Decouard B,
Bailly M,
Rigault M,
Marmagne A, Arkoun M,
Soulay F, Caïus J, Paysant-Le Roux C, Louahlia S, Jacquard C, Esmaeel Q,
Chardon F,
Masclaux-Daubresse C,
Dellagi A (2022).
Genotypic Variation of Nitrogen Use Efficiency and Amino Acid Metabolism in Barley.
Front Plant Sci, 12:807798.
PubMed
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DOI
Lee S,
Marmagne A, Park J, Fabien C, Yim Y, Kim SJ, Kim TH, Lim PO,
Masclaux-Daubresse C, Nam HG (2020).
Concurrent activation of OsAMT1;2 and OsGOGAT1 in rice leads to enhanced nitrogen use efficiency under nitrogen limitation.
Plant J, 103:7-20.
PubMed
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Chen Q, Shinozaki D,
Luo J, Pottier M,
Have M,
Marmagne A,
Reisdorf-Cren M,
Chardon F, Thomine S,
Yoshimoto K,
Masclaux-Daubresse C (2019).
Autophagy and Nutrients Management in Plants.
Cells, 8:.
PubMed
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DOI
Have M,
Luo J,
Tellier F, Balliau T,
Cueff G,
Chardon F, Zivy M,
Rajjou L,
Cacas JL,
Masclaux-Daubresse C (2019).
Proteomic and lipidomic analyses of the Arabidopsis atg5 autophagy mutant reveal major changes in endoplasmic reticulum and peroxisome metabolisms and in lipid composition.
New Phytol, 223:1461-1477.
PubMed
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DOI
Avin-Wittenberg T, Baluska F, Bozhkov PV, Elander PH, Fernie AR, Galili G, Hassan A, Hofius D, Isono E, Le Bars R,
Masclaux-Daubresse C, Minina EA, Peled-Zehavi H, Coll NS, Sandalio LM, Satiat-Jeunemaitre B, Sirko A, Testillano PS, Batoko H (2018).
Autophagy-related approaches for improving nutrient use efficiency and crop yield protection.
J Exp Bot, 69:1335-1353.
PubMed
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Have M, Balliau T,
Cottyn B, Derond E,
Cueff G,
Soulay F,
Lornac A, Reichman P, Dissmeyer N, Avice JC, Gallois P,
Rajjou L, Zivy M,
Masclaux-Daubresse C (2018).
Increases in activity of proteasome and papain-like cysteine protease in Arabidopsis autophagy mutants: back-up compensatory effect or cell-death promoting effect?.
J Exp Bot, 69:1369-1385.
PubMed
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James M, Poret M,
Masclaux-Daubresse C,
Marmagne A, Coquet L, Jouenne T, Chan P, Trouverie J, Etienne P (2018).
SAG12, a Major Cysteine Protease Involved in Nitrogen Allocation during Senescence for Seed Production in Arabidopsis thaliana.
Plant Cell Physiol, 59:2052-2063.
PubMed
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DOI
Moison M,
Marmagne A,
Dinant S,
Soulay F,
Azzopardi M, Lothier J,
Citerne S,
Morin H,
Legay N,
Chardon F, Avice JC,
Reisdorf-Cren M,
Masclaux-Daubresse C (2018).
Three cytosolic glutamine synthetase isoforms localized in different-order veins act together for N remobilization and seed filling in Arabidopsis.
J Exp Bot, 69:4379-4393.
PubMed
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DOI
Gaufichon L,
Marmagne A,
Belcram K, Yoneyama T, Sakakibara Y, Hase T,
Grandjean O,
Clément G,
Citerne S,
Boutet-Mercey S,
Masclaux-Daubresse C,
Chardon F,
Soulay F, Xu X, Trassaert M, Shakiebaei M, Najihi A,
Suzuki A (2017).
ASN1-encoded asparagine synthetase in floral organs contributes to nitrogen filling in Arabidopsis seeds.
Plant J, 91:371-393.
PubMed
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DOI
Gironde A, Etienne P, Trouverie J, Bouchereau A, Le Caherec F, Leport L, Orsel M, Niogret MF, Nesi N, Carole D,
Soulay F,
Masclaux-Daubresse C, Avice JC (2015).
The contrasting N management of two oilseed rape genotypes reveals the mechanisms of proteolysis associated with leaf N remobilization and the respective contributions of leaves and stems to N storage and remobilization during seed filling.
BMC Plant Biol, 15:59.
PubMed
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DOI
Masclaux-Daubresse C,
Clément G,
Anne P,
Routaboul JM,
Guiboileau A,
Soulay F, Shirasu K,
Yoshimoto K (2014).
Stitching together the Multiple Dimensions of Autophagy Using Metabolomics and Transcriptomics Reveals Impacts on Metabolism, Development, and Plant Responses to the Environment in Arabidopsis.
Plant Cell, 26:1857-1877.
PubMed
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DOI
Gaufichon L,
Masclaux-Daubresse C, Tcherkez G,
Reisdorf-Cren M, Sakakibara Y, Hase T,
Clément G, Avice JC,
Grandjean O,
Marmagne A,
Boutet-Mercey S,
Azzopardi M,
Soulay F,
Suzuki A (2013).
Arabidopsis thaliana ASN2 encoding asparagine synthetase is involved in the control of nitrogen assimilation and export during vegetative growth.
Plant Cell Environ, 36:328-342.
PubMed
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DOI
Arkoun M, Jannin L, Laine P, Etienne P,
Masclaux-Daubresse C,
Citerne S, Garnica M, Garcia-Mina JM, Yvin JC, Ourry A (2012).
A physiological and molecular study of the effects of nickel deficiency and phenylphosphorodiamidate (PPD) application on urea metabolism in oilseed rape (Brassica napus L.).
Plant and Soil, 362:79-92.
PubMed
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DOI