Clara Gálvez-Roldán, Jean Paul Cerna-Vargas, José Juan Rodríguez-Herva, Tino Krell, Saray Santamaría-Hernando, Emilia López-Solanilla
Journal: Phytopathology 2023;113(3):390-399
PMID: 36399025
Nitrate metabolism plays an important role in bacterial physiology. During the interaction of plant-pathogenic bacteria with their hosts, bacteria face variable conditions with respect to nitrate availability. Perception mechanisms through the chemosensory pathway drive the entry and control the colonization of the plant host in phytopathogenic bacteria. In this work, the identification and characterization of the nitrate- and nitrite-sensing (NIT) domain-containing chemoreceptor of 3937 () allowed us to unveil the key role of nitrate sensing not only for the entry into the plant apoplast through wounds but also for infection success. We determined the specificity of this chemoreceptor to bind nitrate and nitrite, with a slight ligand preference for nitrate. Gene expression analysis showed that nitrate perception controls not only the expression of nitrate reductase genes involved in respiratory and assimilatory metabolic processes but also the expression of , , and , three well-known virulence determinants in .
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