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Titlebook: Genetic Flux in Plants; Barbara Hohn,Elisabeth S. Dennis Book 1985 Springer-Verlag/Wien 1985 plants

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Genetic Flux in Plants978-3-7091-8765-4Series ISSN 0175-2073
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Das Mikroskop und seine Anwendunginally just virus, the agent that caused tobacco mosaic disease: the tobacco mosaic virus (TMV). Soon many animal and other plant diseases were found to be due to similar agents. What differentiates the viruses from previously known infectious agents, besides their submicroscopic size, was their obl
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Das Mikroskop und seine Anwendungell, 1982; Caplan ., 1983; Depicker ., 1983; Zambryski . 1983a). In nature, the infection is often located at or near the junction of the root and the stem, the crown of the plant. Since the turn of the century, plant pathologists have been interested in this malignant transformation not only becaus
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,Das Minimum von ζ Aurigae 1947/48,ted in the demonstration of plastid (pt) DNA in the late 1960’s. At the same time there was mounting biochemical and genetic evidence which showed that most of plastid biogenesis and function was controlled by nuclear genes and involved proteins synthesized on cytoplasmic ribosomes (see reviews by K
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,Verschlüsseln und Entschlüsseln,tered into, and established a stable symbiotic relationship with, a progenitor eukaryotic cell. Because the majority of mitochondrial and chloroplast proteins are genetically encoded in nuclear DNA (nDNA), the hypothesis predicts that transfer of genes from the two cytoplasmic genomes to the nucleus
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https://doi.org/10.1007/978-3-663-16175-2First, the size of the genome is very large — embarassingly so — and can be extremely variable even among closely related species. And second, the circular DNA molecules obtained from plant mitochondria are not easily related to the size of the genome as inferred from reassociation kinetics measurem
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