Search Results - "VINARDELL, Jose Maria"

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    The Rhizobial Type 3 Secretion System: The Dr. Jekyll and Mr. Hyde in the Rhizobium–Legume Symbiosis by Jiménez-Guerrero, Irene, Medina, Carlos, Vinardell, José María, Ollero, Francisco Javier, López-Baena, Francisco Javier

    “…Rhizobia are soil bacteria that can establish a symbiotic association with legumes. As a result, plant nodules are formed on the roots of the host plants where…”
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    Journal Article
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    Regulation of Protein Secretion Systems Mediated by Cyclic Diguanylate in Plant-Interacting Bacteria by López-Baena, Francisco Javier, Vinardell, Jose María, Medina, Carlos

    Published in Frontiers in microbiology (12-06-2019)
    “…The ubiquitous second messenger cyclic diguanylate (c-di-GMP) is involved in the regulation of different processes in bacteria. In phytopathogens,…”
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    Genome Sequence of the Soybean Symbiont Sinorhizobium fredii HH103 by Weidner, Stefan, Becker, Anke, Bonilla, Ildefonso, Jaenicke, Sebastian, Lloret, Javier, Margaret, Isabel, Pühler, Alfred, Ruiz-Sainz, José E, Schneiker-Bekel, Susanne, Szczepanowski, Rafael, Vinardell, José María, Zehner, Susanne, Göttfert, Michael

    Published in Journal of Bacteriology (01-03-2012)
    “…Sinorhizobium fredii HH103 is a fast-growing rhizobial strain that is able to nodulate legumes that develop determinate nodules, e.g., soybean, and legumes…”
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    Transcriptomic Studies of the Effect of nod Gene-Inducing Molecules in Rhizobia: Different Weapons, One Purpose by Jiménez-Guerrero, Irene, Acosta-Jurado, Sebastián, Del Cerro, Pablo, Navarro-Gómez, Pilar, López-Baena, Francisco Javier, Ollero, Francisco Javier, Vinardell, José María, Pérez-Montaño, Francisco

    Published in Genes (21-12-2017)
    “…Simultaneous quantification of transcripts of the whole bacterial genome allows the analysis of the global transcriptional response under changing conditions…”
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    Absence of Nops Secretion in Sinorhizobium fredii HH103 Increases GmPR1 Expression in Williams Soybean by López-Baena, Francisco Javier, Monreal, José Antonio, Pérez-Montaño, Francisco, Guasch-Vidal, Beatriz, Bellogín, Ramón A, Vinardell, José María, Ollero, Francisco Javier

    Published in Molecular plant-microbe interactions (01-11-2009)
    “…Sinorhizobium fredii HH103 secretes through the type III secretion system at least eight nodulation outer proteins (Nops), including the effector NopP. These…”
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    Glycine-rich proteins encoded by a nodule-specific gene family are implicated in different stages of symbiotic nodule development in Medicago spp by KEVEI, Zoltan, VINARDELL, Jose Maria, KISS, György B, KONDOROSI, Adam, KONDOROSI, Eva

    Published in Molecular plant-microbe interactions (01-09-2002)
    “…Four genes encoding small proteins with significantly high glycine content have been identified from root nodules of Medicago sativa. All of these proteins as…”
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    Regulatory Elements Located in the Upstream Region of the Rhizobium leguminosarum rosR Global Regulator Are Essential for Its Transcription and mRNA Stability by Rachwał, Kamila, Lipa, Paulina, Wojda, Iwona, Vinardell, José-María, Janczarek, Monika

    Published in Genes (15-12-2017)
    “…bv. is a soil bacterium capable of establishing a symbiotic relationship with clover ( spp.). Previously, the gene, encoding a global regulatory protein…”
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    Hanks-Type Serine/Threonine Protein Kinases and Phosphatases in Bacteria: Roles in Signaling and Adaptation to Various Environments by Janczarek, Monika, Vinardell, José-María, Lipa, Paulina, Karaś, Magdalena

    “…Reversible phosphorylation is a key mechanism that regulates many cellular processes in prokaryotes and eukaryotes. In prokaryotes, signal transduction…”
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    Rhizobial Exopolysaccharides: Genetic Regulation of Their Synthesis and Relevance in Symbiosis with Legumes by Acosta-Jurado, Sebastián, Fuentes-Romero, Francisco, Ruiz-Sainz, Jose-Enrique, Janczarek, Monika, Vinardell, José-María

    “…Rhizobia are soil proteobacteria able to engage in a nitrogen-fixing symbiotic interaction with legumes that involves the rhizobial infection of roots and the…”
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    The endosymbiosis-induced genes ENOD40 and CCS52a are involved in endoparasitic-nematode interactions in Medicago truncatula by FAVERY, Bruno, COMPLAINVILLE, Arnaud, VINARDELL, Jose Maria, LECOMTE, Philippe, VAUBERT, Danièle, MERGAERT, Peter, KONDOROSI, Adam, KONDOROSI, Eva, CRESPI, Martin, ABAD, Pierre

    Published in Molecular plant-microbe interactions (01-10-2002)
    “…Plants associate with a wide range of mutualistic and parasitic biotrophic organisms. Here, we investigated whether beneficial plant symbionts and biotrophic…”
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