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Delivery of N2 to bacteroids in simulated soybean nodule cells: consideration of gradients of concentration of dissolved N2 in cell walls, cytoplasm, and symbiosomes

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Summary

The previously published simulation of physiological functions occurring in infected cells of soybean nodules has been extended to include consideration of the diffusion of N2 from the outside of a nodule to the nitrogen-fixing bacteroids, in relation to published values for the apparentK m(N2) for nitrogen fixation in the soybean nodule system. Nitrogen fixation is driven by bacteroid respiration, so increases in the average relative oxygenation (Y) of cytoplasmic leghaemoglobin lead to increased bacteroid respiration, increased nitrogen fixation, and greater differences in concentration of dissolved N2 between the cell surface and the innermost bacteroids (d[N2]). Over the range ofY considered, values for d[N2] were from 5.2- to 6.2-fold greater than the corresponding values for d[O2], because of facilitation of O2 flux by cytoplasmic leghaemoglobin. Gradients of [N2] within symbiosomes are small relative to cytoplasmic values and at the symbiosome surface [N2] was greater than 0.4 mol/m3 at the greatest rates of nitrogen fixation calculated. Therefore, it is unlikely that values for [N2] anywhere in the infected cell are low enough to affect rates of nitrogen fixation significantly, unless low external atmospheric N2 pressures are used experimentally.

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Abbreviations

Lb:

leghaemoglobin

LbO2 :

oxyleghaemoglobin

[O2], [N2 :

concentrations of free, dissolved oxygen and nitrogen

Y :

fractional oxygenation of leghaemoglobin

References

  • Appleby CA (1969) Properties of leghaemoglobin in vivo and its isolation as ferrous oxyleghaemoglobin. Biochim Biophys Acta 188: 222–229

    Google Scholar 

  • — (1984) Leghemoglobin andRhizobium respiration. Annu Rev Plant Physiol 35: 443–478

    Google Scholar 

  • — (1992) The origin and functions of haemoglobin in plants. Sci Prog 76: 395–398

    Google Scholar 

  • —, Bergersen FJ (1980) Preparation and experimental use of leghaemoglobin. In: Bergersen FJ (ed) Methods for evaluating biological nitrogen fixation. Wiley, Chichester, pp 315–335

    Google Scholar 

  • Arnold JH (1930) Studies in diffusion II: a kinetic theory of diffusion in liquid systems. J Am Chem Soc 52: 3937–3955

    Google Scholar 

  • Bergersen FJ (1962a) Oxygenation of leghaemoglobin in soybean root nodules in relation to the external oxygen tension. Nature 194: 1059–1061

    Google Scholar 

  • — (1962b) The effects of partial pressure of oxygen upon respiration and nitrogen fixation by soybean root nodules. J Gen Microbiol 29: 113–125

    Google Scholar 

  • — (1991) Physiological control of nitrogenase and uptake hydrogenase. In: Dilworth MJ, Glen AR (eds) Biology and biochemistry of nitrogen fixation. Elsevier, Amsterdam, pp 76–102

    Google Scholar 

  • — (1993) Diffusion of oxyleghaemoglobin. Ann Bot 72: 577–582

    Google Scholar 

  • — (1994) Distribution of O2 within infected cells of soybean root nodules: a new simulation. Protoplasma 183: 49–64

    Google Scholar 

  • — (1996) Delivery of O2 to bacteroids in nodule cells: consideration of gradients of concentration of free, dissolved O2 in and near symbiosomes and beneath intercellular spaces. Protoplasma 191: 9–20

    Google Scholar 

  • — (1997a) Regulation of nitrogen fixation in infected cells of leguminous root nodules in relation to O2 supply. Plant Soil 191: 189–203

    Google Scholar 

  • — (1997b) Physiological and biochemical aspects of nitrogen fixation by bacteroids in soybean nodule cells. Soil Biol Biochem 29: 875–880

    Google Scholar 

  • —, Turner GL (1968) Comparative studies of nitrogen fixation by soybean root nodules, bacteroid suspensions and cell-free extracts. J Gen Microbiol 53: 205–220

    Google Scholar 

  • Canny MJ (1990) Rates of apoplastic diffusion in wheat leaves. New Phytol 116: 263–268

    Google Scholar 

  • Crank J (1956) The mathematics of diffusion. Clarendon Press, Oxford

    Google Scholar 

  • Deane JA (ed) (1956) Lange's handbook of chemistry, 12th edn. McGraw-Hill, New York

    Google Scholar 

  • Koch B, Evans HJ, Russel S (1967) Properties of the nitrogenase system in cell-free extracts of bacteroids from soybean root nodules. Proc Natl Acad Sci USA 58: 1343–1350

    Google Scholar 

  • Kuzma MM, Hunt S, Layzell DB (1993) Role of oxygen in the limitation and inhibition of nitrogenase activity and respiration rate in individual soybean nodules. Plant Physiol 101: 161–169

    Google Scholar 

  • Layzell DB, Hunt S, Palmer GR (1990) Mechanism of nitrogenase inhibition in soybean nodules: pulse-modulated spectroscopy indicates that nitrogenase activity is limited by O2. Plant Physiol 92: 1101–1107

    Google Scholar 

  • Udvardi MK, Day DA (1997) Metabolite transport across symbiotic membranes of legume nodules. Annu Rev Plant Physiol Plant Mol Biol 48: 493–523

    Google Scholar 

  • Vaupel P (1976) Effect of percentual water content in tissue and liquids on the diffusion coefficients of O2, CO2, N2, and H2. Pflügers Arch 361: 201–204

    Google Scholar 

  • Whitehead LF, Day DA (1997) The peribacteroid membrane. Physiol Plant 100: 30–44

    Google Scholar 

  • Wilson PW (1940) The biochemistry of symbiotic nitrogen fixation. University of Wisconsin Press, Madison, Wis

    Google Scholar 

  • Witty JF, Minchin FR (1990) Oxygen diffusion in the legume root nodule. In: Gresshoff PM, Roth FE, Stacey G, Newton WE (eds) Nitrogen fixation: achievements and objectives. Chapman and Hall, New York, pp 285–292

    Google Scholar 

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Bergersen, F.J. Delivery of N2 to bacteroids in simulated soybean nodule cells: consideration of gradients of concentration of dissolved N2 in cell walls, cytoplasm, and symbiosomes. Protoplasma 206, 137–142 (1999). https://doi.org/10.1007/BF01279260

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  • DOI: https://doi.org/10.1007/BF01279260

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