Literature summary extracted from
Luo, B.; Chen, J.; Zhu, L.; Liu, S.; Li, B.; Lu, H.; Ye, G.; Xu, G.; Fan, X.
Overexpression of a high-affinity nitrate transporter OsNRT2.1 increases yield and manganese accumulation in rice under alternating wet and dry condition (2018), Front. Plant Sci., 9, 1192.
Application
| EC Number |
Application |
Comment |
Organism |
|---|
| 7.3.2.4 |
agriculture |
alternating wet and dry growth condition can induce the expression of NO3- and Mn transporters in grain filling organs which increases the accumulation of N and Mn in grain. NO3- uptake in NRT2.1 transgenic lines can improve Mn accumulation |
Oryza sativa Japonica Group |
Organism
| EC Number |
Organism |
UniProt |
Comment |
Textmining |
|---|
| 7.3.2.4 |
Oryza sativa Japonica Group |
P0DKG9 |
isoform NRT2.1 |
- |
Synonyms
| EC Number |
Synonyms |
Comment |
Organism |
|---|
| 7.3.2.4 |
NRT2.1 |
- |
Oryza sativa Japonica Group |
Expression
| EC Number |
Organism |
Comment |
Expression |
|---|
| 7.3.2.4 |
Oryza sativa Japonica Group |
alternating wet and dry growth condition can induce the expression of NO3- and Mn transporters in grain filling organs which increases the accumulation of N and Mn in grain |
up |
General Information
| EC Number |
General Information |
Comment |
Organism |
|---|
| 7.3.2.4 |
physiological function |
under alternating wet and dry condition, wild-type plants show a 31% reduction in grain yields compared to waterlogged condition. The overexpression of NRT2.1 recovers this loss, and NRT2.1 transgenic lines display higher grain yields than wild-type plants. Transgenic lines display 60% higher grain Mn under alternating wet and dry condition and approximately 30% higher Mn in the grain in waterlogged condition. The overexpression of NRT2.1 does not alter Mg and Fe in the seeds in either growth condition |
Oryza sativa Japonica Group |