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Titlebook: Genetic Engineering: Principles and Methods; Jane K. Setlow Book 2004 Springer Science+Business Media New York 2004 Calcium.Lipid.Microarr

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https://doi.org/10.1007/978-3-642-72328-5ns that are naturally competent for transformation. It has been observed in a wide range of organisms (1). Of the three horizontal gene transfer processes — transformation, conjugation, and transduction — natural genetic transformation has the least requirements (1). For instance, there is no need f
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Nachtrag zur Quellendarstellunghe last 25 years, as they may represent basic mechanisms to store certain types of information in neuronal networks. In several brain regions, these two forms of synaptic plasticity require dendritic depolarization, and the amplitude and duration of the depolarization-induced calcium signal are cruc
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https://doi.org/10.1007/978-3-476-03072-6Gram-negative bacteria, in which it fine-tunes expression of a tetracycline-specific export protein mediating resistance against this antibiotic. This review attempts to describe briefly the selective pressures governing the evolution of tetracycline regulation, which have led to the unique regulato
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Genetic Engineering: Principles and Methods978-0-306-48573-2Series ISSN 0196-3716
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https://doi.org/10.1007/978-0-306-48573-2Calcium; Lipid; Microarray; Organe; cyclin; enzymes; genes; genetic engineering; microscopy
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,Liberale Ladenschlußkonzepte im Ausland,Complex networks appear in biology on many different levels:.All biochemical reactions taking place in a single cell constitute its metabolic network, where nodes are individual metabolites, and edges are metabolic reactions converting them to each other.
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