International audienceActively respiring animal and plant tissues experience hypoxia because of mitochondrial O(2) consumption. Controlling oxygen balance is a critical issue that involves in mammals hypoxia-inducible factor (HIF) mediated transcriptional regulation, cytochrome oxidase (COX) subunit adjustment and nitric oxide (NO) as a mediator in vasodilatation and oxygen homeostasis. In plants, NO, mainly derived from nitrite, is also an important signalling molecule. We describe here a mechanism by which mitochondrial respiration is adjusted to prevent a tissue to reach anoxia. During pea seed germination, the internal atmosphere was strongly hypoxic due to very active mitochondrial respiration. There was no sign of fermentation, sugges...
Nitrate increases the tolerance of plants to hypoxia, although the mechanisms related to this benefi...
SummaryEukaryotic cells respond to low-oxygen concentrations by upregulating hypoxic nuclear genes (...
Abstract Plant cells exposed to anaerobic stress generate copious amounts of the gaseous free radica...
International audienceActively respiring animal and plant tissues experience hypoxia because of mito...
AbstractActively respiring animal and plant tissues experience hypoxia because of mitochondrial O2 c...
Actively respiring animal and plant tissues experience hypoxia because of mitochondrial O2 consumpti...
Plant tissues, particularly roots, can be subjected to periods of hypoxia due to environmental circu...
Oxygen deprivation leads to changes in mitochondrial morphology and impaired flow of reducing equiva...
Study of the interactions between nitric oxide (NO) and mitochondria are important for two major rea...
Mitochondria recently have emerged as important sites in controlling NO levels within the cell. In t...
Mitochondria are not only major sites for energy production but also participate in several alternat...
At oxygen concentrations of <1%, even completely nitrate reductase (NR)-free root tissues reduced...
AbstractIn this report, we show that nitric oxide affects mitochondrial functionality in plant cells...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
In this report, we show that nitric oxide affects mitochondrial functionality in plant cells and red...
Nitrate increases the tolerance of plants to hypoxia, although the mechanisms related to this benefi...
SummaryEukaryotic cells respond to low-oxygen concentrations by upregulating hypoxic nuclear genes (...
Abstract Plant cells exposed to anaerobic stress generate copious amounts of the gaseous free radica...
International audienceActively respiring animal and plant tissues experience hypoxia because of mito...
AbstractActively respiring animal and plant tissues experience hypoxia because of mitochondrial O2 c...
Actively respiring animal and plant tissues experience hypoxia because of mitochondrial O2 consumpti...
Plant tissues, particularly roots, can be subjected to periods of hypoxia due to environmental circu...
Oxygen deprivation leads to changes in mitochondrial morphology and impaired flow of reducing equiva...
Study of the interactions between nitric oxide (NO) and mitochondria are important for two major rea...
Mitochondria recently have emerged as important sites in controlling NO levels within the cell. In t...
Mitochondria are not only major sites for energy production but also participate in several alternat...
At oxygen concentrations of <1%, even completely nitrate reductase (NR)-free root tissues reduced...
AbstractIn this report, we show that nitric oxide affects mitochondrial functionality in plant cells...
Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)Conselho Nacional de Desenvolvimento Ci...
In this report, we show that nitric oxide affects mitochondrial functionality in plant cells and red...
Nitrate increases the tolerance of plants to hypoxia, although the mechanisms related to this benefi...
SummaryEukaryotic cells respond to low-oxygen concentrations by upregulating hypoxic nuclear genes (...
Abstract Plant cells exposed to anaerobic stress generate copious amounts of the gaseous free radica...