Plant ammonium transporters of the AMT1 family are involved in N-uptake from the soil and ammonium transport, and recycling within the plant. Although AMT1 genes are known to be expressed in nitrogen-fixing nodules of legumes, their precise roles in this specialized organ remain unknown. We have taken a reverse-genetic approach to decipher the physiological role of LjAMT1;1 in Lotus japonicus nodules. LjAMT1;1 is normally expressed in both the infected zone and the vascular tissue of Lotus nodules. Inhibition of LjAMT1;1 gene expression, using an antisense gene construct driven by a leghemoglobin promoter resulted in a substantial reduction of LjAMT1;1 transcript in the infected tissue but not the vascular bundles of transgenic plants. As a...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
International audienceIn Arabidopsis four root-expressed AMT genes encode functional ammonium transp...
Plants respond to changes of the nutrients availability in the soil by modulating their root system ...
family are involved in N-uptake from the soil and ammo-nium transport, and recycling within the plan...
Ammonium is a primary source of nitrogen for plants. In legume plants ammonium can also be obtained ...
Two related families of ammonium transporters have been identified and partially characterised in pl...
Nitrogen (N) is a key macronutrient required for plant growth and development. Ammonium (NH4+) is th...
AbstractAmmonium is an important source of nitrogen for plants. It is taken up by plant cells via am...
Ammonium uptake in plant roots is mediated by AMT/MEP/Rh-type ammonium transporters. Out of five AMT...
Ammonium is an important source of nitrogen for plants. It is taken up by plant cells via ammonium t...
Species from the family Leguminosae are able to survive in nitrogen (N) limiting conditions via a sy...
: Several aspects of the legume–rhizobia symbiosis are far from being completely understood, such a...
AbstractAmmonium transporters (AMTs) play a role in the uptake of ammonium, the form in which nitrog...
Plants respond to changes of nutrient availability in the soil by modulating their root system devel...
Ammonium transporters (AMTs) are responsible for ammonium absorption and utilization in plants. As a...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
International audienceIn Arabidopsis four root-expressed AMT genes encode functional ammonium transp...
Plants respond to changes of the nutrients availability in the soil by modulating their root system ...
family are involved in N-uptake from the soil and ammo-nium transport, and recycling within the plan...
Ammonium is a primary source of nitrogen for plants. In legume plants ammonium can also be obtained ...
Two related families of ammonium transporters have been identified and partially characterised in pl...
Nitrogen (N) is a key macronutrient required for plant growth and development. Ammonium (NH4+) is th...
AbstractAmmonium is an important source of nitrogen for plants. It is taken up by plant cells via am...
Ammonium uptake in plant roots is mediated by AMT/MEP/Rh-type ammonium transporters. Out of five AMT...
Ammonium is an important source of nitrogen for plants. It is taken up by plant cells via ammonium t...
Species from the family Leguminosae are able to survive in nitrogen (N) limiting conditions via a sy...
: Several aspects of the legume–rhizobia symbiosis are far from being completely understood, such a...
AbstractAmmonium transporters (AMTs) play a role in the uptake of ammonium, the form in which nitrog...
Plants respond to changes of nutrient availability in the soil by modulating their root system devel...
Ammonium transporters (AMTs) are responsible for ammonium absorption and utilization in plants. As a...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
International audienceIn Arabidopsis four root-expressed AMT genes encode functional ammonium transp...
Plants respond to changes of the nutrients availability in the soil by modulating their root system ...