Ruprecht-Karls-Universität Heidelberg
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Zellbiologie

Dr. Melanie Krebs

Dr. Melanie Krebs
Dr. Melanie Krebs
Im Neuenheimer Feld 230
69120 Heidelberg
Fon +49 6221 545610
ed.grebledieh-inu.soc TEA sberk.einalem

 

Publications

  • Himschoot E., Krebs M., Costa A., Beeckman T., Vanneste S. (2018) Calcium Ion Dynamics in Roots: Imaging and Analysis. In: Ristova D., Barbez E. (eds) Root Development. Methods in Molecular Biology, vol 1761. Humana Press, New York, NY
  • Grossmann G, Krebs M, Maizel A, Stahl Y, Vermeer JEM and Ott T (2018). Green light for quantitative live-cell imaging in plants. J. Cell Sci.
  • Waadt R, Krebs M, Kudla J and Schumacher K (2017). Multiparameter imaging of calcium and abscisic acid and high resolution quantitative calcium measurements using R-GECO1-mTurquoise in Arabidopsis. New Phytol. 303–320.
  • Kriegel A, Andrés Z, Medzihradszky A, Krüger F, Scholl, S, Delang S,  Patir-Nebioglu GM, GUte G, Yang H, Murphy AS, Peer WA, Pfeifer A, Krebs M, Lohmann JU, Schumacher K. (2015). Job Sharing in the Endomembrane System: Vacuolar Acidification Requires the Combined Activity of V-ATPase and V-PPase. Plant Cell. 27: tpc.15.00733.
  • Wang Y, Dindas J, Rienmüller F, Krebs M, Waadt R, Schumacher K, Wu WH, Hedrich R and Roelfsema MRG. (2015). Cytosolic Ca2+ signals enhance the vacuolar ion conductivity of bulging Arabidopsis root hair cells. Molecular Plant. 1–10.
  • Keinath NF, Waadt R, Brugman R., Schroeder JI, Grossmann G, Schumacher K and Krebs M. (2015). Live Cell Imaging with R-GECO1 Sheds Light on flg22- and Chitin-Induced Transient [Ca2+]cyt Patterns in Arabidopsis. Molecular Plant. 8:1188–1200.
  • Fendrych M, Van Hautegem T, Van Durme M, Olvera-Carrillo Y, Huysmans M, Karimi M, Lippens S, Guérin CJ, Krebs M, Schumacher K, Nowack MK. (2014). Programmed cell death controlled by ANAC033/SOMBRERO determines root cap organ size in Arabidopsis. Curr Biol. 24(9):931-40.
  • Schuster C, Gaillochet C, Medzihradszky A, Busch W, Daum G, Krebs M, Kehle A, Lohmann JU. (2014). A regulatory framework for shoot stem cell control integrating metabolic, transcriptional, and phytohormone signals. Dev Cell. 28(4):438-49.
  • Yang H, Krebs M, Stierhof YD, Ludewig U. (2014). Characterization of the putative amino acid transporter genes AtCAT2, 3 &4: the tonoplast localized AtCAT2 regulates soluble leaf amino acids. J Plant Physiol. 171(8):594-601.
  • Viotti C, Krüger F, Krebs M, Neubert C, Fink F, Lupanga U, Scheuring D, Boutté Y, Frescatada-Rosa M, Wolfenstetter S, Sauer N, Hillmer S, Grebe M, Schumacher K. (2013). The endoplasmic reticulum is the main membrane source for biogenesis of the lytic vacuole in Arabidopsis. Plant Cell. 25(9):3434-49.
  • Krebs M, Schumacher K. (2013). Live cell imaging of cytoplasmic and nuclear Ca2+ dynamics in Arabidopsis roots. Cold Spring Harb Protoc. 2013(8):776-80.
  • Krüger F, Krebs M, Viotti C, Langhans M, Schumacher K, Robinson DG. (2012). PDMP induces rapid changes in vacuole morphology in Arabidopsis root cells. J Exp Bot. 64(2):529-40.
  • Krebs M, Held K, Binder A, Hashimoto K, Den Herder G, Parniske M, Kudla J, Schumacher K. (2011). FRET-based genetically encoded sensors allow high-resolution live cell imaging of Ca²? dynamics. Plant J. 69(1):181-92.
  • Schumacher K, Krebs M. (2010). The V-ATPase: small cargo, large effects. Curr Opin Plant Biol. 13(6):724-30.
  • Viotti C, Bubeck J, Stierhof YD, Krebs M, Langhans M, van den Berg W, van Dongen W, Richter S, Geldner N, Takano J, Jürgens G, de Vries SC, Robinson DG, Schumacher K. (2010). Endocytic and secretory traffic in Arabidopsis merge in the trans-Golgi network/early endosome, an independent and highly dynamic organelle. Plant Cell. 22(4):1344-57.
  • Krebs M, Beyhl D, Görlich E, Al-Rasheid KA, Marten I, Stierhof YD, Hedrich R, Schumacher K. (2010). Arabidopsis V-ATPase activity at the tonoplast is required for efficient nutrient storage but not for sodium accumulation. Proc Natl Acad Sci U S A. 107(7):3251-6.
  • Brüx A, Liu TY, Krebs M, Stierhof YD, Lohmann JU, Miersch O, Wasternack C, Schumacher K. (2008). Reduced V-ATPase activity in the trans-Golgi network causes oxylipin-dependent hypocotyl growth Inhibition in Arabidopsis. Plant Cell. 20(4):1088-100.
  • von der Fecht-Bartenbach J, Bogner M, Krebs M, Stierhof YD, Schumacher K, Ludewig U. (2007). Function of the anion transporter AtCLC-d in the trans-Golgi network. Plant J. 50(3):466-74.

 

 

 

 


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