The ability to induce Arabidopsis protoplasts to dedifferentiate and divide provides a convenient system to analyze organelle dynamics in plant cells acquiring totipotency. Using peroxisome-targeted fluorescent proteins, we show that during protoplast culture, peroxisomes undergo massive proliferation and disperse uniformly around the cell before cell division. Peroxisome dispersion is influenced by the cytoskeleton, ensuring unbiased segregation during cell division. Considering their role in oxidative metabolism, we also investigated how peroxisomes influence homeostasis of reactive oxygen species (ROS). Protoplast isolation induces an oxidative burst, with mitochondria the likely major ROS producers. Subsequently ROS levels in protoplast...
Peroxisomes are ubiquitous organelles present in nearly all eukaryotic cells. Conserved functions of...
Redox compartmentalization in organelles is an effective evolutionary strategy (Box 1; Jones and Go,...
AbstractPeroxisomes are remarkably dynamic, multifunctional organelles, which react to physiological...
Research Doctorate - Doctor of Philosophy (PhD)Plants being sessile organisms cannot escape abiotic ...
Eukaryotic cells employ organellar compartmentalization to increase efficiency of cellular processes...
Plant cell is a complex and complicated environment where countless biochemical processes and metabo...
AbstractPeroxisomes are pleoimorphic, metabolically plastic organelles. Their essentially oxidative ...
Key steps of vital metabolic pathways are housed in peroxisomes, essential organelles. Intensive res...
Peroxisomes are pleoimorphic, metabolically plastic organelles. Their essentially oxidative function...
Peroxisomes are essential for life in plants. These organelles house a variety of metabolic processe...
A variety of metabolic pathways are sequestered in peroxisomes, conserved organelles that are essent...
AbstractIn higher plants, peroxisomes have been believed to play a pivotal role in three metabolic p...
AbstractPeroxisomes are ubiquitous organelles present in nearly all eukaryotic cells. Conserved func...
Key steps of essential metabolic pathways are housed in plant peroxisomes. We conducted a microscopy...
Very recently, autophagy has been recognized as an important degradation pathway for quality control...
Peroxisomes are ubiquitous organelles present in nearly all eukaryotic cells. Conserved functions of...
Redox compartmentalization in organelles is an effective evolutionary strategy (Box 1; Jones and Go,...
AbstractPeroxisomes are remarkably dynamic, multifunctional organelles, which react to physiological...
Research Doctorate - Doctor of Philosophy (PhD)Plants being sessile organisms cannot escape abiotic ...
Eukaryotic cells employ organellar compartmentalization to increase efficiency of cellular processes...
Plant cell is a complex and complicated environment where countless biochemical processes and metabo...
AbstractPeroxisomes are pleoimorphic, metabolically plastic organelles. Their essentially oxidative ...
Key steps of vital metabolic pathways are housed in peroxisomes, essential organelles. Intensive res...
Peroxisomes are pleoimorphic, metabolically plastic organelles. Their essentially oxidative function...
Peroxisomes are essential for life in plants. These organelles house a variety of metabolic processe...
A variety of metabolic pathways are sequestered in peroxisomes, conserved organelles that are essent...
AbstractIn higher plants, peroxisomes have been believed to play a pivotal role in three metabolic p...
AbstractPeroxisomes are ubiquitous organelles present in nearly all eukaryotic cells. Conserved func...
Key steps of essential metabolic pathways are housed in plant peroxisomes. We conducted a microscopy...
Very recently, autophagy has been recognized as an important degradation pathway for quality control...
Peroxisomes are ubiquitous organelles present in nearly all eukaryotic cells. Conserved functions of...
Redox compartmentalization in organelles is an effective evolutionary strategy (Box 1; Jones and Go,...
AbstractPeroxisomes are remarkably dynamic, multifunctional organelles, which react to physiological...