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Pilar Navarro Gomez
Pilar Navarro Gomez
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Year
A transcriptomic analysis of the effect of genistein on Sinorhizobium fredii HH103 reveals novel rhizobial genes putatively involved in symbiosis
F Pérez-Montaño, I Jiménez-Guerrero, S Acosta-Jurado, ...
Scientific reports 6 (1), 1-12, 2016
392016
Transcriptomic studies of the effect of nod gene-inducing molecules in rhizobia: Different weapons, one purpose
I Jiménez-Guerrero, S Acosta-Jurado, P Del Cerro, P Navarro-Gómez, ...
Genes 9 (1), 1, 2018
312018
Exopolysaccharide Production by Sinorhizobium fredii HH103 Is Repressed by Genistein in a NodD1-Dependent Manner
S Acosta-Jurado, P Navarro-Gómez, PS Murdoch, JC Crespo-Rivas, S Jie, ...
PLoS One 11 (8), e0160499, 2016
242016
Sinorhizobium fredii HH103 nolR and nodD2 mutants gain capacity for infection thread invasion of Lotus japonicus Gifu and Lotus burttii
S Acosta‐Jurado, DN Rodríguez‐Navarro, Y Kawaharada, ...
Environmental microbiology 21 (5), 1718-1739, 2019
222019
Sinorhizobium fredii Strains HH103 and NGR234 Form Nitrogen Fixing Nodules With Diverse Wild Soybeans (Glycine soja) From Central China but Are Ineffective …
F Temprano-Vera, DN Rodríguez-Navarro, S Acosta-Jurado, X Perret, ...
Frontiers in microbiology 9, 2843, 2018
202018
The Sinorhizobium fredii HH103 MucR1 global regulator is connected with the nod regulon and is required for efficient symbiosis with Lotus burttii and Glycine max cv. Williams
S Acosta-Jurado, C Alias-Villegas, P Navarro-Gomez, S Zehner, ...
Molecular Plant-Microbe Interactions 29 (9), 700-712, 2016
192016
Sinorhizobium fredii HH103 syrM inactivation affects the expression of a large number of genes, impairs nodulation with soybean and extends the host‐range to Lotus japonicus
S Acosta‐Jurado, C Alias‐Villegas, P Navarro‐Gómez, A Almozara, ...
Environmental microbiology 22 (3), 1104-1124, 2020
152020
Sinorhizobium fredii HH103 RirA Is Required for Oxidative Stress Resistance and Efficient Symbiosis with Soybean
JC Crespo-Rivas, P Navarro-Gómez, C Alias-Villegas, J Shi, T Zhen, ...
International journal of molecular sciences 20 (3), 787, 2019
152019
The Sinorhizobium (Ensifer) fredii HH103 rkp-2 region is involved in the biosynthesis of lipopolysaccharide and exopolysaccharide but not in K-antigen polysaccharide production
S Acosta-Jurado, P Navarro-Gómez, JC Crespo-Rivas, C Medina, ...
Plant and Soil 417 (1), 415-431, 2017
92017
The nodD1 Gene of Sinorhizobium fredii HH103 Restores Nodulation Capacity on Bean in a Rhizobium tropici CIAT 899 nodD1/nodD2 Mutant, but the Secondary Symbiotic Regulators …
F Fuentes-Romero, P Navarro-Gómez, P Ayala-García, I Moyano-Bravo, ...
Microorganisms 10 (1), 139, 2022
52022
The underlying process of early ecological and genetic differentiation in a facultative mutualistic Sinorhizobium meliloti population
N Toro, PJ Villadas, MD Molina-Sánchez, P Navarro-Gómez, JM Vinardell, ...
Scientific reports 7 (1), 1-12, 2017
52017
Surface Motility Regulation of Sinorhizobium fredii HH103 by Plant Flavonoids and the NodD1, TtsI, NolR, and MucR1 Symbiotic Bacterial Regulators
C Alías-Villegas, F Fuentes-Romero, V Cuéllar, P Navarro-Gómez, ...
International journal of molecular sciences 23 (14), 7698, 2022
12022
Identificación y estudio de genes simbióticos de Sinorhizobium fredii HH103 previamente no caracterizados
P Navarro Gómez
12020
The Sinorhizobium fredii HH103 double-edged sword
S Acosta-Jurado, C Alías-Villegas, P Navarro-Gómez, JMV Gónzalez
Biosaia: Revista de los másteres de Biotecnología Sanitaria y Biotecnología …, 2021
2021
Sinorhizobium fredii HH103 surface motility is induced by symbiotic conditions
JM Vinardell, C Alias-Villegas, P Navarro-Gómez, I Jiménez-Guerrero, ...
2020
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Articles 1–15