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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:scopusComparative proteomic analysis of nodulated and non-nodulated casuarina glauca sieb. Ex spreng. grown under salinity conditions using sequential window acquisition of all theoretical mass spectra (SWATH-MS)
ArticleAbstract: Casuarina glauca displays high levels of salt tolerance, but very little is known about how this trePalabras claves:actinorhizal plants, Casuarina glauca, Frankia, proteomics, Salt stressAutores:da Costa M., Duro N., Graça I., Isabel Marques, Manadas B., Mendes V.M., Pawlowski K., Pinto Ricardo C.P., Ramalho J.C., Ribeiro‐barros A.I.Fuentes:scopusIntrinsic non-stomatal resilience to drought of the photosynthetic apparatus in Coffea spp. is strengthened by elevated air [CO<inf>2</inf>]
ArticleAbstract: Growing water restrictions associated with climate changes constitute daunting challenges to crop pePalabras claves:acclimation, C-assimilation, Climate Change, CO mitigation 2, coffee tree, droughtAutores:Armengaud J., Damatta F.M., Dubberstein D., Gouveia D., Isabel Marques, Lidon F.C., Martins S., Pais I.P., Partelli F.L., Ramalho J.C., Reboredo F.H., Ribeiro‐barros A.I., Rodrigues A.P., Scotti-Campos P., Semedo J.N., Semedo M.C., Silva M.J.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:scopusMining the microbiome of key species from african savanna woodlands: Potential for soil health improvement anwd plant growth promotion
ArticleAbstract: (1) Aims: Assessing bacterial diversity and plant-growth-promoting functions in the rhizosphere of tPalabras claves:16SrRNA, Combretum, fire, Limpopo National Park, Mopane, Plant growth-promoting bacteria, RhizosphereAutores:Berruti A., Brito D.R.A., Castro I.V.E., Chaúque A., Fareleira P., Ferreira-Pinto M.M., Isabel Marques, Lumini E., Maquia I.S.A., Ribeiro N.S., Ribeiro‐barros A.I., Soares R.Fuentes:scopusPrimary metabolite profile changes in coffea spp. Promoted by single and combined exposure to drought and elevated co<inf>2</inf> concentration
ArticleAbstract: Climate change scenarios pose major threats to many crops worldwide, including coffee. We explored tPalabras claves:Climate Change, Coffea Arábica, COFFEA CANEPHORA, coffee tree, Elevated CO 2, GC-TOF-MS, Mass spectrometry, Plant metabolomics, Water deficitAutores:António C., Damatta F.M., Isabel Marques, Jorge T., Lidon F.C., Osorio S., Pott D.M., Ramalho J.C., Ribeiro‐barros A.I., Rodrigues A.M.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:scopusThe nexus between fire and soil bacterial diversity in the african miombo woodlands of niassa special reserve, mozambique
ArticleAbstract: (1) Background: the Miombo woodlands comprise the most important vegetation from southern Africa andPalabras claves:16SrRNA, Brachystegia boehmii, fire, Miombo, Plant growth promoting bacteria, RhizosphereAutores:Brito D.R.A., Castro I.V.E., Chaúque A., Ezeokoli O.T., Fareleira P., Isabel Marques, Máguas C., Maquia I.S.A., Mbanze A.A., Ribeiro N.S., Ribeiro‐barros A.I., Soares R.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