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  • Central carbon metabolism and electron transport in Chlamydomonas reinhardtii: metabolic constraints for carbon partitioning between oil and starch.

Central carbon metabolism and electron transport in Chlamydomonas reinhardtii: metabolic constraints for carbon partitioning between oil and starch.

Eukaryotic cell (2013-04-02)
Xenie Johnson, Jean Alric
摘要

The metabolism of microalgae is so flexible that it is not an easy task to give a comprehensive description of the interplay between the various metabolic pathways. There are, however, constraints that govern central carbon metabolism in Chlamydomonas reinhardtii that are revealed by the compartmentalization and regulation of the pathways and their relation to key cellular processes such as cell motility, division, carbon uptake and partitioning, external and internal rhythms, and nutrient stress. Both photosynthetic and mitochondrial electron transfer provide energy for metabolic processes and how energy transfer impacts metabolism and vice versa is a means of exploring the regulation and function of these pathways. A key example is the specific chloroplast localization of glycolysis/gluconeogenesis and how it impacts the redox poise and ATP budget of the plastid in the dark. To compare starch and lipids as carbon reserves, their value can be calculated in terms of NAD(P)H and ATP. As microalgae are now considered a potential renewable feedstock, we examine current work on the subject and also explore the possibility of rerouting metabolism toward lipid production.

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淀粉 来源于马铃薯, Soluble
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淀粉, puriss. p.a., from potato, reag. ISO, reag. Ph. Eur., soluble
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淀粉 来源于玉米, practical grade
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淀粉 来源于玉米, Unmodified waxy corn starch of essentially pure amylopectin; contains only trace amounts of amylose.
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淀粉, from potato, tested according to Ph. Eur.
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淀粉 来源于玉米, for use with Total Dietary Fiber Control Kit, TDF-C10