Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and metabolism, including tetrapyrrole synthesis, in virtually all organisms. In plants, Fe is a component of the photosystems and thus essential for photosynthesis. Fe deficiency compromises chlorophyll (Chl) synthesis, leading to interveinal chlorosis in developing leaves and decreased photosynthetic activity. To gain insights into the responses of photosynthetically active cells to Fe deficiency, we conducted transcriptional profiling experiments on leaves from Fe-sufficient and Fe-deficient plants using the RNA-seq technology. As anticipated, genes associated with photosynthesis and tetrapyrrole metabolism were dramatically down-regulated by Fe ...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Iron (Fe) deficiency is one of many conditions that can seriously damage crops. Low levels of photos...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron (Fe) is one of the essential micronutrients required by both plants and animals. In humans, Fe ...
Iron is one of the most important micronutrients in plants as it is involved in many cellular functi...
Iron deficiency chlorosis (IDC) is an abiotic stress often experienced by soybean, owing to the low ...
Iron (Fe) is an essential mineral micronutrient for plants and animals. Plants respond to Fe deficie...
Photosynthesis, heme biosynthesis, and Fe-S cluster assembly all take place in the chloroplast, and ...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
The generally low bioavailability of iron in aerobic soil systems forced plants to evolve sophistica...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...
Iron is an essential nutrient for plants, but excess iron is toxic due to its catalytic role in the ...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Iron (Fe) deficiency is one of many conditions that can seriously damage crops. Low levels of photos...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...
Due to its ease to donate or accept electrons, iron (Fe) plays a crucial role in respiration and met...
Plant growth requires optimal levels of iron (Fe). Fe is used for energy production, numerous enzyma...
Iron (Fe) is one of the essential micronutrients required by both plants and animals. In humans, Fe ...
Iron is one of the most important micronutrients in plants as it is involved in many cellular functi...
Iron deficiency chlorosis (IDC) is an abiotic stress often experienced by soybean, owing to the low ...
Iron (Fe) is an essential mineral micronutrient for plants and animals. Plants respond to Fe deficie...
Photosynthesis, heme biosynthesis, and Fe-S cluster assembly all take place in the chloroplast, and ...
Plants react to iron deficiency stress adopting different kind of adaptive responses. Tomato, a Stra...
The generally low bioavailability of iron in aerobic soil systems forced plants to evolve sophistica...
Background It is well known that in the rhizosphere soluble Fe sources available for plants are main...
Iron is an essential nutrient for plants, but excess iron is toxic due to its catalytic role in the ...
Deciphering cellular iron (Fe) homeostasis requires having access to both quantitative and qualitati...
Iron is an essential growth determinant for plants, and plants acquire this micronutrient in amounts...
Iron (Fe) deficiency is one of many conditions that can seriously damage crops. Low levels of photos...
Plant iron deficiency (-Fe) activates a complex regulatory network that coordinates root Fe uptake a...