Publikationen von F. Brückner

Zeitschriftenartikel (6)

1.
Zeitschriftenartikel
Pinsorn, P., Sanachai, K., Rungrotmongkol, T., Hoefgen, R., Watanabe, M., Brückner, F., Nakabayashi, R., Mori, T., Oikawa, A., Sasaki, R., Sucharitakul, J., Saito, K. & Sirikantaramas, S. Sulfur metabolism in durian pulps: Factors contributing to the production of volatile sulfur compounds during fruit ripening. Postharvest Biology and Technology 206, (2023).
2.
Zeitschriftenartikel
Wawrzyńska, A., Piotrowska, J., Apodiakou, A., Brückner, F., Hoefgen, R. & Sirko, A. The SLIM1 transcription factor affects sugar signaling during sulfur deficiency in Arabidopsis thaliana. Journal of Experimental Botany 73, 7362–7379 (2022).
3.
Zeitschriftenartikel
Aarabi, F., Rakpenthai, A., Barahimipour, R., Gorka, M., Alseekh, S., Zhang, Y. J., Salem, M. A., Brückner, F., Omranian, N., Watanabe, M., Nikoloski, Z., Giavalisco, P., Tohge, T., Graf, A., Fernie, A. R. & Hoefgen, R. Sulfur Deficiency Induced genes affect seed protein accumulation and composition under sulfate deprivation. Plant Physiology 187, 2419–2434 (2021).
4.
Zeitschriftenartikel
Correa Galvis, V., Strand, D., Messer, M., Thiele, W., Bethmann, S., Hübner, D., Uflewski, M., Kaiser, E., Siemiatkowska, B., Morris, B. A., Toth, S. Z., Watanabe, M., Brückner, F., Hoefgen, R., Jahns, P., Schöttler, M. A. & Armbruster, U. H+ transport by K+ EXCHANGE ANTIPORTER3 promotes photosynthesis and growth in chloroplast ATP synthase mutants. Plant Physiology 182, 2126–2142 (2020).
5.
Zeitschriftenartikel
Whitcomb, S. J., Rakpenthai, A., Brückner, F., Fischer, A., Parmar, S., Erban, A., Kopka, J., Hawkesford, M. J. & Hoefgen, R. Cysteine and Methionine Biosynthetic Enzymes Have Distinct Effects on Seed Nutritional Quality and on Molecular Phenotypes Associated With Accumulation of a Methionine-Rich Seed Storage Protein in Rice. Frontiers in Plant Science 11, (2020).
6.
Zeitschriftenartikel
Whitcomb, S. J., Nguyen, H. C., Brückner, F., Hesse, H. & Hoefgen, R. CYSTATHIONINE GAMMA-SYNTHASE activity in rice is developmentally regulated and strongly correlated with sulfate. Plant Science 270, 234–244 (2018).
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