Mitochondria-driven changes in leaf NAD status exert a crucial influence on the control of nitrate assimilation and the integration of carbon and nitrogen metabolism

A - Papers appearing in refereed journals

Dutilleul, C., Lelarge, C., Prioul, J-L., De Paepe, R., Foyer, C. H. and Noctor, G. 2005. Mitochondria-driven changes in leaf NAD status exert a crucial influence on the control of nitrate assimilation and the integration of carbon and nitrogen metabolism. Plant Physiology. 139, pp. 64-78. https://doi.org/10.1104/pp.105.066399

AuthorsDutilleul, C., Lelarge, C., Prioul, J-L., De Paepe, R., Foyer, C. H. and Noctor, G.
Year of Publication2005
JournalPlant Physiology
Journal citation139, pp. 64-78
Digital Object Identifier (DOI)https://doi.org/10.1104/pp.105.066399
Open accessPublished as non-open access
Funder project or code502
521
Redox signalling and oxidative-stress-mediated control of plant growth and development

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