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Updated: Aug 21, 2026

Super-Resolution Live Cell Imaging of Subcellular Structures
Published on: January 13, 2021
Direct visualization of microtubule flux during metaphase and anaphase in crane-fly spermatocytes
James R LaFountain1, Christopher S Cohan, Alan J Siegel
1Department of Biological Sciences, University at Buffalo, Buffalo, NY 14260, USA. jrl@buffalo.edu
Abstract:
Microtubule flux in spindles of insect spermatocytes, long-used models for studies on chromosome behavior during meiosis, was revealed after iontophoretic microinjection of rhodamine-conjugated (rh)-tubulin and fluorescent speckle microscopy. In time-lapse movies of crane-fly spermtocytes, fluorescent speckles generated when rh-tubulin incorporated at microtubule plus ends moved poleward through each half-spindle and then were lost from microtubule minus ends at the spindle poles. The average poleward velocity of approximately 0.7 microm/min for speckles within kinetochore microtubules at metaphase increased during anaphase to approximately 0.9 microm/min. Segregating half-bivalents had an average poleward velocity of approximately 0.5 microm/min, about half that of speckles within shortening kinetochore fibers. When injected during anaphase, rhtubulin was incorporated at kinetochores, and kinetochore fiber fluorescence spread poleward as anaphase progressed. The results show that tubulin subunits are added to the plus end of kinetochore microtubules and are removed from their minus ends at the poles, all while attached chromosomes move poleward during anaphase A. The results cannot be explained by a Pac-man model, in which 1) kinetochore-based, minus end-directed motors generate poleward forces for anaphase A and 2) kinetochore microtubules shorten at their plus ends. Rather, in these cells, kinetochore fiber shortening during anaphase A occurs exclusively at the minus ends of kinetochore microtubules.
Insights
Microtubule dynamics in insect spermatocytes reveal tubulin subunits add to kinetochore microtubules
Area of Science:
- Cell Biology
- Molecular Biology
- Genetics
Background:
- Insect spermatocytes are established models for studying chromosome behavior during meiosis.
- Understanding microtubule dynamics is crucial for comprehending chromosome segregation.
Purpose of the Study:
- To investigate microtubule flux within the spindle of insect spermatocytes.
- To determine the mechanism of kinetochore microtubule dynamics during meiosis.
Main Methods:
- Iontophoretic microinjection of rhodamine-conjugated (rh)-tubulin.
- Fluorescent speckle microscopy and time-lapse imaging of crane-fly spermatocytes.
Main Results:
- Fluorescent speckles moved poleward, indicating microtubule flux.
- Kinetochore microtubule velocity increased from metaphase to anaphase.
- Tubulin subunits are added at plus ends and removed from minus ends of kinetochore microtubules.
- Chromosome segregation velocity was slower than microtubule flux velocity.
Conclusions:
- Microtubule flux occurs via addition at plus ends and removal at minus ends during anaphase A.
- The observed dynamics contradict the Pac-man model for chromosome segregation.
- Kinetochore fiber shortening occurs exclusively at the minus ends during anaphase A.

