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Titlebook: Genetics, Development, and Evolution; 17th Stadler Genetic J. Perry Gustafson,G. Ledyard Stebbins,Francisco J Book 1986 Springer Science+Bu

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書目名稱Genetics, Development, and Evolution
副標題17th Stadler Genetic
編輯J. Perry Gustafson,G. Ledyard Stebbins,Francisco J
視頻videohttp://file.papertrans.cn/383/382750/382750.mp4
叢書名稱Stadler Genetics Symposia Series
圖書封面Titlebook: Genetics, Development, and Evolution; 17th Stadler Genetic J. Perry Gustafson,G. Ledyard Stebbins,Francisco J Book 1986 Springer Science+Bu
描述One outstanding question in biology is the problem of devel- opment: how the genetic instructions encoded in the DNA become expressed in the morphological, physiological, and behavioral features of multicellular organisms, through an ordered sequence of events that extend from the first cell division of the zygote to the adult stage and eventual death. The problem is how a one- dimensional array of instructions is transformed into a four- dimensional entity, the organism that exists in space and time. Understanding this transformation is, nevertheless, necessary for mastering the process of evolution. One hundred and twenty-five years after The Origin of Species, we have gained some understanding of evolution at the genetic level. Genetic information is stored in the linear sequence of nucleotides in the DNA. Gene mutations, chromosomal reorganiza- tions, and a host of related processes introduce variation in the sequence and the amount of DNA. The fate of these variations is determined by interactions within the genome and with the outside environment that are largely understood. We have recently gained a glimpse of how the genome of eukaryotes is organized and will learn much mor
出版日期Book 1986
關(guān)鍵詞DNA; cell division; chromosome; genes; genetics
版次1
doihttps://doi.org/10.1007/978-1-4684-5137-5
isbn_softcover978-1-4684-5139-9
isbn_ebook978-1-4684-5137-5Series ISSN 1568-1009
issn_series 1568-1009
copyrightSpringer Science+Business Media New York 1986
The information of publication is updating

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Genetics, Development, and Evolution978-1-4684-5137-5Series ISSN 1568-1009
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Rudolf Janzen,Walter Bushart,Gerd Wendlerl patterns in multicellular eukaryotes?” The importance of this question lies in the fact that answers to it will provide the most significant links possible between those morphological changes recorded by paleontologists and differences that geneticists can analyze. At present, the gap between the
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Physiologie der Hirndurchblutung,o meiocytes. Although some mutations are adaptive, the majority of mutations are disadvantageous and ultimately reduce the fitness of a ramet (or genet). Many anatomical and developmental characteristics may reduce the mutation frequency within ramets. Apical meristems may influence mutation frequen
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Der Schlüssel zum indischen Markty natural selection. Thus, the mechanism of gene duplication emerges as the prime means to create new genes with previously nonexistent functions (Ohno, 1970). Redundant copies of the existing gene created by this mechanism are largely ignored by natural selection, and while being ignored, they are
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