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Marine Environmental Research|March 29, 2020
Nutrition of the seagrass Cymodocea nodosa: Pulses of ammonium but not of phosphate are crucial to sustain the species growthAna Alexandre, Rui SantosFEMS Microbiology Ecology|November 16, 2010
Most heat-tolerant rhizobia show high induction of major chaperone genes upon stressAna Alexandre, Solange OliveiraBiology|February 26, 2025
Beneficial Soil Bacteria: Many Recipes to Promote Plant Growth and ProtectionAna Alexandre, Kathrin WippelJournal of Phycology|March 17, 2020
High Nitrogen and Phosphorous Acquisition by Belowground Parts of Caulerpa prolifera (Chlorophyta) Contribute to the Species' Rapid Spread in Ria Formosa Lagoon, Southern PortugalAna Alexandre, Rui SantosCritical 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 OliveiraResearch in Microbiology|August 3, 2016
Global transcriptional response to salt shock of the plant microsymbiont Mesorhizobium loti MAFF303099Marta Laranjo, Ana Alexandre, Solange OliveiraFrontiers in Plant Science|June 29, 2018
Light Is More Important Than Nutrient Ratios of Fertilization for Cymodocea nodosa Seedling DevelopmentAna Alexandre, João Silva, Rui SantosMicrobiological 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 OliveiraPageof 3