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Titlebook: Chromothripsis; Methods and Protocol Franck Pellestor Book 2018 Springer Science+Business Media, LLC, part of Springer Nature 2018 Massive

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楼主: deteriorate
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Chromothripsis and the Macroevolution Theoryothripsis in species evolution. The occurrence of chromothripsis appears to be in good agreement with macroevolution models proposed as a complement to phyletic gradualism. The emergence of this unexpected phenomenon may help to demonstrate the contribution of chromosome rearrangements to speciation process.
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Detection of Impaired DNA Replication and Repair in Micronuclei as Indicators of Genomic Instability micronuclei basic general functions, such as DNA replication and repair. The detection of DNA repair and replication defects in micronuclei is described here, as well as the analysis of chromosome breakage and inaccurate reassembly of broken segments in the daughter cells, as indirect methods to detect chromothripsis.
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The Genomic Characteristics and Origin of Chromothripsis result from lagging chromosomes encapsulated in micronuclei, as well as from telomere fusions followed by chromosome bridge formation. In this chapter, we will outline the genomic characteristics of chromothripsis, and we present genomic methodologies that enable the detection of chromothripsis. Fu
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A Role for Retrotransposons in Chromothripsisthods chapter, I discuss how to apply available bioinformatic tools and the hallmarks of retrotransposon mobilization to breakpoint junctions to assess the role for active and inactive retrotransposon sequences in chromothriptic events.
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Genes, Proteins, and Biological Pathways Preventing Chromothripsisipsis occurred after experimental induction of telomere crisis after which dicentric chromosomes sustained TREX1-mediated resolution of chromosome bridges and kataegis. Third, DNA polymerase Polθ-dependent chromothripsis has been documented. Finally, a family with chromothripsis after L1 element-dep
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Engels’s Legacy to Anthropology result from lagging chromosomes encapsulated in micronuclei, as well as from telomere fusions followed by chromosome bridge formation. In this chapter, we will outline the genomic characteristics of chromothripsis, and we present genomic methodologies that enable the detection of chromothripsis. Fu
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