The supernodulating variety “Sakukei 4”, which has improved growth and yield, was recently developed. To evaluate its physiological traits related to the high productivity, we compared dry matter production, nitrogen (N) accumulation and N utilization in Sakukei 4 with those in the parental normally nodulating varieties, Enrei and Tamahomare, and a nonnodulating line, En1282, in pot experiments. The seed yield of Sakukei 4 was similar to that of Enrei and Tamahomare.Leaf area and relative ureide abundance in xylem sap were maintained for longer growth period in Sakukei 4 and Tamahomare than in Enrei. The total amount of nodule N2fixation at maturity was also larger in Sakukei 4 andTamahomare than in Enrei and En1282. In En1282 and Enrei, a ...
Four soybean cultivars differing in the duration of the seed filling period (SFP) were evaluated in ...
Nitrogen (N) is present in proteins, enzymes, cell structures, purines and pyrimidines in DNA and RN...
A large amount of nitrogen is redistributed from vegetative organs to the seeds during seed filling ...
The supernodulating variety 'Sakukei 4', which has improved growth and yield, was recently developed...
The supernodulating soybean cultivar Sakukei 4 was previously characterized by its superior ability ...
The supernodulating soybean genotype Sakukei 4 is potentially high-yielding. We characterized its le...
Supernodulating soybeans, having several times more nodules than normal genotypes, are expected to p...
Supernodulating soybean lines have more than several times as many nodules as normal cultivars. They...
Soybean requires more nitrogen (N) than gramineous crops because it accumulates a large amount of N ...
Most of the supernodulating soybean lines were agronomically inferior to conventional genotypes. Our...
Development and commercial use of cultivars of soybean with high N-2 fixation activity, even in the ...
Soybean redistributes or 201C;mobilizes” a large amount of its vegetative nitrogen in support of syn...
Nitrogen assimilation during seed filling limits the seed yield in soybean. Seed nitrogen dependence...
Biological N2 fixation can fulfil the N demand of legumes but may cost as much as 14% of current pho...
Recent reviews about soybean nitrogen (N)requirement have speculated about a possible N limitation i...
Four soybean cultivars differing in the duration of the seed filling period (SFP) were evaluated in ...
Nitrogen (N) is present in proteins, enzymes, cell structures, purines and pyrimidines in DNA and RN...
A large amount of nitrogen is redistributed from vegetative organs to the seeds during seed filling ...
The supernodulating variety 'Sakukei 4', which has improved growth and yield, was recently developed...
The supernodulating soybean cultivar Sakukei 4 was previously characterized by its superior ability ...
The supernodulating soybean genotype Sakukei 4 is potentially high-yielding. We characterized its le...
Supernodulating soybeans, having several times more nodules than normal genotypes, are expected to p...
Supernodulating soybean lines have more than several times as many nodules as normal cultivars. They...
Soybean requires more nitrogen (N) than gramineous crops because it accumulates a large amount of N ...
Most of the supernodulating soybean lines were agronomically inferior to conventional genotypes. Our...
Development and commercial use of cultivars of soybean with high N-2 fixation activity, even in the ...
Soybean redistributes or 201C;mobilizes” a large amount of its vegetative nitrogen in support of syn...
Nitrogen assimilation during seed filling limits the seed yield in soybean. Seed nitrogen dependence...
Biological N2 fixation can fulfil the N demand of legumes but may cost as much as 14% of current pho...
Recent reviews about soybean nitrogen (N)requirement have speculated about a possible N limitation i...
Four soybean cultivars differing in the duration of the seed filling period (SFP) were evaluated in ...
Nitrogen (N) is present in proteins, enzymes, cell structures, purines and pyrimidines in DNA and RN...
A large amount of nitrogen is redistributed from vegetative organs to the seeds during seed filling ...