Showing results (11-20 of 55) with videos related to
Sort By:
Pageof 6
Trends in Plant Science|March 22, 2002
Sieve elements caught in the actAart J E van Bel, Katrin Ehlers, Michael KnoblauchPhytopathology|December 10, 2013
Nondestructive imaging of plant-parasitic nematode development and host response to nematode pathogenesisPhuong T Y Dinh, Michael Knoblauch, Axel A EllingThe Plant Journal : for Cell and Molecular Biology|December 29, 2019
Sieve elements rapidly develop 'nacreous walls' following injury - a common wounding response?Jan Knoblauch, Michael Knoblauch, Viktoriya V Vasina, et al.Plant Physiology|September 19, 2014
Pico gauges for minimally invasive intracellular hydrostatic pressure measurementsJan Knoblauch, Daniel L Mullendore, Kaare H Jensen, et al.Planta|October 31, 2008
Structural changes in the vacuole and cytoskeleton are key to development of the two cytoplasmic domains supporting single-cell C(4) photosynthesis in Bienertia sinuspersiciJoonho Park, Michael Knoblauch, Thomas W Okita, et al.Journal of Experimental Botany|August 3, 2006
The geometry of the forisome-sieve element-sieve plate complex in the phloem of Vicia faba L. leafletsWinfried S Peters, Aart J E van Bel, Michael KnoblauchPlant, Cell & Environment|March 19, 2016
In situ microscopy reveals reversible cell wall swelling in kelp sieve tubes: one mechanism for turgor generation and flow control?Jan Knoblauch, Sarah Tepler Drobnitch, Winfried S Peters, et al.Journal of Experimental Botany|March 5, 2014
SEORious business: structural proteins in sieve tubes and their involvement in sieve element occlusionMichael Knoblauch, Daniel R Froelich, William F Pickard, et al.Journal of Plant Physiology|January 3, 2021
Plasmodesmata and the problems with size: Interpreting the confusionWinfried S Peters, Kaare H Jensen, Howard A Stone, et al.The Plant Cell|April 1, 2010
Sieve tube geometry in relation to phloem flowDaniel L Mullendore, Carel W Windt, Henk Van As, et al.Pageof 6