List of bibliographic references
Number of relevant bibliographic references: 19.
| Ident. | Authors (with country if any) | Title |
|---|
| 000110 (1990) |
Joseph C. V. Vu [États-Unis] ; George Yelenosky [États-Unis] ; Roy E. Mcdonald [États-Unis] | Proteins, non-structural carbohydrates and organic acids in the flowers of sweet orange ( Citrus sinensis (L.) osbeck) |
| 000169 (1993) |
V. Vu [États-Unis] ; P. Niedz [États-Unis] ; George Yelenosky [États-Unis] | Glycerol stimulation of chlorophyll synthesis, embryogenesis, and carboxylation and sucrose metabolism enzymes in nucellar callus of ‘Hamlin’ sweet orange |
| 000334 (1993) |
Joseph C. V. Vu [États-Unis] ; George Yelenosky [États-Unis] | Photosynthesis and freeze tolerance comparisons of the newly released “ambersweet” hybrid with “valencia” orange |
| 000344 (1995) |
Joseph C. V. Vu [États-Unis] ; Sanjay K. Gupta [États-Unis] ; George Yelenosky [États-Unis] ; Maurice S. B. Ku [États-Unis] | Cold-induced changes in ribulose 1,5-bisphosphate carboxylase-oxygenase and phosphoenolpyruvate carboxylase in citrus |
| 000447 (1988) |
Lola Pe Arrubia [Espagne] ; Joaquín Moreno [Espagne] ; José L. García-Martínez [Espagne] | Proteolysis of ribulose‐1,5‐bisphosphate carboxylase/oxygenase in leaves of Citrus explants throughout the annual cycle and its regulation by ethylene |
| 000493 (1991) |
Joseph C. V. Vu [États-Unis] ; George Yelenosky [États-Unis] | Photosynthetic responses of citrus trees to soil flooding |
| 000506 (1988) |
Lola Pe Arrubia [Espagne] ; Joaquín Moreno [Espagne] | Ribulose 1,5-bisphosphate carboxylase/oxygenase from citrus leaves |
| 000592 (1989) |
G. Jones [États-Unis] ; J. Daniel Hare [États-Unis] ; J. Compton [États-Unis] | Measuring plant protein with the Bradford assay |
| 000701 (2007) |
Valeria Sorrenti [Italie] ; Francesco Mazza [Italie] ; Agata Campisi [Italie] ; Claudia Di Giacomo [Italie] ; Rosaria Acquaviva [Italie] ; Luca Vanella [Italie] ; Fabio Galvano [Italie] | Heme oxygenase induction by cyanidin‐3‐O‐β‐glucoside in cultured human endothelial cells |
| 000B22 (1992) |
A. Scott Holaday [États-Unis] ; Steven W. Ritchie [États-Unis] ; Henry T. Nguyen [États-Unis] | Effects of water deficit on gas-exchange parameters and ribulose 1,5-bisphosphate carboxylase activation in wheat |
| 000B23 (1992) |
Joseph C. V. Vu [États-Unis] ; George Yelenosky [États-Unis] | Photosnythetic responses of rough lemon and sour orange to soil flooding, chilling, and short-term temperature fluctuations during growth |
| 000C03 (1990) |
Lola Pe Arrubia [Espagne] ; Joaquín Moreno [Espagne] | Increased susceptibility of ribulose-1,5-bisphosphate carboxylase/oxygenase to proteolytic degradation caused by oxidative treatments |
| 000E01 (1986) |
José L. García-Martínez [Espagne] ; Joaquín Moreno [Espagne] | Proteolysis of ribulose‐1,5‐bisphosphate carboxylase/oxygenase in Citrus leaf extracts |
| 000E64 (1991) |
Lola Pe Arrubia [Espagne] ; Joaquín Moreno [Espagne] | Protection and enhancement of ribulose 1,5 bisphosphate carboxylase activity by exogenous proteins |
| 001325 (1984) |
Joaquin Moreno [Espagne] ; José L. García-Martinez [Espagne] | Nitrogen accumulation and mobilization in Citrus leaves throughout the annual cycle |
| 001422 (1987) |
Lola Pe Arrubia [Espagne] ; Joaquin Moreno [Espagne] | Spontaneous and shear-induced inactivation of ribulose-1,5-bisphosphate carboxylase/oxygenase in vitro |
| 001665 (2001) |
Angela Mehta [Brésil] ; Yoko Bomura Rosato [Brésil] | Differentially expressed proteins in the interaction of Xanthomonas axonopodis pv. citri with leaf extract of the host plant |
| 001834 (2001) |
B. V. Milborrow [Australie] | The pathway of biosynthesis of abscisic acid in vascular plants: a review of the present state of knowledge of ABA biosynthesis |
| 001908 (2012) |
Ning Tang [République populaire de Chine] ; Yan Li [République populaire de Chine] ; Li-Song Chen [République populaire de Chine] | Magnesium deficiency–induced impairment of photosynthesis in leaves of fruiting Citrus reticulata trees accompanied by up‐regulation of antioxidant metabolism to avoid photo‐oxidative damage |
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