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Microbial metabolism and the energetic basis of life
Microbial metabolism further evidence for lifes unity
Phototrophic bacteria key to the understanding of greenplant
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3-galactosidase acetic acid acetyl adaptation agar algae amino acids anaerobic appearance arabinose assimilation bacterium behavior biopoesis biosynthetic butyric acid carbon atoms carbon dioxide catalyst CH2OH chemical chemoautotrophic chlorophyll chloroplasts CHOH clone coenzyme coli colonies complex conclusion conversion COOH cytochrome dehydrogenation developed dissimilatory process E"OH environment enzymatic equation ethanol evidence example experiments fermentation formation formed free oxygen genetic glucose green plants growth factors HH HH hydrogen donor implies induced enzyme synthesis inorganic investigations isolated lactose large number Lederberg lipoic acid living organisms macrobiologist mechanism medium metabolic microbe world microbes microbial metabolism Micrococcus denitrificans microorganisms molecular hydrogen molecule mutants nitrate nitrogen observations occur organic compounds oxidation pathway penicillin phenomenon phosphate photosynthetic pigments plates possible present properties protein pyruvic acid radiant energy reactions reduced remarkable requirements result scheme seems shown specific strain studies substances substrate sugar sulfate sulfur bacteria synthetic tion transfer types wild-type yeast