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Plant Signaling & Behavior|December 15, 2010
The multiple plant response to high ammonium conditions: the Lotus japonicus AMT1; 3 protein acts as a putative transceptorAlessandra Rogato, Enrica D'Apuzzo, Maurizio Chiurazzi
Frontiers in Plant Science|November 28, 2022
LjNRT2.3 plays a hierarchical role in the control of high affinity transport system for root nitrate acquisition in Lotus japonicusAlessandra Rogato, Vladimir Totev Valkov, Maurizio Chiurazzi
Functional Plant Biology : FPB|July 22, 2020
Improved procedures for in vitro regeneration and for phenotypic analysis in the model legume Lotus japonicusAni Barbulova, Enrica D'Apuzzo, Alessandra Rogato, et al.
The New Phytologist|June 17, 2020
The functional characterization of LjNRT2.4 indicates a novel, positive role of nitrate for an efficient nodule N2 -fixation activityVladimir Totev Valkov, Stefano Sol, Alessandra Rogato, et al.
Molecular Plant-Microbe Interactions : MPMI|August 29, 2007
Differential effects of combined N sources on early steps of the Nod factor-dependent transduction pathway in Lotus japonicusAni Barbulova, Alessandra Rogato, Enrica D'Apuzzo, et al.
Molecular Plant-Microbe Interactions : MPMI|October 20, 2011
Photorespiratory metabolism and nodule function: behavior of Lotus japonicus mutants deficient in plastid glutamine synthetaseMargarita García-Calderón, Maurizio Chiurazzi, M Rosario Espuny, et al.
Microbiological Research|December 17, 2022
Use of halotolerant Bacillus amyloliquefaciens RHF6 as a bio-based strategy for alleviating salinity stress in Lotus japonicus cv GifuStefany Castaldi, Vladimir Totev Valkov, Ezio Ricca, et al.
International Journal of Molecular Sciences|August 27, 2021
The Lotus japonicus AFB6 Gene Is Involved in the Auxin Dependent Root Developmental ProgramAlessandra Rogato, Vladimir Totev Valkov, Marcin Nadzieja, et al.
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