A transgenic approach was undertaken to investigate the role of a rice ammonium transporter (OsAMT1-1) in ammonium uptake and consequent ammonium assimilation under different nitrogen regimes. Transgenic lines overexpressing OsAMT1-1 were produced by Agrobacterium-mediated transformation of two rice cultivars, Taipei 309 and Jarrah, with an OsAMT1-1 cDNA gene construct driven by the maize ubiquitin promoter. Transcript levels of OsAMT1-1 in both Taipei 309 and Jarrah transgenic lines correlated positively with transgene copy number. Shoot and root biomass of some transgenic lines decreased during seedling and early vegetative stage compared to the wild type, especially when grown under high (2 mM) ammonium nutrition. Transgenic plants, part...
<div><p>Maintaining an appropriate balance of carbon to nitrogen metabolism is essential for rice gr...
To understand the reallocation of organic nitrogen from leaf to the flower head of rice, the role of...
The NH4 + and NO3 ? are N sources available for plant nutrition in most soils. The NH4+ role in plan...
The availability of nitrogen in the soil is one of the main limiting factors for plant productivity...
AMT1-3 encodes the high affinity NH4+ transporter in rice roots and is predominantly expressed under...
To characterize ammonium transport pathways in rice, two cDNAs with high homology to MEP/AMT2-type a...
The three members of the rice OsAMT1 gene family of ammonium transporters show distinct expression p...
Abstract: Rice grows in flooded paddy fields and takes up ammonium as the preferred nitrogen (N) sou...
In order to investigate the molecular basis of high-affinity ammonium absorption by roots of rice pl...
AbstractNitrogen (N) plays a critical role in plant growth and productivity and PTR/NRT1 transporter...
Among three genes for cytosolic glutamine synthetase (OsGS1;1, OsGS1;2 and OsGS1;3) in rice (Oryza s...
International audienceIn Arabidopsis four root-expressed AMT genes encode functional ammonium transp...
Abstract: AMT1-3 encodes the high affinity NH4+ transporter in rice roots and is predominantly expre...
Nitrate and manganese (Mn) are necessary elements for the growth and development of rice in paddy so...
Maintaining an appropriate balance of carbon to nitrogen metabolism is essential for rice growth and...
<div><p>Maintaining an appropriate balance of carbon to nitrogen metabolism is essential for rice gr...
To understand the reallocation of organic nitrogen from leaf to the flower head of rice, the role of...
The NH4 + and NO3 ? are N sources available for plant nutrition in most soils. The NH4+ role in plan...
The availability of nitrogen in the soil is one of the main limiting factors for plant productivity...
AMT1-3 encodes the high affinity NH4+ transporter in rice roots and is predominantly expressed under...
To characterize ammonium transport pathways in rice, two cDNAs with high homology to MEP/AMT2-type a...
The three members of the rice OsAMT1 gene family of ammonium transporters show distinct expression p...
Abstract: Rice grows in flooded paddy fields and takes up ammonium as the preferred nitrogen (N) sou...
In order to investigate the molecular basis of high-affinity ammonium absorption by roots of rice pl...
AbstractNitrogen (N) plays a critical role in plant growth and productivity and PTR/NRT1 transporter...
Among three genes for cytosolic glutamine synthetase (OsGS1;1, OsGS1;2 and OsGS1;3) in rice (Oryza s...
International audienceIn Arabidopsis four root-expressed AMT genes encode functional ammonium transp...
Abstract: AMT1-3 encodes the high affinity NH4+ transporter in rice roots and is predominantly expre...
Nitrate and manganese (Mn) are necessary elements for the growth and development of rice in paddy so...
Maintaining an appropriate balance of carbon to nitrogen metabolism is essential for rice growth and...
<div><p>Maintaining an appropriate balance of carbon to nitrogen metabolism is essential for rice gr...
To understand the reallocation of organic nitrogen from leaf to the flower head of rice, the role of...
The NH4 + and NO3 ? are N sources available for plant nutrition in most soils. The NH4+ role in plan...