Publications of C. Gutjahr
All genres
Journal Article (46)
1.
Journal Article
Stabl, G., , , , Zeng, T., , , Gutjahr, C. & Untargeted metabolomics reveals novel metabolites in Lotus japonicus roots during arbuscular mycorrhiza symbiosis. New Phytologist 246, 1256–1275 (2025).
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Varshney, K., , , , & Gutjahr, C. Ethylene promotes SMAX1 accumulation to inhibit arbuscular mycorrhiza symbiosis. Nature Communications 16, (2025).
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Hobecker, K., , , , , , , , Gutjahr, C., & Annexin- and calcium-regulated priming of legume root cells for endosymbiotic infection. Nature Communications 15, (2024).
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Gutjahr, C., & Mapping parental DMRs predictive of local and distal methylome remodeling in epigenetic F1 hybrids. Life science alliance 7, (2024).
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John, S., Apelt, F., , Acosta, I., Bents, D., , Fichtner, F., Gutjahr, C., Mueller-Roeber, B. & The Transcription factor HSFA7b controls thermomemory at the shoot apical meristem by regulating ethylene biosynthesis and signaling in Arabidopsis. Plant Communications 5, (2024).
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Gutjahr, C. & Arbuscular mycorrhizal fungi heterokaryons have two nuclear populations with distinct roles in host–plant interactions. Nature Microbiology 8, 2142–2153 (2023).
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Varshney, K., , Gutjahr, C. & C-terminal conformational changes in SCF-D3/MAX2 ubiquitin ligase are required for KAI2-mediated signaling. New Phytologist 239, 2067–2075 (2023).
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Gutjahr, C. & KAI2 regulates seedling development by mediating light-induced remodelling of auxin transport. New Phytologist 235, 126–140 (2022).
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Gutjahr, C., & KARRIKIN UP-REGULATED F-BOX 1 (KUF1) imposes negative feedback regulation of karrikin and KAI2 ligand metabolism in Arabidopsis thaliana. Proceedings of the National Academy of Sciences of the United States of America 119, (2022).
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Gutjahr, C. & KARRIKIN INSENSITIVE2 regulates leaf development, root system architecture and arbuscular-mycorrhizal symbiosis in Brachypodium distachyon. The Plant Journal 109, 1559–1574 (2022).
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Gutjahr, C., & Structural and functional analyses explain Pea KAI2 receptor diversity and reveal stereoselective catalysis during signal perception. COMMUNICATIONS BIOLOGY 5, (2022).
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Gutjahr, C. PHOSPHATE STARVATION RESPONSE transcription factors enable arbuscular mycorrhiza symbiosis. Nature Communications 13, (2022).
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Gutjahr, C. KAI2 promotes Arabidopsis root hair elongation at low external phosphate by controlling local accumulation of AUX1 and PIN2. Current Biology 32, 228–236 (2022).
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Gutjahr, C., & Acidovorax pan-genome reveals specific functional traits for plant beneficial and pathogenic plant-associations. Microbial Genomics 7, (2021).
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Gutjahr, C. & Quantitative Mapping of Flavor and Pharmacologically Active Compounds in European Licorice Roots (Glycyrrhiza glabra L.) in Response to Growth Conditions and Arbuscular Mycorrhiza Symbiosis. Journal of Agricultural and Food Chemistry 69, 13173–13189 (2021).
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Gutjahr, C. MAX2-independent transcriptional responses to rac-GR24 in Lotus japonicus roots. Plant Signaling & Behavior 16, (2021).
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Gutjahr, C. Lotus japonicus karrikin receptors display divergent ligand-binding specificities and organ-dependent redundancy. PLoS Genetics 16, (2020).
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Gutjahr, C. The karrikin signaling regulator SMAX1 controls Lotus japonicus root and root hair development by suppressing ethylene biosynthesis. Proceedings of the National Academy of Sciences of the United States of America 117, 21757–21765 (2020).
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Gutjahr, C., , & Extensive signal integration by the phytohormone protein network. Nature 583, 271–276 (2020).
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Gutjahr, C. A Flexible, Low-Cost Hydroponic Co-Cultivation System for Studying Arbuscular Mycorrhiza Symbiosis. Frontiers in Plant Science 11, (2020).
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