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Journal of Plant Physiology|February 9, 2010
Boron deficiency results in induction of pathogenesis-related proteins from the PR-10 family during the legume-rhizobia interactionMaría Reguera, Ildefonso Bonilla, Luis BolañosJournal of Plant Physiology|January 14, 2004
Recovery of development and functionality of nodules and plant growth in salt-stressed Pisum sativum--Rhizobium leguminosarum symbiosis by boron and calciumLuis Bolaños, Abdelaziz El-Hamdaoui, Ildefonso BonillaPlant Physiology and Biochemistry : PPB|March 5, 2014
Boron deficiency results in early repression of a cytokinin receptor gene and abnormal cell differentiation in the apical root meristem of Arabidopsis thalianaIsidro Abreu, Laura Poza, Ildefonso Bonilla, et al.Phytochemistry|August 6, 2014
The interaction of boron with glycolipids is required to increase tolerance to stresses in Anabaena PCC 7120Isidro Abreu, Isabel Orús, Luis Bolaños, et al.Plant Physiology and Biochemistry : PPB|February 8, 2005
Why boron?Luis Bolaños, Krystyna Lukaszewski, Ildefonso Bonilla, et al.Plant Signaling & Behavior|October 21, 2009
Boron dependent membrane glycoproteins in symbiosome development and nodule organogenesis: A model for a common role of boron in organogenesisMiguel Redondo-Nieto, María Reguera, Ildefonso Bonilla, et al.Physiologia Plantarum|July 18, 2002
Boron requirement in the Discaria trinervis (Rhamnaceae) and Frankia symbiotic relationship. Its essentiality for Frankia BCU110501 growth and nitrogen fixationLuis Bolaños, Miguel Redondo-Nieto, Ildefonso Bonilla, et al.Journal of Plant Physiology|November 13, 2019
Altered plant organogenesis under boron deficiency is associated with changes in high-mannose N-glycan profile that also occur in animalsMaría Reguera, Isidro Abreu, Carlos Sentís, et al.Plant, Cell & Environment|September 28, 2007
Developmentally regulated membrane glycoproteins sharing antigenicity with rhamnogalacturonan II are not detected in nodulated boron deficient Pisum sativumMiguel Redondo-Nieto, Luis Pulido, María Reguera, et al.Plant, Cell & Environment|July 20, 2010
Borate promotes the formation of a complex between legume AGP-extensin and Rhamnogalacturonan II and enhances production of Rhizobium capsular polysaccharide during infection thread development in Pisum sativum symbiotic root nodulesMaría Reguera, Isidro Abreu, Nicholas J Brewin, et al.Pageof 3