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DataTítuloAutor(es)TipoAcesso
Nov-2009Adaptation to β-myrcene catabolism in Pseudomonas sp. M1: An expression proteomics analysisSantos, P. M.; Sá-Correia, IsabelArtigoAcesso aberto
13-Set-2015Genetic adaptive mechanisms mediating response and tolerance to acetic acid stress in the human pathogen Candida glabrata: role of the CgHaa1-dependent signaling pathwayBernardo, Ruben T.; Cunha, Diana V.; Wang, Can, et al.Resumo em ata de conferência Acesso aberto
2018HAA1 and PRS3 overexpression boosts yeast tolerance towards acetic acid improving xylose or glucose consumption: unravelling the underlying mechanismsCunha, Joana Filipa Torres Pinheiro; Costa, Carlos E.; Ferraz, L., et al.ArtigoAcesso restrito UMinho
2011Identification of candidate genes for yeast engineering to improve bioethanol production in very high gravity and lignocellulosic biomass industrial fermentationsPereira, Francisco B.; Guimarães, Pedro M. R.; Gomes, Daniel Gonçalves, et al.ArtigoAcesso aberto
Fev-2016Mitochondrial proteomics of the acetic acid – induced programmed cell death response in a highly tolerant Zygosaccharomyces bailii – derived hybrid strainGuerreiro, Joana F.; Marques, Maria Belém Sousa Sampaio; Soares, Renata, et al.ArtigoAcesso aberto
2019Molecular and physiological basis of Saccharomyces cerevisiae tolerance to adverse lignocellulose-based process conditionsCunha, Joana T.; Romaní, Aloia; Costa, Carlos E., et al.ArtigoAcesso aberto
13-Dez-2013Proteomic profiling of Burkholderia cenocepacia clonal isolates with different virulence potential retrieved from a cystic fibrosis patient during chronic lung infectionMadeira, Andreia; Dos Santos, Sandra C.; Santos, P. M., et al.ArtigoAcesso aberto
2017The CgHaa1-regulon mediates response and tolerance to acetic acid stress in the human pathogen Candida glabrataBernardo, Ruben T.; Cunha, Diana V.; Wang, Can, et al.ArtigoAcesso aberto