Publikationen von C. Gutjahr
Alle Typen
Zeitschriftenartikel (48)
41.
Zeitschriftenartikel
182 (4), S. 829 - 837 (2009)
Glomus intraradices induces changes in root system architecture of rice independently of common symbiosis signaling. New Phytologist 42.
Zeitschriftenartikel
183 (1), S. 53 - 61 (2009)
Presymbiotic factors released by the arbuscular mycorrhizal fungus Gigaspora margarita induce starch accumulation in Lotus japonicus roots. New Phytologist 43.
Zeitschriftenartikel
20 (11), S. 2989 - 3005 (2008)
Arbuscular Mycorrhiza-Specific Signaling in Rice Transcends the Common Symbiosis Signaling Pathway. The Plant Cell 44.
Zeitschriftenartikel
49 (11), S. 1659 - 1671 (2008)
Divergence of Evolutionary Ways Among Common sym Genes: CASTOR and CCaMK Show Functional Conservation Between Two Symbiosis Systems and Constitute the Root of a Common Signaling Pathway. Plant and Cell Physiology 45.
Zeitschriftenartikel
44 (1), S. 163 - 170 (2007)
Changes in soil chemistry associated with the establishment of forest gardens on eroded, acidified grassland soils in Sri Lanka. Biology and Fertility of Soils 46.
Zeitschriftenartikel
9 (1), S. 32 - 40 (2007)
GER1, a GDSL motif-encoding gene from rice is a novel early light- and jasmonate-induced gene. Plant Biology 47.
Zeitschriftenartikel
227 (2-4), S. 211 - 222 (2006)
Acrylamide inhibits gravitropism and affects microtubules in rice coleoptiles. Protoplasma 48.
Zeitschriftenartikel
222 (4), S. 575 - 585 (2005)
Cholodny-Went revisited: a role for jasmonate in gravitropism of rice coleoptiles. Planta Buchkapitel (5)
49.
Buchkapitel
Controlled Assays for Phenotyping the Effects of Strigolactone-Like Molecules on Arbuscular Mycorrhiza Development. In: STRIGOLACTONES: Methods and Protocols, S. 157 - 177 (2021)
50.
Buchkapitel
Bioassays for the Effects of Strigolactones and Other Small Molecules on Root and Root Hair Development. In: STRIGOLACTONES: Methods and Protocols, S. 129 - 142 (2021)
51.
Buchkapitel
Role of phytohormones in arbuscular mycorrhiza development. In: The Model Legume Medicago truncatula, S. 7.1.2 (Hg. de Bruijn, F.). Wiley (2019)
52.
Buchkapitel
The Role of Strigolactones in Plant–Microbe Interactions. In: Strigolactones - Biology and Applications, S. 121 - 142 (Hg. Koltai, H.; Prandi, C.). Springer, Cham (2019)
53.
Buchkapitel
The Molecular Components of Nutrient Exchange in Arbuscular Mycorrhizal Interactions. In: Mycorrhizae: Sustainable Agriculture and Forestry, S. 37 - 59 (Hg. Siddiqui, Z.A.; Akhtar, M.S.; Futai, K.). Springer, Dordrecht (2008)
Editorial (6)
54.
Editorial
387 (6737), S. 927 - 928 (2025)
Outsmarted by fungi. Science 55.
Editorial
34 (17), S. R804 - R806 (2024)
Caroline Gutjahr. Current Biology 56.
Editorial
7, 130 (2019)
Editorial: Rhizosphere Functioning and Structural Development as Complex Interplay Between Plants, Microorganisms and Soil Minerals. Frontiers in Environmental Science 57.
Editorial
28 (24), S. R1400 - R1403 (2018)
Symbiosis: Plasmodesmata Link Root-Nodule Organogenesis with Infection. Current Biology 58.
Editorial
44, S. III - VI (2018)
Nothing in plant-biotic interactions makes sense. Current Opinion in Plant Biology 59.
Editorial
27 (11), S. R420 - R423 (2017)
Cell Biology: Control of Partner Lifetime in a Plant-Fungus Relationship. Current Biology Review Article (21)
60.
Review Article
379 (1914), 20230369 (2024)
Evolution of small molecule-mediated regulation of arbuscular mycorrhiza symbiosis. Philosophical Transactions B