Ammonium (NH4+), as a major inorganic source of nitrogen (N) for tea plant growth, is transported and distributed across membranes by the proteins of ammonium transporters (AMTs). However, the AMT2-type AMTs from tea plants remain poorly understood. In this study, five CsAMT2 subfamily genes were identified in tea plant genomes, and their full-length coding sequences (CDS) were isolated from roots. Then, a NH4+ uptake kinetic comparison of Fudingdabaicha (FD), Huangdan (HD), and Maoxie (MX) showed that FD was a high N efficiency (HNE) cultivar that had a wide range of adaptability to NH4+, HD was a high N efficiency under high N conditions (HNEH) cultivar, in which it was easy to obtain higher yield in a high N environment, and MX was a hig...
Species from the family Leguminosae are able to survive in nitrogen (N) limiting conditions via a sy...
Ammonium (NH4+) plays key roles in plant growth, development, fruit quality, and yield. In plants, N...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Ammonium is a primary source of nitrogen for plants. In legume plants ammonium can also be obtained ...
NH4+ acquisition by plant roots is thought to involve members of the NH4+ transporter family (AMT) f...
Nitrogen (N) is a key macronutrient required for plant growth and development. Ammonium (NH4+) is th...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
Nitrogen (N) is a major limiting factor for plant growth and vegetable production. Understanding the...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Two related families of ammonium transporters have been identified and partially characterised in pl...
Organic tea is more popular than conventional tea that originates from fertilized plants. Amino acid...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Ammonium transporters (AMTs) are responsible for ammonium absorption and utilization in plants. As a...
Species from the family Leguminosae are able to survive in nitrogen (N) limiting conditions via a sy...
Ammonium (NH4+) plays key roles in plant growth, development, fruit quality, and yield. In plants, N...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Ammonium is a primary source of nitrogen for plants. In legume plants ammonium can also be obtained ...
NH4+ acquisition by plant roots is thought to involve members of the NH4+ transporter family (AMT) f...
Nitrogen (N) is a key macronutrient required for plant growth and development. Ammonium (NH4+) is th...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
AtAMT1;1 was the founding member of the family of AMT/Rh ammonium transporters and accounts for abou...
Nitrogen (N) is a major limiting factor for plant growth and vegetable production. Understanding the...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Two related families of ammonium transporters have been identified and partially characterised in pl...
Organic tea is more popular than conventional tea that originates from fertilized plants. Amino acid...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...
Ammonium transporters (AMTs) are responsible for ammonium absorption and utilization in plants. As a...
Species from the family Leguminosae are able to survive in nitrogen (N) limiting conditions via a sy...
Ammonium (NH4+) plays key roles in plant growth, development, fruit quality, and yield. In plants, N...
The tea plant is a kind of ammonium-preferring crop, but the mechanism whereby ammonium (NH4+) regul...