FB2026_03 , released September 17, 2026
Reference Report
Open Close
Reference
Citation
Liang, Z.Y., Hallen, M.A., Endow, S.A. (2009). Mature Drosophila meiosis I spindles comprise microtubules of mixed polarity.  Curr. Biol. 19(2): 163--168.
FlyBase ID
FBrf0206773
Publication Type
Research paper
Abstract
New information has been obtained recently regarding microtubule organization in Xenopus extract spindles. These spindles assemble in vitro by chromatin-mediated microtubule nucleation and consist of randomly interspersed long and short microtubules with minus ends distributed throughout the spindle. Fluorescence speckle microscopy has led to the proposal that the Xenopus steady-state spindles contain two overlapping arrays of parallel or antiparallel microtubules with differing poleward-flux velocities. Although some of these features have also been reported for C. elegans female meiotic spindles, it is not clear whether they are representative of microtubule organization and dynamics in oocyte meiotic spindles. Here we examine anastral meiosis I spindles of live Drosophila oocytes expressing the microtubule plus end-tracking protein, EB1, fused to GFP, and find fluorescent particles throughout the spindle and movement toward both the poles and the equator. EB1 particle velocities, corresponding to microtubule growth rates, are similar in both directions, but slower than growth from the poles in mitotic spindles of early embryos. Meiosis I spindles yielded data from photobleaching analysis showing similar microtubule growth rates and dynamics at the poles and the equator, consistent with spindle microtubules of mixed polarity, differing from early-embryo mitotic spindles.
PubMed ID
PubMed Central ID
PMC2701147 (PMC) (EuropePMC)
Related Publication(s)
Personal communication to FlyBase

P{ncd-Eb1.GFP} construct and insertions.
Endow, 2014.7.18, P{ncd-Eb1.GFP} construct and insertions. [FBrf0225681]

Associated Information
Comments
Associated Files
Other Information
Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Curr. Biol.
    Title
    Current Biology
    Publication Year
    1991-
    ISBN/ISSN
    0960-9822
    Data From Reference
    Genes (2)