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Relationship between intracellular pH and N metabolism in maize (Zea mays L.) roots

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Abstract

In vivo 31P nuclear magnetic resonance (NMR) was used to characterize the effect of the N form (NO3 vs. NH4) and the external pH (4, 6, and 8), on the intracellular pH of root tips (0–5 mm) and root segments (5–30 mm). Ammonium-grown root tips were the most sensitive to changes in the external pH. In vivo 15N NMR was used to characterize the pathway of primary ammonium assimilation in the ammonium-grown roots and to compare the activity of the apical and more-basal root parts. The kinetics of 15NH4 + incorporation showed that primary assimilation in both root tips and root segments followed the glutamine synthetase (GS) pathway. In agreement with the reported gradient of GS along the seminal root of maize, incorporation of label into glutamine amide was more rapid in tips than in segments. It is suggested that this higher GS activity increases the endogenous proton production and thus contributes to the greater dependence of the cytoplasmic pH on the external pH in the ammonium-treated root tips.

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References

  • Amancio S and Santos H 1992 J. Exp. Bot. 43, 633–639.

    Google Scholar 

  • Andrade F H and Anderson I C 1986 Crop Sci. 26, 293–296.

    Google Scholar 

  • Belton P S, Lee R B and R GRatcliffe 1985 J. Exp. Bot. 36, 190–210.

    Google Scholar 

  • Feng Y, Schubert S and Mengel K 1992 Plant Physiol. 99, 415–421.

    Google Scholar 

  • Fox G G, Ratcliffe R G, Robinson S A, Slade A P and Stewart G R 1992 J. Magn. Reson. 96, 146–153.

    Google Scholar 

  • Fox G G and Ratcliffe R G 1990 Plant Physiol 93, 512–521.

    Google Scholar 

  • Gerendás J, Ratcliffe R G and Sattelmacher B 1990 J. Plant Physiol. 137, 125–128.

    Google Scholar 

  • Katsuhara M, Kuchitsu K, Takeshige K and Tazawa M 1989 Plant Physiol. 90, 1102–1107.

    Google Scholar 

  • Kime M J, Loughman B C, Ratcliffe R G and Williams R J F 1982 J. Exp. Botany 33, 656–669.

    Google Scholar 

  • Lee R B and Ratcliffe R G 1983 J. Exp. Bot. 34, 1213–1221.

    Google Scholar 

  • Lee R B and Ratcliffe R G 1991 Planta 183, 359–367.

    Google Scholar 

  • Luxova M 1988 Plant Soil 111, 187–189.

    Google Scholar 

  • Martin J-B, Bligny R, Rébeillé F, Douce R, Leguay J-J, Mathieu Y, and Guern J 1982 Plant Physiol. 70, 1156–1161.

    Google Scholar 

  • Oaks A, Stulen I, Jones K, Winspear M J, Misra S and Boesel I L 1980 Planta 148, 477–484.

    Google Scholar 

  • Raven J A 1990 Plant Cell Environm. 13, 721–729.

    Google Scholar 

  • Raven J A and Smith F A 1976 New Phytol. 76, 415–431.

    Google Scholar 

  • Robinson S A, Slade A P, Fox G G, Phillips R, Ratcliffe R G, and Stewart G R 1991 Plant Physiol. 95, 509–516.

    Google Scholar 

  • Stewart G R, Mann A F and Fentem P A 1980 In The Biochemistry of Plants. Vol V. Eds. P K Stumpf and E E Conn. pp. 271–293. Academic Press, London.

    Google Scholar 

  • Wallace W 1973 Plant Physiol. 52, 191–196.

    Google Scholar 

Download references

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Gerendás, J., Ratcliffe, R.G. & Sattelmacher, B. Relationship between intracellular pH and N metabolism in maize (Zea mays L.) roots. Plant Soil 155, 167–170 (1993). https://doi.org/10.1007/BF00025010

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