Climate changes, Coffee, Elevated air (CO2), Functional analysis, High temperatures, Leaf RNAseq, Polyploidy, warmingAutores:Damatta F.M., Fernandes I., Isabel Marques, Lidon F.C., Paulo O.S., Ramalho J.C., Ribeiro‐barros A.I.Fuentes:scopusTranscriptomic leaf profiling reveals differential responses of the two most traded coffee species to elevated [co<inf>2</inf>]
ArticleAbstract: As atmospheric [CO2] continues to rise to unprecedented levels, understanding its impact on plants iPalabras claves:Climate Change, coffee tree, Elevated air [CO ] 2, Functional analysis, Leaf RNAseqAutores:Damatta F.M., David P.H.C., Fernandes I., Fortunato A.S., Goulao L.F., Isabel Marques, Lidon F.C., Paulo O.S., Ramalho J.C., Ribeiro‐barros A.I.Fuentes:scopusUnderstanding the impact of drought in coffea genotypes: Transcriptomic analysis supports a common high resilience to moderate water deficit but a genotype dependent sensitivity to severe water deficit
ArticleAbstract: Water scarcity is the most significant factor limiting coffee production, although some cultivars caPalabras claves:ABA signaling, Climate changes, Coffee, drought, Functional analysis, Leaf RNAseq, transcription factorsAutores:Batista D., Damatta F.M., Fernandes I., Isabel Marques, Lidon F.C., Partelli F.L., Paulo O.S., Ramalho J.C., Ribeiro‐barros A.I.Fuentes:scopus