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Общее количество найденных документов : 19
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1.
Parry M.A.J. Variation in the specificity factor of C[3] higher plant Rubiscos determined by the total consumption of ribulose-P[2] // J. Exp. Bot., 1989. Vol. 40, N 212.-С.317-320

2.
Branden R. Rapid kinetics of an N-terminal mutant of cyanobacterial ribulose-1,5-bisphosphate carboxylase/oxygenase // Biochim. et biophys. acta. Protein Struct. and Mol. Enzymol., 1990. Vol. 1037, N 3.-С.328-331

3.
Pehu E. Variation in net photosynthesis, Rubisco activity and chloroplast ultrastructure among somatic hybrids of Solanum tuberosum and S. brevidens // J. Exp. Bot., 1990. Vol. 41, N 228.-С.769-774

4.
Interacting effects of CO[2] concentration, temperature and nitrogen supply on the photosynthesis and composition of winter wheat leaves // Plant, Cell and Environment, 1994. Vol. 17, N 11.-С.1205-1213

5.
Species variation in Rubisco specificity factor // J. Exp. Bot., 1995. Vol. 46, N 292.-С.1775-1777

6.
Climate change and winter wheat: Effects on photosynthesis, productivity and yield // J. Exp. Bot., 1995. Vol. 46, Suppl..-С.4

7.
Foyer C.H. The absence of Rubisco activase activity in total wheat leaf extracts is recovered in the purified protein // J. Exp. Bot., 1995. Vol. 46, N 289.-С.1055-1060

8.
Climate change and winter wheat: Effects on photosynthesis, productivity and yield // J. Exp. Bot., 1995. Vol. 46, Suppl..-С.4

9.
Rubisco regulation: The purification and molecular analysis of CAIP-phosphatase // J. Exp. Bot., 1996. Vol. 47, Suppl..-С.75-76

10.
Studies on the natural inhibitors of Rubisco // J. Exp. Bot., 1996. Vol. 47, Suppl..-С.76

11.
Long term water stress inactivates Rubisco in subterranean clover // Ann. Appl. Biol., 1997. Vol. 131, N 3.-С.491-501

12.
Potential for manipulating carbon metabolism in wheat // Ann. Appl. Biol., 2001. Vol. 138, N 1.-С.33-45

13.
Potential for manipulating carbon metabolism in wheat // Ann. Appl. Biol., 2001. Vol. 138, N 1.-С.33-45

14.
Co[2]/O[2] specificity factor of ribulose-1,5-bisphosphate carboxylase/oxygenase in grapevines (Vitis vinifera L.): First in vitro determination and comparison to in vivo estimations // Vitis, 2002. Vol. 41, N 4.-С.163-168

15.
Dark chilling imposes metabolic restrictions on photosynthesis in soybean // Plant, Cell and Environ., 2003. Vol. 26, N 2.-С.323-337

16.
Dark chilling imposes metabolic restrictions on photosynthesis in soybean // Plant, Cell and Environ., 2003. Vol. 26, N 2.-С.323-337

17.
Prospects for increasing photosynthesis by overcoming the limitations of Rubisco // J. Agr. Sci., 2007. Vol. 145, N 1.-С.31-43

18.
Prospects for increasing photosynthesis by overcoming the limitations of Rubisco // J. Agr. Sci., 2007. Vol. 145, N 1.-С.31-43

19.
Arabidopsis sucrose non-fermenting-1-related protein kinase-1 and calcium-dependent protein kinase phosphorylate conserved target sites in ABA response element binding proteins // Ann. Appl. Biol., 2008. Vol. 153, N 3.-С.401-409

 




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