Summary: The cellular and subcellular distributions of trace elements can provide important clues to understanding how the elements are transported and stored in plant cells, but mapping their distributions is a challenging task. The distributions of arsenic, iron, zinc, manganese and copper, as well as physiologically related macro-elements, were mapped in the node, internode and leaf sheath of rice (Oryza sativa) using synchrotron X-ray fluorescence (S-XRF) and high-resolution secondary ion mass spectrometry (NanoSIMS). Although copper and silicon generally showed cell wall localization, arsenic, iron and zinc were strongly localized in the vacuoles of specific cell types. Arsenic was highly localized in the companion cell vacuoles of the...
In order to gain insights into the transport and distribution of arsenic (As) in intact rice (Oryza ...
Several studies have suggested that the majority of iron (Fe) and zinc (Zn) in wheat grains are asso...
Knowledge of mineral localization within rice grains is important for understanding the role of diff...
The cellular and subcellular distributions of trace elements can provide important clues to understa...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Rice (Oryza sativa) takes up arsenite mainly through the silicic acid transport pathway. Understandi...
P>In order to gain insights into the transport and distribution of arsenic (As) in intact rice (O...
Cereal crops accumulate low levels of iron (Fe) of which only a small fraction (5–10%) is bioavailab...
Arsenic (As) contamination of rice grains and the generally low concentration of micronutrients in r...
This thesis presents information on the subcellular localisation of two important trace elements, se...
<p>Multilevel interactions among nutrients occur in the soil-plant system. Among them, Fe and Zn hom...
This thesis presents information on the subcellular localisation of two important trace elements, se...
In order to gain insights into the transport and distribution of arsenic (As) in intact rice (Oryza ...
Several studies have suggested that the majority of iron (Fe) and zinc (Zn) in wheat grains are asso...
Knowledge of mineral localization within rice grains is important for understanding the role of diff...
The cellular and subcellular distributions of trace elements can provide important clues to understa...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Determining the distribution of trace elements in biological materials with subcellular resolution i...
Rice (Oryza sativa) takes up arsenite mainly through the silicic acid transport pathway. Understandi...
P>In order to gain insights into the transport and distribution of arsenic (As) in intact rice (O...
Cereal crops accumulate low levels of iron (Fe) of which only a small fraction (5–10%) is bioavailab...
Arsenic (As) contamination of rice grains and the generally low concentration of micronutrients in r...
This thesis presents information on the subcellular localisation of two important trace elements, se...
<p>Multilevel interactions among nutrients occur in the soil-plant system. Among them, Fe and Zn hom...
This thesis presents information on the subcellular localisation of two important trace elements, se...
In order to gain insights into the transport and distribution of arsenic (As) in intact rice (Oryza ...
Several studies have suggested that the majority of iron (Fe) and zinc (Zn) in wheat grains are asso...
Knowledge of mineral localization within rice grains is important for understanding the role of diff...