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Studies on the Respiratory Physiology of Euglena gracilis Cultured on Acetate or Glucose

Bernd Heinrich, J. R. COOK

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Abstract

SYNOPSIS. The glyoxylate cycle operates at a high level in Euglena gracilis when acetate is the only carbon source, and at a low level when glucose is the only carbon source, as indicated by activities of malate synthase. Altho glucose causes a moderate repression of some of the enzymes of the glyoxylate cycle, it neither represses nor inhibits malate synthase. The specific activity of the malic enzyme was about 5‐fold greater in acetate‐grown Euglena than in glucose‐grown cells, but the absolute rate of CO2 fixation was about twice as great in cells grown on glucose. The respiratory quotient was unity regardless of substrate.

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SYNOPSIS. The glyoxylate cycle operates at a high level in Euglena gracilis when acetate is the only carbon source, and at a low level when glucose is the only carbon source, as indicated by activities of malate synthase. Altho glucose causes a moderate repression of some of the enzymes of the glyoxylate cycle, it neither represses nor inhibits malate synthase. The specific activity of the malic enzyme was about 5‐fold greater in acetate‐grown Euglena than in glucose‐grown cells, but the absolute rate of CO2 fixation was about twice as great in cells grown on glucose. The respiratory quotient was unity regardless of substrate.

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Available abstract

SYNOPSIS. The glyoxylate cycle operates at a high level in Euglena gracilis when acetate is the only carbon source, and at a low level when glucose is the only carbon source, as indicated by activities of malate synthase. Altho glucose causes a moderate repression of some of the enzymes of the glyoxylate cycle, it neither represses nor inhibits malate synthase. The specific activity of the malic enzyme was about 5‐fold greater in acetate‐grown Euglena than in glucose‐grown cells, but the absolute rate of CO2 fixation was about twice as great in cells grown on glucose. The respiratory quotient was unity regardless of substrate.

Key concepts: Euglena gracilis, Glyoxylate cycle, Euglena, Malate synthase, Biochemistry, Respiratory quotient, Carbon fixation, Malate dehydrogenase

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