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Journal Article (56)
21.
Journal Article
146 (4), pp. 2020 - 2035 (2008)
Systemic signaling of the plant nitrogen status triggers specific transcriptome responses depending on the nitrogen source in Medicago truncatula. Plant Physiology 22.
Journal Article
53 (6), pp. 973 - 987 (2008)
Integrative functional genomics of salt acclimatization in the model legume Lotus japonicus. Plant Journal 23.
Journal Article
3 (8), pp. 598 - 600 (2008)
Metabolome-ionome-biomass interactions: What can we learn about salt stress by multiparallel phenotyping? Plant Signaling & Behavior 24.
Journal Article
67 (6), pp. 567 - 580 (2008)
Gene expression profiling of M-truncatula transcription factors identifies putative regulators of grain legume seed filling. Plant Molecular Biology 25.
Journal Article
144 (2), pp. 752 - 767 (2007)
Phosphorus stress in common bean: Root transcript and metabolic responses. Plant Physiology 26.
Journal Article
30 (1), pp. 85 - 112 (2007)
Genome-wide reprogramming of metabolism and regulatory networks of Arabidopsis in response to phosphorus. Plant Cell and Environment 27.
Journal Article
33 (2), pp. 153 - 163 (2006)
Over-expression of the rice OsAMT1-1 gene increases ammonium uptake and content, but impairs growth and development of plants under high ammonium nutrition. Functional Plant Biology 28.
Journal Article
580 (16), pp. 3931 - 3936 (2006)
Mechanisms of ammonium transport, accumulation, and retention in ooyctes and yeast cells expressing Arabidopsis AtAMT1; 1. FEBS Letters 29.
Journal Article
139 (1), pp. 5 - 17 (2005)
Genome-wide identification and testing of superior reference genes for transcript normalization in Arabidopsis. Plant Physiology 30.
Journal Article
137 (4), pp. 1302 - 1318 (2005)
Lotus japonicus metabolic profiling. Development of gas chromatography-mass spectrometry resources for the study of plant-microbe interactions. Plant Physiology 31.
Journal Article
17 (5), pp. 1625 - 1636 (2005)
The sulfate transporter SST1 is crucial for symbiotic nitrogen fixation in Lotus japonicus root nodules. Plant Cell 32.
Journal Article
139 (2), pp. 949 - 959 (2005)
Repressor- and activator-type ethylene response factors functioning in jasmonate signaling and disease resistance identified via a genome-wide screen of Arabidopsis transcription factor gene expression. Plant Physiology 33.
Journal Article
15 (6), pp. 531 - 535 (2005)
Symbolic leghemoglobins are crucial for nitrogen fixation in legume root nodules but not for general plant growth and development. Current Biology 34.
Journal Article
38 (2), pp. 366 - 379 (2004)
Real-time RT-PCR profiling of over 1400 Arabidopsis transcription factors: unprecedented sensitivity reveals novel root- and shoot-specific genes. Plant Journal 35.
Journal Article
134 (4), pp. 1763 - 1774 (2004)
Characterization of three functional high-affinity ammonium transporters in Lotus japonicus with differential transcriptional regulation spatial expression. Plant Physiology 36.
Journal Article
17 (7), pp. 789 - 797 (2004)
Lotus japonicus LjKUP is induced late during nodule development and encodes a potassium transporter of the plasma membrane. Molecular Plant-Microbe Interactions 37.
Journal Article
17 (12), pp. 1283 - 1293 (2004)
Induction and spatial organization of polyamine biosynthesis during nodule development in Lotus japonicus. Molecular Plant-Microbe Interactions 38.
Journal Article
279 (33), pp. 34624 - 34630 (2004)
The galactolipid digalactosyldiacylglycerol accumulates in the peribacteroid membrane of nitrogen-fixing nodules of soybean and Lotus. Journal of Biological Chemistry 39.
Journal Article
136 (1), pp. 2483 - 2499 (2004)
Genome-wide reprogramming of primary and secondary metabolism, protein synthesis, cellular growth processes, and the regulatory infrastructure of Arabidopsis in response to nitrogen. Plant Physiology 40.
Journal Article
134 (1), pp. 182 - 193 (2004)
Molecular and cell biology of a family of voltage-dependent anion channel porins in Lotus japonicus. Plant Physiology