International audienceThis work investigated how copper (Cu) phytotoxicity affected iron (Fe) nutrition and root elongation in hydroponically grown durum wheat (Triticum turgidum durum L., cv Acalou) in order to establish the critical level of Cu concentration in roots above which significant Cu phytotoxicity occurs. This was assessed at two levels of Fe supply (2 and 100 mu M). Severe symptoms of Cu phytotoxicity were observed at Cu2+ concentration above 1 mu M, i.e. interveinal chlorosis symptoms and global root growth alteration. Total root Cu concentration of about 100, 150 and 250-300 mg kg(-1) corresponded to 10%, 25% and 50% reduction in root elongation, respectively. Copper and Fe concentrations as well as amounts of Cu and Fe accum...
High copper (Cu) levels in soil caused by anthropic activity, as in vineyards, can cause phytotoxici...
Iron (Fe) and copper (Cu) homeostasis are tightly linked across biology. Understanding crosstalk bet...
International audienceAqueous Si limits Cu uptake by a Si-accumulating plant via physicochemical mec...
International audienceThis work investigated how copper (Cu) phytotoxicity affected iron (Fe) nutrit...
International audienceThis work investigated how copper (Cu) phytotoxicity affected iron (Fe) nutrit...
International audienceThis work assessed in situ, copper (Cu) uptake and phytotoxicity for durum whe...
International audienceThis work assessed in situ, copper (Cu) uptake and phytotoxicity for durum whe...
International audienceThis work assessed in situ, copper (Cu) uptake and phytotoxicity for durum whe...
The wide use of copper (Cu)-based fungicide has caused a stepwise accumulation of Cu in the environm...
Copper (Cu), is one of the essential elements for plants. In this study, Triticum aestivum L. cv. T...
Ryegrass (Lolium perenne L.) is a plant species that can express mechanisms of tolerance to copper (...
Copper nanoparticles (nCu) are widely used in industry and in daily life, due to their unique physic...
Copper nanoparticles (nCu) are widely used in industry and in daily life, due to their unique physic...
Ryegrass (Lolium perenneL.) is a plant species that can express mechanisms of tolerance to copper (C...
Iron (Fe) and copper (Cu) homeostasis are tightly linked across biology. Understanding crosstalk bet...
High copper (Cu) levels in soil caused by anthropic activity, as in vineyards, can cause phytotoxici...
Iron (Fe) and copper (Cu) homeostasis are tightly linked across biology. Understanding crosstalk bet...
International audienceAqueous Si limits Cu uptake by a Si-accumulating plant via physicochemical mec...
International audienceThis work investigated how copper (Cu) phytotoxicity affected iron (Fe) nutrit...
International audienceThis work investigated how copper (Cu) phytotoxicity affected iron (Fe) nutrit...
International audienceThis work assessed in situ, copper (Cu) uptake and phytotoxicity for durum whe...
International audienceThis work assessed in situ, copper (Cu) uptake and phytotoxicity for durum whe...
International audienceThis work assessed in situ, copper (Cu) uptake and phytotoxicity for durum whe...
The wide use of copper (Cu)-based fungicide has caused a stepwise accumulation of Cu in the environm...
Copper (Cu), is one of the essential elements for plants. In this study, Triticum aestivum L. cv. T...
Ryegrass (Lolium perenne L.) is a plant species that can express mechanisms of tolerance to copper (...
Copper nanoparticles (nCu) are widely used in industry and in daily life, due to their unique physic...
Copper nanoparticles (nCu) are widely used in industry and in daily life, due to their unique physic...
Ryegrass (Lolium perenneL.) is a plant species that can express mechanisms of tolerance to copper (C...
Iron (Fe) and copper (Cu) homeostasis are tightly linked across biology. Understanding crosstalk bet...
High copper (Cu) levels in soil caused by anthropic activity, as in vineyards, can cause phytotoxici...
Iron (Fe) and copper (Cu) homeostasis are tightly linked across biology. Understanding crosstalk bet...
International audienceAqueous Si limits Cu uptake by a Si-accumulating plant via physicochemical mec...