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Titlebook: Microorganisms as Model Systems for Studying Evolution; Robert P. Mortlock Book 1984 Springer Science+Business Media New York 1984 enzymes

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Christopher Willsild the foundation on which our discussion will be conducted, in this chapter we first introduce some basic definitions that are relevant to our study, such as resource, resource management and IoT ecosystem. Then, we identify the main requirements and challenges related to resource management in th
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The Structure and Control of the Pentitol Operons,enetic mapping of Charnetzky and Mortlock (1974) and the parallel work of Reiner (1975; Scangos and Reiner, 1978a) in . C, had made clear that the . and . Operons were probably contiguous, with a gene order ., where . encodes .-ribulokinase (DRK); ., .-xylulokinase (DXK); ., ribitol dehydrogenase (R
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Functional Divergence of the ,-Fucose System in Mutants of Escherichi coli,hree concepts for biochemical evolution: (1) a pyridine nucleotide-linked oxidoreductase can be elected by the cell to serve as either a dehydrogenase or a reductase, depending primarily on the mode of regulating the expression of the structural gene and on the nature of the preceding and following
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,The Evolved β-Galactosidase System of Escherichia coli,ions. How does an organism that is already well adapted to its environment evolve a new function to cope with an altered environment? The synthetic theory of evolution does not really address the problem of the evolution of novel functions, nor does population genetics deal with the appearance of ne
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Arrangement and Rearrangement of Bacterial Genomes,uitfully studied. In this chapter, the focus will be on rearrangements, some on a small scale, occurring within genes, and others on a large scale, causing gross chromosomal rearrangements of the whole bacterial genome. On the whole, less is known about the molecular events of chromosome rearrangeme
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