Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source
Leport L, Kandlbinder A, Baur B, Kaiser WM (1996)
Planta 198: 495-501.
Zeitschriftenaufsatz
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Autor*in
Leport, L.;
Kandlbinder, AndreaUniBi;
Baur, B.;
Kaiser, W.M.
Erscheinungsjahr
1996
Zeitschriftentitel
Planta
Band
198
Seite(n)
495-501
ISSN
0032-0935
Page URI
https://pub.uni-bielefeld.de/record/1865924
Zitieren
Leport L, Kandlbinder A, Baur B, Kaiser WM. Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source. Planta. 1996;198:495-501.
Leport, L., Kandlbinder, A., Baur, B., & Kaiser, W. M. (1996). Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source. Planta, 198, 495-501.
Leport, L., Kandlbinder, Andrea, Baur, B., and Kaiser, W.M. 1996. “Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source”. Planta 198: 495-501.
Leport, L., Kandlbinder, A., Baur, B., and Kaiser, W. M. (1996). Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source. Planta 198, 495-501.
Leport, L., et al., 1996. Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source. Planta, 198, p 495-501.
L. Leport, et al., “Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source”, Planta, vol. 198, 1996, pp. 495-501.
Leport, L., Kandlbinder, A., Baur, B., Kaiser, W.M.: Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source. Planta. 198, 495-501 (1996).
Leport, L., Kandlbinder, Andrea, Baur, B., and Kaiser, W.M. “Diurnal modulation of PEP carboxylation in pea leaves and roots as related to tissue malate concentrations and to the nitrogen source”. Planta 198 (1996): 495-501.