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Titlebook: Chromosome and Genomic Engineering in Plants; Methods and Protocol Minoru Murata Book 2016 Springer Science+Business Media New York 2016 pl

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Chromosomal Allocation of DNA Sequences in Wheat Using Flow-Sorted Chromosomes, repetitive DNA sequences. Despite the recent progress in the analysis of plant genome organization and chromosome structure, there is a need for easy methods to assign DNA sequences to individual chromosomes. Here, we describe an easy way to allocate genes or DNA sequences to chromosomes in wheat u
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Image Analysis of DNA Fiber and Nucleus in Plants,sable tools where morphology, density, and color play important roles in the biological systems. Visualization and image analysis methods are useful techniques in the analyses of the detailed structure and function of extended DNA fibers (EDFs) and interphase nuclei. The EDF is the highest in the sp
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Detection of Transgenes on DNA Fibers,resolution of FISH on chromosomes is limited by condensed structure of chromatin, and it is difficult to differentiate two target sites close to each other. To overcome this issue, the objects was changed to stretched DNA fibers, and this fiber FISH technique has now been used for revealing genome s
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Three-Dimensional, Live-Cell Imaging of Chromatin Dynamics in Plant Nuclei Using Chromatin Tagging in the nuclei of plants. Here, we introduce a three-dimensional, live-cell imaging method that can monitor chromatin dynamics in nuclei via a chromatin tagging system that can visualize specific genomic loci in living plant cells. The chromatin tagging system is based on a bacterial operator/repress
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Chromatin Immunoprecipitation for Detecting Epigenetic Marks on Plant Nucleosomes,uding modified histones and specific histone variants (e.g., centromere-specific histone H3, CENH3) in this decade. Here, I describe a sensitive and low-background ChIP protocol for a wide range of plant species.
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Mapping of T-DNA and ,/, by TAIL-PCR to Analyze Chromosomal Rearrangements, transposons . (.). (.) have been systematically used to manipulate plant chromosomes. For both of these applications, the recovery of genomic DNA sequences flanking the insertions is required to estimate the sizes and/or scales of the reconstituted chromosomes. In this chapter, we describe the prot
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