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Natalia Requena
Natalia Requena
Unknown affiliation
Verified email at kit.edu
Title
Cited by
Cited by
Year
Genome of an arbuscular mycorrhizal fungus provides insight into the oldest plant symbiosis
E Tisserant, M Malbreil, A Kuo, A Kohler, A Symeonidi, R Balestrini, ...
Proceedings of the National Academy of Sciences 110 (50), 20117-20122, 2013
8432013
Management of indigenous plant-microbe symbioses aids restoration of desertified ecosystems
N Requena, E Perez-Solis, C Azcón-Aguilar, P Jeffries, JM Barea
Applied and environmental microbiology 67 (2), 495-498, 2001
6932001
A secreted fungal effector of Glomus intraradices promotes symbiotic biotrophy
S Kloppholz, H Kuhn, N Requena
Current Biology 21 (14), 1204-1209, 2011
6032011
A Versatile Monosaccharide Transporter That Operates in the Arbuscular Mycorrhizal Fungus Glomus sp Is Crucial for the Symbiotic Relationship with Plants
N Helber, K Wippel, N Sauer, S Schaarschmidt, B Hause, N Requena
The Plant Cell 23 (10), 3812-3823, 2011
4422011
The transcriptome of the arbuscular mycorrhizal fungus Glomus intraradices (DAOM 197198) reveals functional tradeoffs in an obligate symbiont
E Tisserant, A Kohler, P Dozolme‐Seddas, R Balestrini, K Benabdellah, ...
New phytologist 193 (3), 755-769, 2012
4342012
Interactions between plant-growth-promoting rhizobacteria (PGPR), arbuscular mycorrhizal fungi and Rhizobium spp. in the rhizosphere of Anthyllis cytisoides, a model legume for …
N Requena, I Jimenez, M Toro, JM Barea
The New Phytologist 136 (4), 667-677, 1997
3641997
Assessment of natural mycorrhizal potential in a desertified semiarid ecosystem
N Requena, P Jeffries, JM Barea
Applied and environmental microbiology 62 (3), 842-847, 1996
2551996
Plant signals and fungal perception during arbuscular mycorrhiza establishment
N Requena, E Serrano, A Ocón, M Breuninger
Phytochemistry 68 (1), 33-40, 2007
2112007
Arbuscular mycorrhiza Symbiosis Induces a Major Transcriptional Reprogramming of the Potato SWEET Sugar Transporter Family
J Manck-Götzenberger, N Requena
Frontiers in plant science 7, 487, 2016
2102016
At least five rhizobial species nodulate Phaseolus vulgaris in a Spanish soil
JA Herrera-Cervera, J Caballero-Mellado, G Laguerre, HV Tichy, ...
FEMS Microbiology Ecology 30 (1), 87-97, 1999
2091999
Enzymatic evidence for the key role of arginine in nitrogen translocation by arbuscular mycorrhizal fungi
C Cruz, H Egsgaard, C Trujillo, P Ambus, N Requena, MA Martins-Loução, ...
Plant physiology 144 (2), 782-792, 2007
1972007
Dating in the dark: how roots respond to fungal signals to establish arbuscular mycorrhizal symbiosis
P Bonfante, N Requena
Current opinion in plant biology 14 (4), 451-457, 2011
1842011
Membrane steroid‐binding protein 1 induced by a diffusible fungal signal is critical for mycorrhization in Medicago truncatula
H Kuhn, H Küster, N Requena
New Phytologist 185 (3), 716-733, 2010
1422010
The long hard road to a completed Glomus intraradices genome
F Martin, V Gianinazzi-Pearson, M Hijri, P Lammers, N Requena, ...
New Phytologist, 747-750, 2008
1342008
Symbiotic Status, Phosphate, and Sucrose Regulate the Expression of Two Plasma Membrane H+-ATPase Genes from the Mycorrhizal Fungus Glomus mosseae
N Requena, M Breuninger, P Franken, A Ocón
Plant physiology 132 (3), 1540-1549, 2003
1292003
Trehalose turnover during abiotic stress in arbuscular mycorrhizal fungi
A Ocón, R Hampp, N Requena
New Phytologist 174 (4), 879-891, 2007
1252007
Different nitrogen sources modulate activity but not expression of glutamine synthetase in arbuscular mycorrhizal fungi
M Breuninger, CG Trujillo, E Serrano, R Fischer, N Requena
Fungal Genetics and Biology 41 (5), 542-552, 2004
1152004
The MAPKK kinase SteC regulates conidiophore morphology and is essential for heterokaryon formation and sexual development in the homothallic fungus Aspergillus nidulans
H Wei, N Requena, R Fischer
Molecular Microbiology 47 (6), 1577-1588, 2003
1142003
Expression of the fluorescence markers DsRed and GFP fused to a nuclear localization signal in the arbuscular mycorrhizal fungus Glomus intraradices
N Helber, N Requena
New Phytologist 177 (2), 537-548, 2008
1072008
Symbiotic fungi control plant root cortex development through the novel GRAS transcription factor MIG1
C Heck, H Kuhn, S Heidt, S Walter, N Rieger, N Requena
Current Biology 26 (20), 2770-2778, 2016
1062016
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