Background Rice (Oryza sativa L.) is highly susceptible to iron (Fe) deficiency due to low secretion levels of the mugineic acid (MA) family phytosiderophore (PS) 2′-deoxymugineic acid (DMA) into the rhizosphere. The low levels of DMA secreted by rice have proved challenging to measure and, therefore, the pattern of DMA secretion under Fe deficiency has been less extensively studied relative to other graminaceous monocot species that secrete high levels of PS, such as barley (Hordeum vulgare L.). Results Gene expression and metabolite analyses were used to characterise diurnal changes occurring during the Fe deficiency response of rice. Iron deficiency inducible genes involved in root DMA biosynthesis and secretion followed a diurnal patte...
AimsMagnesium deficiency can cause starch accumulation, photosynthesis inhibition and senescence par...
Uptake and translocation of metal nutrients are essential processes for plant growth. Graminaceous s...
Brassinosteroids negatively regulate Fe transport and translocation in a strategy II rice plants.Bra...
Abstract Background Rice (Oryza sativa L.) is highly susceptible to iron (Fe) deficiency due to low ...
Background Rice (Oryza sativa L.) is highly susceptible to iron (Fe) deficiency due to low secretio...
© 2015 Dr. Jamie Marcus Selby-PhamRice (Oryza sativa L.) and other graminaceous plant species secret...
<p>Iron (Fe) toxicity is a major nutritional disorder of plants and affects rice yield and productio...
Ferrous iron toxicity is a mineral disorder frequently occurring under waterlogged soils where rice ...
Iron is an essential element for plant growth and development. While abundant in soil, the available...
Rice can be cultivated in highlands, which can expose it to iron deficiency, or under irrigation, wh...
With the hypothesis that iron (Fe) deficiency responsive genes may play a role in Fe toxicity condit...
Rice is subjected to high iron (Fe) levels in acidic lowland soils which results in disturbance of b...
Iron (Fe) is an essential micronutrient that is frequently inaccessible to plants. Rice (Oryza sativ...
Iron (Fe) is an essential element required for various cellular events in plants, including respirat...
Rice (Oryza sativa L.) is the most important staple food in the world. It is rich in genetic diversi...
AimsMagnesium deficiency can cause starch accumulation, photosynthesis inhibition and senescence par...
Uptake and translocation of metal nutrients are essential processes for plant growth. Graminaceous s...
Brassinosteroids negatively regulate Fe transport and translocation in a strategy II rice plants.Bra...
Abstract Background Rice (Oryza sativa L.) is highly susceptible to iron (Fe) deficiency due to low ...
Background Rice (Oryza sativa L.) is highly susceptible to iron (Fe) deficiency due to low secretio...
© 2015 Dr. Jamie Marcus Selby-PhamRice (Oryza sativa L.) and other graminaceous plant species secret...
<p>Iron (Fe) toxicity is a major nutritional disorder of plants and affects rice yield and productio...
Ferrous iron toxicity is a mineral disorder frequently occurring under waterlogged soils where rice ...
Iron is an essential element for plant growth and development. While abundant in soil, the available...
Rice can be cultivated in highlands, which can expose it to iron deficiency, or under irrigation, wh...
With the hypothesis that iron (Fe) deficiency responsive genes may play a role in Fe toxicity condit...
Rice is subjected to high iron (Fe) levels in acidic lowland soils which results in disturbance of b...
Iron (Fe) is an essential micronutrient that is frequently inaccessible to plants. Rice (Oryza sativ...
Iron (Fe) is an essential element required for various cellular events in plants, including respirat...
Rice (Oryza sativa L.) is the most important staple food in the world. It is rich in genetic diversi...
AimsMagnesium deficiency can cause starch accumulation, photosynthesis inhibition and senescence par...
Uptake and translocation of metal nutrients are essential processes for plant growth. Graminaceous s...
Brassinosteroids negatively regulate Fe transport and translocation in a strategy II rice plants.Bra...