Affiliation:
1. Department of Bacteriology, University of Wisconsin, Madison, Wisconsin 53706
Abstract
Significant quantitative differences in end-product yields by two strains of
Clostridium thermocellum
and one strain of
Thermoanaerobium brockii
were observed during cellobiose fermentation. Most notably, the ethanol/H
2
and lactate/acetate ratios were drastically higher for
T. brockii
as compared with
C. thermocellum
strains LQRI and AS39. Exogenous H
2
addition (0.4 to 1.0 atm) during culture growth increased the ethanol/acetate ratio of both
T. brockii
and AS39 but had no effect on LQRI. All strains had an operative Embden-Meyerhof glycolytic pathway and displayed catabolic activities of fructose-1,6-diphosphate–activated lactate dehydrogenase, coenzyme A acetylating pyruvate and acetaldehyde dehydrogenase, hydrogenase, ethanol dehydrogenase, and acetate kinase. Enzyme kinetic properties (apparent
K
m
,
V
max
, and Q
10
values) and the specificity of electron donors/acceptors for different oxidoreductases involved in pyruvate conversion to fermentation products were compared in the three strains. Both species contained ferredoxin-linked pyruvate dehydrogenase and pyridine nucleotide oxidoreductases. Ferredoxin-nicotinamide adenine dinucleotide (NAD) reductase activity was significantly higher in
T. brockii
than in AS39 and was not detectable in LQRI. H
2
production and hydrogenase activity were inversely related to ferredoxin-NAD reductase activity in the three strains. Ferredoxin-NAD phosphate reductase activity was present in cell extracts of both species. Alcohol dehydrogenase activity in
C. thermocellum
was NAD dependent, unidirectional, and inhibited by low concentrations of NAD and ethanol. Ethanol dehydrogenase activity of
T. brockii
was both NAD and NADP linked, reversible, and not inhibited by low levels of reaction products. The high lactate yield of
T. brockii
correlated with increased fructose-1,6-diphosphate. The relation of catabolic enzyme activity and quantitative differences in intracellular electron flow and fermentation product yields of these thermophilic bacteria is discussed.
Publisher
American Society for Microbiology
Subject
Molecular Biology,Microbiology
Cited by
225 articles.
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