Author Ischebeck, Till

1 to 20 of 39 Items
  • 2023 Journal Article
    ​ ​Analysis of Pectin-derived Monosaccharides from <em>Arabidopsis</em> Using GC–MS​
    Scholz, P.; Chapman, K.; Ischebeck, T. & Guzha, A.​ (2023) 
    BIO-PROTOCOL13(16).​ DOI: https://doi.org/10.21769/BioProtoc.4746 
    Details  DOI 
  • 2023 Journal Article
    ​ ​Quantification of <em>Botrytis cinerea</em> Growth in <em>Arabidopsis thaliana</em>​
    Scholz, P.; Chapman, K.; Ischebeck, T. & Guzha, A.​ (2023) 
    BIO-PROTOCOL13(16).​ DOI: https://doi.org/10.21769/BioProtoc.4740 
    Details  DOI 
  • 2023 Journal Article
    ​ ​Proteome plasticity during Physcomitrium patens spore germination – from the desiccated phase to heterotrophic growth and reconstitution of photoautotrophy​
    Hembach, L.; Niemeyer, P. W.; Schmitt, K.; Zegers, J. M. S.; Scholz, P.; Brandt, D. & Dabisch, J. J. et al.​ (2023) 
    The Plant Journal, art. tpj.16574​.​ DOI: https://doi.org/10.1111/tpj.16574 
    Details  DOI 
  • 2022 Journal Article
    ​ ​Sustained Control of Pyruvate Carboxylase by the Essential Second Messenger Cyclic di-AMP in Bacillus subtilis​
    Krüger, L.; Herzberg, C.; Wicke, D.; Scholz, P.; Schmitt, K.; Turdiev, A. & Lee, V. T. et al.​ (2022) 
    mBio13(1).​ DOI: https://doi.org/10.1128/mbio.03602-21 
    Details  DOI 
  • 2022 Journal Article
    ​ ​Cell wall-localized BETA-XYLOSIDASE4 contributes to immunity of Arabidopsis against Botrytis cinerea​
    Guzha, A.; McGee, R.; Scholz, P.; Hartken, D.; Lüdke, D.; Bauer, K. & Wenig, M. et al.​ (2022) 
    Plant Physiology,.​ DOI: https://doi.org/10.1093/plphys/kiac165 
    Details  DOI 
  • 2022 Journal Article
    ​ ​Multi‐omics analysis of xylem sap uncovers dynamic modulation of poplar defenses by ammonium and nitrate​
    Kasper, K.; Abreu, I. N.; Feussner, K.; Zienkiewicz, K.; Herrfurth, C.; Ischebeck, T. & Janz, D. et al.​ (2022) 
    The Plant Journal, art. tpj.15802​.​ DOI: https://doi.org/10.1111/tpj.15802 
    Details  DOI 
  • 2022 Journal Article
    ​ ​Heat stress leads to rapid lipid remodeling and transcriptional adaptations in Nicotiana tabacum pollen tubes​
    Krawczyk, H. E.; Rotsch, A. H.; Herrfurth, C.; Scholz, P.; Shomroni, O.; Salinas-Riester, G. & Feussner, I. et al.​ (2022) 
    Plant Physiology,.​ DOI: https://doi.org/10.1093/plphys/kiac127 
    Details  DOI 
  • 2022 Journal Article
    ​ ​SEED LIPID DROPLET PROTEIN1, SEED LIPID DROPLET PROTEIN2 and LIPID DROPLET PLASMA MEMBRANE ADAPTOR mediate lipid droplet-plasma membrane tethering​
    Krawczyk, H. E.; Sun, S.; Doner, N. M; Yan, Q.; Lim, M. S. S.; Scholz, P. & Niemeyer, P. W. et al.​ (2022) 
    The Plant Cell,.​ DOI: https://doi.org/10.1093/plcell/koac095 
    Details  DOI 
  • 2022 Journal Article | 
    ​ ​DIACYLGLYCEROL KINASE 5 regulates polar tip growth of tobacco pollen tubes​
    Scholz, P.; Pejchar, P.; Fernkorn, M.; Škrabálková, E.; Pleskot, R.; Blersch, K. & Munnik, T. et al.​ (2022) 
    New Phytologist233(5) pp. 2185​-2202​.​ DOI: https://doi.org/10.1111/nph.17930 
    Details  DOI 
  • 2021 Journal Article | Research Paper
    ​ ​Plastidial wax ester biosynthesis as a tool to synthesize shorter and more saturated wax esters​
    Vollheyde, K.; Hornung, E.; Herrfurth, C.; Ischebeck, T. & Feussner, I.​ (2021) 
    Biotechnology for Biofuels14(1) art. 238​.​ DOI: https://doi.org/10.1186/s13068-021-02062-1 
    Details  DOI 
  • 2021 Journal Article
    ​ ​The evolution of the phenylpropanoid pathway entailed pronounced radiations and divergences of enzyme families​
    de Vries, S.; Fürst‐Jansen, J. M.; Irisarri, I. ; Dhabalia Ashok, A.; Ischebeck, T.; Feussner, K. & Abreu, I. N et al.​ (2021) 
    The Plant Journal, art. tpj.15387​.​ DOI: https://doi.org/10.1111/tpj.15387 
    Details  DOI 
  • 2021 Book Chapter
    ​ ​Isolation of Lipid Droplets for Protein and​
    Horn, P. J.; Chapman, K. D.& Ischebeck, T.​ (2021)
    In:​Bartels, Dorothea; Dörmann, Peter​ (Eds.), Methods in Molecular Biology Plant Lipids : Methods and Protocols pp. 295​-320. ​New York, NY: ​Springer US. DOI: https://doi.org/10.1007/978-1-0716-1362-7_16 
    Details  DOI 
  • 2021 Journal Article | 
    ​ ​Arabidopsis thaliana EARLY RESPONSIVE TO DEHYDRATION 7 Localizes to Lipid Droplets via Its Senescence Domain​
    Doner, N. M.; Seay, D.; Mehling, M.; Sun, S.; Gidda, S. K.; Schmitt, K. & Braus, G. H. et al.​ (2021) 
    Frontiers in Plant Science12.​ DOI: https://doi.org/10.3389/fpls.2021.658961 
    Details  DOI 
  • 2021 Journal Article | 
    ​ ​Sphingolipid long‐chain base hydroxylation influences plant growth and callose deposition in Physcomitrium patens​
    Gömann, J.; Herrfurth, C.; Zienkiewicz, A.; Ischebeck, T.; Haslam, T. M.; Hornung, E. & Feussner, I.​ (2021) 
    New Phytologist231(1) pp. 297​-314​.​ DOI: https://doi.org/10.1111/nph.17345 
    Details  DOI 
  • 2019 Journal Article
    ​ ​Identification of the first glyphosate transporter by genomic adaptation​
    Wicke, D.; Schulz, L. M.; Lentes, S.; Scholz, P.; Poehlein, A.; Gibhardt, J. & Daniel, R. et al.​ (2019) 
    Environmental Microbiology21(4) pp. 1287​-1305​.​ DOI: https://doi.org/10.1111/1462-2920.14534 
    Details  DOI 
  • 2018 Journal Article | Research Paper | 
    ​ ​The codon sequences predict protein lifetimes and other parameters of the protein life cycle in the mouse brain​
    Mandad, S.; Rahman, R.-U.; Centeno, T. P.; Vidal, R. O.; Wildhagen, H.; Rammner, B. & Keihani, S. et al.​ (2018) 
    Scientific Reports8(1) art. 16913​.​ DOI: https://doi.org/10.1038/s41598-018-35277-8 
    Details  DOI  PMID  PMC 
  • 2018 Journal Article | Research Paper | 
    ​ ​Precisely measured protein lifetimes in the mouse brain reveal differences across tissues and subcellular fractions.​
    Fornasiero, E. F.; Mandad, S.; Wildhagen, H.; Alevra, M.; Rammner, B.; Keihani, S. & Opazo, F. et al.​ (2018) 
    Nature Communications9(1) art. 4230​.​ DOI: https://doi.org/10.1038/s41467-018-06519-0 
    Details  DOI  PMID  PMC 
  • 2017 Journal Article
    ​ ​Arabidopsis lipid droplet‐associated protein (LDAP) – interacting protein ( LDIP ) influences lipid droplet size and neutral lipid homeostasis in both leaves and seeds​
    Pyc, M.; Cai, Y.; Gidda, S. K.; Yurchenko, O.; Park, S.; Kretzschmar, F. K. & Ischebeck, T. et al.​ (2017) 
    The Plant Journal92(6) pp. 1182​-1201​.​ DOI: https://doi.org/10.1111/tpj.13754 
    Details  DOI 
  • 2017 Journal Article
    ​ ​Central metabolite and sterol profiling divides tobacco male gametophyte development and pollen tube growth into eight metabolic phases​
    Rotsch, A. H.; Kopka, J.; Feussner, I. & Ischebeck, T.​ (2017) 
    The Plant Journal92(1) pp. 129​-146​.​ DOI: https://doi.org/10.1111/tpj.13633 
    Details  DOI 
  • 2017 Journal Article
    ​ ​Large-scale reduction of the Bacillus subtilis genome: consequences for the transcriptional network, resource allocation, and metabolism​
    Reuss, D. R.; Altenbuchner, J.; Maeder, U.; Rath, H.; Ischebeck, T.; Sappa, P. K. & Thuermer, A. et al.​ (2017) 
    Genome Research27(2) pp. 289​-299​.​ DOI: https://doi.org/10.1101/gr.215293.116 
    Details  DOI  PMID  PMC  WoS 

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