INVESTIGADORES
SAIGO Mariana
artículos
Título:
Biochemical approaches to C4 photosynthesis evolution studies: the case of malic enzymes decarboxylases
Autor/es:
MARIANA SAIGO; MARCOS A. TRONCONI; MARIEL GERRARD WHEELER; CLARISA E. ALVAREZ ; MARÍA FABIANA DRINCOVICH; CARLOS S. ANDREO
Revista:
PHOTOSYNTHESIS RESEARCH
Editorial:
SPRINGER
Referencias:
Lugar: Berlin; Año: 2013 vol. 117 p. 177 - 187
ISSN:
0166-8595
Resumen:
C4 photosynthesis enables the capture of atmospheric CO2 and its concentration at the site of RuBisCO, thus counteracting the negative effects of low atmospheric levels of CO2 and high (21%) O2 on photosynthesis.  The evolution of this complex syndrome was a multistep process.  It did not occur by simply recruiting pre-exiting components of the pathway from C3 ancestors which were already optimized for C4 function. Rather it involved modifications in the kinetics and regulatory properties of pre-existing isoforms of non-photosynthetic enzymes in C3 plants. Thus, biochemical studies aimed at elucidating the functional adaptations of these enzymes are central to the development of an integrative view of the C4 mechanism. In the present review, the most important biochemical approaches that we currently use to understand the evolution of the C4 isoforms of malic enzyme are summarized. It is expected that this information will help in the rational design of the best decarboxylation processes to provide CO2 for RuBisCO in engineering C3 species to perform C4 photosynthesis.