Chromosome Segregation

Chromosome segregation is the orderly distribution of duplicated chromosomes into daughter cells during cell division, ensuring that each cell receives the correct genetic complement. In mitosis and meiosis, spindle microtubules attach to chromosome kinetochores, align chromosomes, and pull sister chromatids or homologous chromosomes toward opposite poles; cell-cycle checkpoints help prevent separation until these attachments are properly established. Accurate segregation supports normal growth, development, and inheritance, whereas errors can produce aneuploidy, contributing to developmental disorders, infertility, and cancer. Studying this process helps explain genome stability and provides a foundation for research in cell biology, genetics, and disease mechanisms.

Chromosome Segregation - Related Videos

Research

JoVE EoE - Bacterial Pathogenesis and Host Interactions

Time-Lapse Imaging of Chromosome Segregation in Fluorescently Labeled Bacteria

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2026

Source: Schumacher, D., and Sogaard-Andersen, L. Fluorescence Live-cell Imaging of the Complete Vegetative Cell Cycle of the Slow-growing Social Bacterium Myxococcus xanthus. J. Vis. Exp. (2018)This video demonstrates the use of live-cell imaging to track fluorescently tagged chromosome origins during bacterial cell division. It captures chromosome segregation dynamics using time-lapse phase-contrast and fluorescence microscopy.

Analysis of Chromosome Segregation, Histone Acetylation, and Spindle Morphology in Horse Oocytes

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Cited by 21 •

2017

This manuscript describes an experimental approach to morphologically and biochemically characterize horse oocytes. Specifically, the present work illustrates how to collect immature and mature horse oocytes by ultrasound-guided ovum pick-up (OPU) and how to investigate chromosome segregation, spindle morphology, global histone acetylation, and mRNA expression.

Live Cell Imaging of Chromosome Segregation During Mitosis

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Cited by 1 •

2018

This protocol describes an easy and convenient method to label and visualize live chromosomes in mitotic cells using Histone2B-GFP BacMam 2.0 label and a spinning disc confocal microscopy system.

Education

JoVE Core - Biology

Chromosomal Theory of Inheritance

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2019

In 1866, Gregor Mendel published the results of his pea plant breeding experiments, providing evidence for predictable patterns in the inheritance of physical characteristics. The significance of his findings was not immediately recognized. In fact, the existence of genes was unknown at the time. Mendel referred to hereditary units as “factors.” The mechanisms underlying Mendel’s observations—the basis of his laws of segregation and independent assortment—remained elusive. In the late 1800s,...

Chromosome Replication

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2020

Before a cell can divide, it must accurately replicate all of its chromosomes, including the DNA and its associated histone and non-histone proteins. This process begins at numerous origins of replication during the S phase of the cell cycle in each of a cell’s chromosomes simultaneously. Certain nucleotides can act as origins of replication, but these sequences are not well defined - especially in complex, multi-cellular, eukaryotic species. The length of DNA that spans an origin of...

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