Higher plants and cyanobacteria metabolize sucrose (Suc) by a similar set of enzymes. Suc synthase (SuS, UDP-glucose: D-fructose 2- -D-glucosyl transferase, EC 2.4.1.13) catalyses the synthesis and cleavage of Suc, and in higher plants, it plays an important role in polysaccharides biosynthesis and carbon allocation. In this work, we have studied the functional relationship between SuS and the metabolism of polysaccharides in Wlamentous nitrogen-Wxing cyanobacteria. We show that the nitrogen and carbon sources and light regulate the expression of the SuS encoding gene (susA), in a similar way that they regulate the accumulation of polysaccharides. Furthermore, glycogen content in an Anabaena sp. mutant strain with an insertion inactivation ...
Bloom-forming cyanobacteria are widely distributed in freshwater ecosystems. To cope with salinity f...
AbstractSucrose synthase catalyzes the reversible conversion of sucrose and UDP into fructose and UD...
Cyanobacteria are generally capable of photoautotrophic growth and are widely distributed on Earth. ...
Higher plants and cyanobacteria metabolize sucrose (Suc) by a similar set of enzymes. Suc synthase (...
In higher plants and cyanobacteria, sucrose (Suc) metabolism is carried out by a similar set of enzy...
AbstractSucrose synthase (SuS) expression was studied in the filamentous, nitrogen-fixing cyanobacte...
Nitrogen (N) available to plants mostly originates from N2 fixation carried out by prokaryotes. Cert...
Sucrose synthase (SuS) expression was studied in the filamentous, nitrogen-fixing cyanobacterium Ana...
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanob...
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanob...
Plants and most cyanobacteria metabolize sucrose (Suc) with a similar set of enzymes. In Synechococc...
Sucrose synthase catalyzes the reversible conversion of sucrose and UDP into fructose and UDP-glucos...
It has been reported that higher plants and cyanobacteria synthesize sucrose (Suc) by a similar sequ...
In the heterocyst-forming cyanobacterium Anabaena sp. PCC 7120 (also known as Nostoc sp. PCC 7120), ...
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanob...
Bloom-forming cyanobacteria are widely distributed in freshwater ecosystems. To cope with salinity f...
AbstractSucrose synthase catalyzes the reversible conversion of sucrose and UDP into fructose and UD...
Cyanobacteria are generally capable of photoautotrophic growth and are widely distributed on Earth. ...
Higher plants and cyanobacteria metabolize sucrose (Suc) by a similar set of enzymes. Suc synthase (...
In higher plants and cyanobacteria, sucrose (Suc) metabolism is carried out by a similar set of enzy...
AbstractSucrose synthase (SuS) expression was studied in the filamentous, nitrogen-fixing cyanobacte...
Nitrogen (N) available to plants mostly originates from N2 fixation carried out by prokaryotes. Cert...
Sucrose synthase (SuS) expression was studied in the filamentous, nitrogen-fixing cyanobacterium Ana...
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanob...
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanob...
Plants and most cyanobacteria metabolize sucrose (Suc) with a similar set of enzymes. In Synechococc...
Sucrose synthase catalyzes the reversible conversion of sucrose and UDP into fructose and UDP-glucos...
It has been reported that higher plants and cyanobacteria synthesize sucrose (Suc) by a similar sequ...
In the heterocyst-forming cyanobacterium Anabaena sp. PCC 7120 (also known as Nostoc sp. PCC 7120), ...
In the biosphere, sucrose is mainly synthesized in oxygenic photosynthetic organisms, such as cyanob...
Bloom-forming cyanobacteria are widely distributed in freshwater ecosystems. To cope with salinity f...
AbstractSucrose synthase catalyzes the reversible conversion of sucrose and UDP into fructose and UD...
Cyanobacteria are generally capable of photoautotrophic growth and are widely distributed on Earth. ...