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Functional Plant Biology : FPB|July 22, 2020
Determination of apoplastic Na+ in intact leaves of cotton by in vivo fluorescence ratio-imagingKarl H Mühling, André LäuchliFrontiers in Plant Science|June 26, 2024
Oat-an alternative crop under waterlogging stress?Britta Pitann, Karl H MühlingFrontiers in Plant Science|May 29, 2012
Real-Time Imaging of Leaf Apoplastic pH Dynamics in Response to NaCl StressChristoph-Martin Geilfus, Karl H MühlingPlant Science : an International Journal of Experimental Plant Biology|October 24, 2015
The apoplastic pH and its significance in adaptation to salinity in maize (Zea mays L.): Comparison of fluorescence microscopy and pH-sensitive microelectrodesBritta Pitann, Thorsten Kranz, Karl H MühlingPlant Methods|June 1, 2022
A method to experimentally clamp leaf water content to defined values to assess its effects on apoplastic pHHartmut Kaiser, Amit Sagervanshi, Karl H MühlingProteomics|December 8, 2010
Proteomic changes in maize roots after short-term adjustment to saline growth conditionsChristian Zörb, Sigrid Schmitt, Karl H MühlingPlant-Environment Interactions (Hoboken, N.J.)|June 17, 2024
Does humic acid foliar application affect growth and nutrient status of water-stressed maize?Britta Pitann, Kamran Khan, Karl H MühlingJournal of Immunological Methods|September 15, 2010
A methodical approach for improving the reliability of quantifiable two-dimensional Western blotsChristoph-Martin Geilfus, Karl H Mühling, Christian ZörbPlant Physiology and Biochemistry : PPB|October 26, 2010
Salt stress differentially affects growth-mediating β-expansins in resistant and sensitive maize (Zea mays L.)Christoph-Martin Geilfus, Christian Zörb, Karl H MühlingThe Science of the Total Environment|July 30, 2021
Lithium: Perspectives of nutritional beneficence, dietary intake, biogeochemistry, and biofortification of vegetables and mushroomsAsif Naeem, Muhammad Aslam, Saifullah, et al.Pageof 5