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FEMS Microbiology Ecology|November 16, 2010
Most heat-tolerant rhizobia show high induction of major chaperone genes upon stressAna Alexandre, Solange OliveiraCritical Reviews in Microbiology|July 25, 2012
Response to temperature stress in rhizobiaAna Alexandre, Solange OliveiraMicrobial Ecology|January 4, 2006
Natural populations of chickpea rhizobia evaluated by antibiotic resistance profiles and molecular methodsAna Alexandre, Marta Laranjo, Solange OliveiraMicrobiological Research|February 28, 2012
Transcriptional analysis of major chaperone genes in salt-tolerant and salt-sensitive mesorhizobiaClarisse Brígido, Ana Alexandre, Solange OliveiraMicrobiological Research|October 26, 2013
Legume growth-promoting rhizobia: an overview on the Mesorhizobium genusMarta Laranjo, Ana Alexandre, Solange OliveiraDNA Research : an International Journal for Rapid Publication of Reports on Genes and Genomes|November 27, 2013
Global transcriptional response to heat shock of the legume symbiont Mesorhizobium loti MAFF303099 comprises extensive gene downregulationAna Alexandre, Marta Laranjo, Solange OliveiraApplied Microbiology and Biotechnology|June 17, 2014
Genes commonly involved in acid tolerance are not overexpressed in the plant microsymbiont Mesorhizobium loti MAFF303099 upon acidic shockMarta Laranjo, Ana Alexandre, Solange OliveiraResearch in Microbiology|August 3, 2016
Global transcriptional response to salt shock of the plant microsymbiont Mesorhizobium loti MAFF303099Marta Laranjo, Ana Alexandre, Solange OliveiraAIMS Microbiology|July 12, 2019
Can stress response genes be used to improve the symbiotic performance of rhizobia?José Rodrigo da-Silva, Ana Alexandre, Clarisse Brígido, et al.Microbial Ecology|May 27, 2009
Survey of Chickpea Rhizobia diversity in Portugal reveals the predominance of species distinct from Mesorhizobium ciceri and Mesorhizobium mediterraneumAna Alexandre, Clarisse Brígido, Marta Laranjo, et al.Pageof 11