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Titlebook: Chromosome Structure and Function; Impact of New Concep J. Perry Gustafson,R. Appels Book 1988 Plenum Press, New York 1988 Allele.Chromosom

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书目名称Chromosome Structure and Function
副标题Impact of New Concep
编辑J. Perry Gustafson,R. Appels
视频video
丛书名称Stadler Genetics Symposia Series
图书封面Titlebook: Chromosome Structure and Function; Impact of New Concep J. Perry Gustafson,R. Appels Book 1988 Plenum Press, New York 1988 Allele.Chromosom
描述A Historical Perspective on the Study of Chromosome Structure and Function R. Appels Division of Plant Industry CSIRO P.O. Box 1600 A.C.T. AUSTRALIA "Modern physical science gives us no model to explain the re­ duplication of the gene-string in each cell generation, or to ex­ plain the production of effective quantities of specific enzymes or other agents by specific genes. The precise pairing and inter­ change of segments by homologous gene-strings at meiosis also suggest novel physical properties of this form of matter". Stadler (1954) The very strong influence of reductionism in the history of understanding chromosome structure and function is evident in the above quotation from Stadler‘s 1954 paper, "The gene". Earlyob­ servations on the constancy of the cytological appearance of chromo­ somes and their regular behaviour in cell division led to specula­ tion on their biological importance. As genetics became more refined in the early decades of the 20th century the genes-on-a­ string model of chromosomes developed and greater emphasis was placed on the further dissection of these structures. As a result, in the 1980‘s the reductionist approach is reaching a crest as extensive r
出版日期Book 1988
关键词Allele; Chromosom; DNA; genes; genetic engineering; genetics; molecular biology; wheat
版次1
doihttps://doi.org/10.1007/978-1-4613-1037-2
isbn_softcover978-1-4612-8304-1
isbn_ebook978-1-4613-1037-2Series ISSN 1568-1009
issn_series 1568-1009
copyrightPlenum Press, New York 1988
The information of publication is updating

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Lecture Notes in Physics Monographs972). The earlier work, summarized by Van’t Hof (1974), yielded statistical correlations that become more precise as more recently gathered measurements from other species are added (Grif and Ivanov, 1975; Price and Bachmann, 1976).
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https://doi.org/10.1007/978-3-319-42646-4heterochromatic regions, many geneticists came to hold the view that heterochromatin was genetically inert. This point of view was further supported by the elucidation of the cytogenetic basis of position effect variegation - the repression of expression of euchromatic genes by their translocation to a position adjacent to heterochromatin.
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Chromosomes and Kinetochores do More in Mitosis than Previously Thought,informal account of recent surprises followed by some remarks on the nature of the kinetochore as a gene and its evolutionary origin. More extensive reviews of all but the most recent work include Rieder (1982), McIntosh (1985), and Brinkley et al. (1985)
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Chromosomal Replicons of Higher Plants,972). The earlier work, summarized by Van’t Hof (1974), yielded statistical correlations that become more precise as more recently gathered measurements from other species are added (Grif and Ivanov, 1975; Price and Bachmann, 1976).
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New Perspectives on the Genetics and Molecular Biology of Constitutive Heterochromatin,heterochromatic regions, many geneticists came to hold the view that heterochromatin was genetically inert. This point of view was further supported by the elucidation of the cytogenetic basis of position effect variegation - the repression of expression of euchromatic genes by their translocation to a position adjacent to heterochromatin.
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Interactive Meiotic Systems,aneuvers seem to call for the mobilization of structures with interactions which are not clearly visible in the context of current insight. All sexual reproduction depends upon the proper functioning of these little understood meiotic systems.
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Micrometallization Technologies,ogenetic identifications of chromosomes 1B and 6B (satellited but with different arm ratios) and chromosome 5B, being highly heterobrachial with the longest long arm of the whole chromosome complement. The remaining chromosomes were not distinctive enough to be identified in somatic cells from the morphological data.
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