Mitochondria are both a source of ATP and a site of reactive oxygen species (ROS) production.However, there is little information on the sites of mitochondrial ROS (mROS) production or the biological role of such mROS in plants. We provide genetic proof that mitochondrial complex II (Complex II) of the electron transport chain contributes to localized mROS that regulates plant stress and defense responses. We identify an Arabidopsis mutant in the Complex II subunit, SDH1-1, through a screen for mutants lacking GSTF8 gene expression in response to salicylic acid (SA). GSTF8 is an early stress-responsive gene whose transcription is induced by biotic and abiotic stresses, and its expression is commonly used as a marker of early stress and defe...
The mitochondrial NADH dehydrogenase complex (complex I) is of particular importance for the respira...
Plant submergence stress is a growing problem for global agriculture. During desubmergence, rising O...
AbstractIn animals, the impact of ROS production by mitochondria on cell physiology, death, disease ...
Mitochondria are both a source of ATP and a site of reactive oxygen species (ROS) production.However...
abstract: Plant mitochondria signal to the nucleus leading to altered transcription of nuclear genes...
<div><p>Plant mitochondria constitute a major source of ROS and are proposed to act as signaling org...
Plant mitochondria constitute a major source of ROS and are proposed to act as signaling organelles ...
Unfavorable environmental conditions limit plant growth and require extensive adaptation for surviva...
Previous studies have identified a range of transcription factors that modulate retrograde regulatio...
To investigate if and how the integrity of the mitochondrial electron transport chain (mETC) influen...
<div><p>Plant mitochondria signal to the nucleus leading to altered transcription of nuclear genes b...
Plant mitochondria constitute a major source of ROS and are proposed to act as signaling organelles ...
Previous studies have identified a range of transcription factors that modulate retrograde regulatio...
Reactive oxygen species (ROS) are key signalling intermediates in plant metabolism, defence, and s...
When subjected to stress, plants reprogram their growth by largely unknown mechanisms. To provide in...
The mitochondrial NADH dehydrogenase complex (complex I) is of particular importance for the respira...
Plant submergence stress is a growing problem for global agriculture. During desubmergence, rising O...
AbstractIn animals, the impact of ROS production by mitochondria on cell physiology, death, disease ...
Mitochondria are both a source of ATP and a site of reactive oxygen species (ROS) production.However...
abstract: Plant mitochondria signal to the nucleus leading to altered transcription of nuclear genes...
<div><p>Plant mitochondria constitute a major source of ROS and are proposed to act as signaling org...
Plant mitochondria constitute a major source of ROS and are proposed to act as signaling organelles ...
Unfavorable environmental conditions limit plant growth and require extensive adaptation for surviva...
Previous studies have identified a range of transcription factors that modulate retrograde regulatio...
To investigate if and how the integrity of the mitochondrial electron transport chain (mETC) influen...
<div><p>Plant mitochondria signal to the nucleus leading to altered transcription of nuclear genes b...
Plant mitochondria constitute a major source of ROS and are proposed to act as signaling organelles ...
Previous studies have identified a range of transcription factors that modulate retrograde regulatio...
Reactive oxygen species (ROS) are key signalling intermediates in plant metabolism, defence, and s...
When subjected to stress, plants reprogram their growth by largely unknown mechanisms. To provide in...
The mitochondrial NADH dehydrogenase complex (complex I) is of particular importance for the respira...
Plant submergence stress is a growing problem for global agriculture. During desubmergence, rising O...
AbstractIn animals, the impact of ROS production by mitochondria on cell physiology, death, disease ...