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BMC Plant Biology|September 1, 2019
Disruption of the Lotus japonicus transporter LjNPF2.9 increases shoot biomass and nitrate content without affecting symbiotic performancesStefano Sol, Vladimir Totev Valkov, Alessandra Rogato, et al.
Plant Physiology|September 22, 2017
The Nitrate Transporter Family Protein LjNPF8.6 Controls the N-Fixing Nodule ActivityVladimir Totev Valkov, Alessandra Rogato, Ludovico Martins Alves, et al.
Plant Molecular Biology|September 11, 2008
Tissue-specific down-regulation of LjAMT1;1 compromises nodule function and enhances nodulation in Lotus japonicusAlessandra Rogato, Enrica D'Apuzzo, Ani Barbulova, et al.
Plant Physiology|August 7, 2010
Characterization of a developmental root response caused by external ammonium supply in Lotus japonicusAlessandra Rogato, Enrica D'Apuzzo, Ani Barbulova, et al.
Plant Physiology and Biochemistry : PPB|September 28, 2024
The Lotus japonicus NPF4.6 gene, encoding for a dual nitrate and ABA transporter, plays a role in the lateral root elongation process and is not involved in the N2-fixing nodule developmentLudovico Martin Alves, Vladimir Totev Valkov, Ylenia Vittozzi, et al.
The New Phytologist|December 12, 2023
The tonoplast localized protein PtNPF1 participates in the regulation of nitrogen response in diatomsAnna Santin, Monia Teresa Russo, Laura Morales de Los Ríos, et al.
Frontiers in Plant Science|August 10, 2017
Ectopic Expression of PII Induces Stomatal Closure in Lotus japonicusAurora Parlati, Vladimir T Valkov, Enrica D'Apuzzo, et al.
International Journal of Molecular Sciences|September 12, 2018
The Hydrophobin HYTLO1 Secreted by the Biocontrol FungusRoberto Moscatiello, Simone Sello, Michelina Ruocco, et al.
Molecular Plant-Microbe Interactions : MPMI|November 13, 2014
PII Overexpression in Lotus japonicus Affects Nodule Activity in Permissive Low-Nitrogen Conditions and Increases Nodule Numbers in High Nitrogen Treated PlantsEnrica D'Apuzzo, Vladimir Totev Valkov, Aurora Parlati, et al.
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