Research Publications

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2014
Correia, B., Rodriguez J. Luis, Valledor L., Almeida T., Santos C., Cañal M. Jesus, et al. (2014).  Analysis of the expression of putative heat-stress related genes in relation to thermotolerance of cork oak. Journal of Plant Physiology. 171, 399-406.
Neves, D., Caetano P., Oliveira J., Maia C., Horta M., Sousa N., et al. (2014).  Anti-Phytophthora cinnamomi activity of Phlomis purpurea plant and root extracts. EUROPEAN JOURNAL OF PLANT PATHOLOGY. 138, 835-846.
Pereira-Leal, J. B., Abreu I. a, Alabaça C. S., Almeida M. Helena, Almeida P., Almeida T., et al. (2014).  A comprehensive assessment of the transcriptome of cork oak (Quercus suber) through EST sequencing.. BMC genomics. 15, 371.
Gil, L. (2014).  Cork: a strategic material.. Frontiers in chemistry. 2, 16.
Besson, C. Kurz, Lobo-do-Vale R., Rodrigues M. Lucília, Almeida P., Herd A., Grant O. Mary, et al. (2014).  Cork oak physiological responses to manipulated water availability in a Mediterranean woodland. Agricultural and Forest Meteorology. 184, 230 - 242.
Caldeira, M. C., Ibáñez I., Nogueira C., Bugalho M. N., Lecomte X., Moreira A., et al. (2014).  Direct and indirect effects of tree canopy facilitation in the recruitment of Mediterranean oaks. Journal of Applied Ecology. n/a - n/a.
Fürstenau, B., Quero C., Riba J. Ma, Rosell G., & Guerrero A. (2014).  Field trapping of the flathead oak borer Coroebus undatus (Coleoptera: Buprestidae) with different traps and volatile lures. Insect Science. n/a - n/a.
Maleita, C., Costa S. R., & Abrantes I. (2014).  First report of Laimaphelenchus heidelbergi (Nematoda: Aphelenchoididae) in Europe. Forest Pathology. n/a--n/a.
Costa, A., Madeira M., Santos J. Lima, Plieninger T., & Seixas J. (2014).  Fragmentation patterns of evergreen oak woodlands in Southwestern Iberia: Identifying key spatial indicators. Journal of Environmental Management. 133, 18 - 26.
Chaves, I., Lin Y-C., Pinto-Ricardo C., de Peer Y., & Miguel C. (2014).  miRNA profiling in leaf and cork tissues of Quercus suber reveals novel miRNAs and tissue-specific expression patterns. TREE GENETICS & GENOMES. 10, 721-737.
Inácio, V., Rocheta M., & Morais-Cecílio L. (2014).  Molecular Organization of the 25S-18S rDNA IGS of Fagus sylvatica and Quercus suber: A Comparative Analysis.. PloS one. 9, e98678.
Fernandes, I., Alves A., Correia A., Devreese B., & Esteves A. Cristina (2014).  Secretome analysis identifies potential virulence factors of Diplodia corticola, a fungal pathogen involved in cork oak (Quercus suber) decline. Fungal Biology.
Şen, A., Van den Bulcke J., Defoirdt N., Van Acker J., & Pereira H. (2014).  Thermal behaviour of cork and cork components. Thermochimica Acta. 582, 94 - 100.
2012
Aguado, P. L., M. Curt D., Pereira H., & Fernández J. (2012).  Allocation of 14C assimilated in late spring to tissue and biochemical stem components of cork oak (Quercus suber L.) over the seasons. Tree Physiology. 32(3), 313 - 325.
Miranda, I., Gominho J., & Pereira H. (2012).  Cellular structure and chemical composition of cork from the Chinese cork oak (Quercus variabilis). Journal of Wood Science.
Pons, J., & Pausas J. G. (2012).  The coexistence of acorns with different maturation patterns explains acorn production variability in cork oak.. Oecologia. 169(3), 723 - 731.
Vaz, M., Cochard H., Gazarini L., Graça J., Chaves M. M., & Pereira J. S. (2012).  Cork oak (Quercus suber L.) seedlings acclimate to elevated CO2 and water stress: photosynthesis, growth, wood anatomy and hydraulic conductivity. Trees. 26, 1159-1160.
Rocheta, M., Carvalho L., Viegas W., & Morais-Cecílio L. (2012).  Corky, a gypsy-like retrotransposon is differentially transcribed in Quercus suber tissues.. BMC research notes. 5, 432.
Fürstenau, B., Rosell G., Guerrero A., & Quero C. (2012).  Electrophysiological and behavioral responses of the black-banded oak borer, Coroebus florentinus, to conspecific and host-plant volatiles.. Journal of chemical ecology. 38(4), 378 - 388.
Jiménez, J., López-Vela D., Ruiz-Galea M., Celestino C., Toribio M., & Alegre J. (2012).  Embryogenic suspensions of adult cork oak: the first step towards mass propagation. Trees. 27(1), 13 - 23.
Álvarez-Fernández, R., & Ordás R-J. (2012).  Improved Genetic Transformation of Cork Oak (Quercus suber L.). (Loyola-Vargas, V. M., & Ochoa-Alejo N., Ed.).Plant Cell Culture Protocols SE - 28. 877, 385 - 399 LA -- English.
Pinho, P., Bergamini A., Carvalho P., Branquinho C., Stofer S., Scheidegger C., et al. (2012).  Lichen functional groups as ecological indicators of the effects of land-use in Mediterranean ecosystems. Ecological Indicators. 15, 36-42.
Marques, A. Velez, & Pereira H. (2012).  Lignin monomeric composition of corks from the barks of Betula pendula, Quercus suber and Quercus cerris determined by Py–GC–MS/FID. Journal of Analytical and Applied Pyrolysis. 1-7.
Acácio, V., & Holmgren M. (2012).  Pathways for resilience in Mediterranean cork oak land use systems. Annals of Forest Science.
Gómez-Aparicio, LORENA., Ibáñez B., Serrano M. S., De Vita P., Avila J. M., Pérez-Ramos I. M., et al. (2012).  Spatial patterns of soil pathogens in declining Mediterranean forests: implications for tree species regeneration.. The New phytologist. 194(4), 1014 - 1024.

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