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Titlebook: Genome and Chromatin: Organization, Evolution, Function; Symposium, Kaisersla Walter Nagl,Vera Hemleben,Friedrich Ehrendorfer Book 1979 Spr

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楼主: malcontented
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,Perspektiven und Qualitätvon E-Learning,0% of the . DNA is made up of highly repetitive sequences (about 1,000,000 copies per 1 Cgenome) which cannot be found in the genome of . For an explanation, a hypothesis on the phylogenesis of crucifers is proposed. The palindromes of .. . DNA are arranged in regularly spaced clusters. This is a co
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https://doi.org/10.1007/978-3-531-91722-1he genome of Magnolia soulangiana consists of 39.5 repetitive sequences, that of . 47.5%, that of . 37.3% and that of . 48.5%. The cot curves were similar in all species studied. The results confirm the hypothesis that the proportion of repetitive DNA increased during macro-evolution, and that primi
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,Deutschland und die neue Völkerwanderung,te results. Therefore, the problem of heterochromatin underreplication in . polytene chromosomes should be re-investigated using coldhydrolysed material, because older data may be the result of a non-suitable method and, therefore, erroneous.
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https://doi.org/10.1007/978-3-663-16293-3nd .. In all three species, a certain portion of the nuclei in reproductive buds exhibited higher 2 C values than the nuclei of vegetative buds. As also telophase nuclei displayed increased DNA values, and as preliminary reassociation experiments with . DNA revealed remarkable differences in the cot
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https://doi.org/10.1007/978-3-662-60913-2cDNA with its complementary RNA to estimate mRNA complexities (informational lengths) and hence gene numbers. We used both approaches to measure numbers of active genes in plants. The data obtained were 11,500–13,300 in parsley root callus and 9,200–10,000 in parsley leaf, 14,200 m barley young leav
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