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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:scopusNext-Generation Proteomics Reveals a Greater Antioxidative Response to Drought in Coffea arabica Than in Coffea canephora
ArticleAbstract: Drought is a major threat to coffee, compromising the quality and quantity of its production. We havPalabras claves:acclimation, Climate Change, Coffee, Comparative proteome, Water deficit responseAutores:Armengaud J., Damatta F.M., Gaillard J.C., Gouveia D., Isabel Marques, Lidon F.C., Martins S., Ramalho J.C., Ribeiro‐barros A.I., Semedo M.C.Fuentes:scopusOverexpression of Water-Responsive Genes Promoted by Elevated CO<inf>2</inf> Reduces ROS and Enhances Drought Tolerance in Coffea Species
ArticleAbstract: Drought is a major constraint to plant growth and productivity worldwide and will aggravate as waterPalabras claves:ABA signaling, Coffee, Functional analysis, ROS, Stress, toleranceAutores: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: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:scopusShade and Altitude Implications on the Physical and Chemical Attributes of Green Coffee Beans from Gorongosa Mountain, Mozambique
ArticleAbstract: Coffea arabica L. is as a tropical crop that can be grown under monocrop or agroforestry (AFS) systePalabras claves:agroforestry system, altitude, Chlorogenic acids, Coffee, colour parameters, full sun, green bean, Quality, Shade, soluble sugarsAutores:Campa C., Cassamo C.T., Chiulele R., Isabel Marques, Leitão A.E., Lidon F.C., Mangueze A.V.J., Moreira R., Pais I.P., Partelli F.L., Ramalho J.C., Reis F.O., Ribeiro-Barros A.I., Scotti-Campos P.Fuentes:scopusResilient and Sensitive Key Points of the Photosynthetic Machinery of Coffea spp. to the Single and Superimposed Exposure to Severe Drought and Heat Stresses
ArticleAbstract: This study unveils the single and combined drought and heat impacts on the photosynthetic performancPalabras claves:acclimation, Climate Change, Coffee, drought, Heat, Photoinhibition, photosynthesisAutores:Armengaud J., Campostrini E., Damatta F.M., Dubberstein D., Gouveia D., Isabel Marques, Lidon F.C., Martins S., Moura I., Pais I.P., Partelli F.L., Ramalho J.C., Ribeiro‐barros A.I., Rodrigues A.P., Rodrigues W.P., Scotti-Campos P., Semedo J.N., Semedo M.C., Simões-Costa M.C.Fuentes:scopusProtective Responses at the Biochemical and Molecular Level Differ between a Coffea arabica L. Hybrid and Its Parental Genotypes to Supra-Optimal Temperatures and Elevated Air [CO<inf>2</inf>]
ArticleAbstract: Climate changes with global warming associated with rising atmospheric [CO2] can strongly impact croPalabras claves:Antioxidant system, Climate Change, Coffee, elevated carbon dioxide, heat stress, Oxidative StressAutores:Damatta F.M., Isabel Marques, Leitão A.E., Lidon F.C., Martins S., Ramalho J.C., Ribeiro-Barros A.I., Rodrigues A.P., Semedo M.C., Silva M.J., Vinci G.Fuentes:scopus