THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS

Dietz K-J, FOYER C (1986)
Planta 167(3): 376-381.

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Autor*in
Erscheinungsjahr
1986
Zeitschriftentitel
Planta
Band
167
Ausgabe
3
Seite(n)
376-381
ISSN
0032-0935
eISSN
1432-2048
Page URI
https://pub.uni-bielefeld.de/record/2408215

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Dietz K-J, FOYER C. THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS. Planta. 1986;167(3):376-381.
Dietz, K. - J., & FOYER, C. (1986). THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS. Planta, 167(3), 376-381. https://doi.org/10.1007/BF00391342
Dietz, Karl-Josef, and FOYER, C. 1986. “THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS”. Planta 167 (3): 376-381.
Dietz, K. - J., and FOYER, C. (1986). THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS. Planta 167, 376-381.
Dietz, K.-J., & FOYER, C., 1986. THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS. Planta, 167(3), p 376-381.
K.-J. Dietz and C. FOYER, “THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS”, Planta, vol. 167, 1986, pp. 376-381.
Dietz, K.-J., FOYER, C.: THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS. Planta. 167, 376-381 (1986).
Dietz, Karl-Josef, and FOYER, C. “THE RELATIONSHIP BETWEEN PHOSPHATE STATUS AND PHOTOSYNTHESIS IN LEAVES - REVERSIBILITY OF THE EFFECTS OF PHOSPHATE DEFICIENCY ON PHOTOSYNTHESIS”. Planta 167.3 (1986): 376-381.

20 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

An SPX-RLI1 Module Regulates Leaf Inclination in Response to Phosphate Availability in Rice.
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Seasonal Alterations in Organic Phosphorus Metabolism Drive the Phosphorus Economy of Annual Growth in F. sylvatica Trees on P-Impoverished Soil.
Netzer F, Herschbach C, Oikawa A, Okazaki Y, Dubbert D, Saito K, Rennenberg H., Front Plant Sci 9(), 2018
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Linking phosphorus availability with photo-oxidative stress in plants.
Hernández I, Munné-Bosch S., J Exp Bot 66(10), 2015
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Molecular mechanisms underlying phosphate sensing, signaling, and adaptation in plants.
Zhang Z, Liao H, Lucas WJ., J Integr Plant Biol 56(3), 2014
PMID: 24417933
Review of nitrogen and phosphorus metabolism in seagrasses.
Touchette BW, Burkholder JM., J Exp Mar Bio Ecol 250(1-2), 2000
PMID: 10969167
Effects of phosphorus and ectomycorrhiza on maritime pine seedlings (Pinus pinaster)
CONJEAUD C, P. SCHEROMM, D. MOUSAIN., new phytologist. 133(2), 1996
PMID: IND20630747
Phosphate transport across biomembranes and cytosolic phosphate homeostasis in barley leaves.
Mimura T, Dietz KJ, Kaiser W, Schramm MJ, Kaiser G, Heber U., Planta 180(2), 1990
PMID: 24201937
Effects of phosphorus nutrition on photosynthesis in Glycine max (L.) Merr.
Fredeen AL, Raab TK, Rao IM, Terry N., Planta 181(3), 1990
PMID: 24196818
The mechanisms contributing to photosynthetic control of electron transport by carbon assimilation in leaves.
Foyer C, Furbank R, Harbinson J, Horton P., Photosynth Res 25(2), 1990
PMID: 24420275
Phosphate sequestration by glycerol and its effects on photosynthetic carbon assimilation by leaves.
Leegood RC, Labate CA, Huber SC, Neuhaus HE, Stitt M., Planta 176(1), 1988
PMID: 24220742

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