scholarly journals Nitrate Uptake and Assimilation by Wheat Seedlings during Initial Exposure to Nitrate

1975 ◽  
Vol 55 (6) ◽  
pp. 1102-1106 ◽  
Author(s):  
Doyle A. Ashley ◽  
William A. Jackson ◽  
Richard J. Volk
1978 ◽  
Vol 61 (3) ◽  
pp. 323-326 ◽  
Author(s):  
William B. Frost ◽  
Dale G. Blevins ◽  
Neal M. Barnett

2013 ◽  
Vol 18 (1) ◽  
pp. 23-29 ◽  
Author(s):  
S. Lekshmy ◽  
Vanita Jain ◽  
Sangeeta Khetarpal ◽  
Renu Pandey

2011 ◽  
Vol 52 (No. 2) ◽  
pp. 88-96 ◽  
Author(s):  
M. Trčková ◽  
Z. Stehno ◽  
RaimanováI

Inter- and intra-species differences in nitrate uptake and N allocation were studied in wheat seedlings. Two collections of wheat cultivars Triticum aestivum and Triticum durum were grown at controlled conditions in hydroponics (773&micro;M NO<sub>3</sub><sup>&ndash;</sup>, i.e. 10.8 ppm N-NO<sub>3</sub><sup>&ndash;</sup>). At the age of 3 weeks the net rate of nitrate uptake was measured in depletion experiments and it was expressed as &micro;mol NO<sub>3</sub><sup>&ndash; </sup>per g of root fresh weight per hour (&micro;mol/g FW/h). Nitrate uptake capacity of the whole root system was expressed as &micro;mol NO<sub>3</sub><sup>&ndash; </sup>per plantper hour (&micro;mol/plant/h). At the same time wheat plants were harvested and analyzed for nitrogen content. In contrast to the net rate of NO<sub>3</sub><sup>&ndash; </sup>uptake (3.98&ndash;8.57&nbsp;&micro;mol/g FW/h) the net NO<sub>3</sub><sup>&ndash; </sup>uptake capacity of T. aestivum roots (6.37&ndash;11.66 &micro;mol/plant/h) significantly differed from T. durum roots (15.26&ndash;22.69 &micro;mol/plant/h). Within T. aestivum collection cultivar Roxo exhibits the lowest value in both traits (3.98 &micro;mol NO<sub>3</sub><sup>&ndash;</sup>/g FW/h and 6.67 &micro;mol NO<sub>3</sub><sup>&ndash;</sup>/plant/h). By contrast Strela was characterized by relatively low NO<sub>3</sub><sup>&ndash; </sup>uptake rate (5.47 &micro;mol/g FW/h) and the highest NO<sub>3</sub><sup>&ndash; </sup>uptake capacity (11.66 &micro;mol/plant/h). Intra-species differences in T. durum group were not significant. In both species about 70% total nitrogen was found in shoot. Statistically significant differences in nitrogen content and its allocation were affected by growth rate in early stages of development.


2002 ◽  
Vol 25 (1) ◽  
pp. 17-25 ◽  
Author(s):  
Giovanni Cacco ◽  
Maria Sidari ◽  
Antonio Gelsomino ◽  
Emilio F. Orsega

2003 ◽  
Vol 30 (11) ◽  
pp. 1165 ◽  
Author(s):  
Trevor P. Garnett ◽  
Sergey N. Shabala ◽  
Philip J. Smethurst ◽  
Ian A. Newman

Ion-selective microelectrodes were used non-invasively to measure the concentration dependence of NH4+ and NO3– fluxes around the roots of intact solution-cultured Eucalyptus nitens (Deane & Maiden) Maiden. In addition, NH4+ and H+ fluxes were measured simultaneously at a range of NH4+ concentrations, and NO3– and H+ fluxes were measured simultaneously at a range of NO3– concentrations. Nitrogen concentrations ranged from 10–250 μM, i.e. in the range corresponding to the high affinity transport system (HATS). Both NH4+ and NO3– fluxes exhibited saturating Michaelis–Menten-style kinetics. The Km was 16 μM for NH4+ and 18 μM for NO3–. Values of Vmax were 53 nmol m–2 s–1 for NH4+ and 37 nmol m–2 s–1 for NO3–. Proton fluxes were highly correlated with NH4+ and NO3– fluxes, but the relationships were different. Proton efflux increased with increasing NH4+ concentration and mirrored the changing NH4+ fluxes. The ratio between NH4+ and H+ fluxes was 1 : –1.6. Proton influx was evident with initial exposure to NO3–, with the flux stoichiometry for NO3– : H+ being 1 : 1.4. Subsequent increases in NO3– concentration caused a gradual increase in H+ efflux such that the flux stoichiometry for NO3– : H+ became 1 : –0.8. The presence of 100 μM NH4+ greatly reduced NO3– fluxes and caused a large and constant H+ efflux. These results are evidence that E. nitens has a preference for NH4+ as a source of N, and that the fluxes of NH4+ and NO3– are quantitatively linked to H+ flux.


2020 ◽  
Vol 262 ◽  
pp. 114224 ◽  
Author(s):  
Yineng Weng ◽  
Yue You ◽  
Qi Lu ◽  
Ao Zhong ◽  
Siyi Liu ◽  
...  

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