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Polarity of spindle microtubules in Haemanthus endosperm
Abstract
Structural polarities of mitotic spindle microtubules in the plant Haemanthus katherinae have been studied by lysing endosperm cells in solutions of neurotubulin under conditions that will decorate cellular microtubules with curved sheets of tubulin protofilaments. Microtubule polarity was observed at several positions in each cell by cutting serial thin sections perpendicular to the spindle axis. The majority of the microtubules present in a metaphase or anaphase half-spindle are oriented with their fast-growing or "plus" ends distal to the polar area. Near the polar ends of the spindle and up to about halfway between the kinetichores and the poles, the number of microtubules with opposite polarity is low: 8-20% in metaphase and 2-15% in anaphase cells. Direct examination of 10 kinetochore fibers shows that the majority of these microtubules, too, are oriented with their plus ends distal to the poles, as had been previously shown in animal cells. Sections from the region near the spindle equator reveal an increased fraction of microtubules with opposite polarity. Graphs of polarity vs. position along the spindle axis display a smooth transition from microtubules of one orientation near the first pole, through a region containing equal numbers of the two orientations, to a zone near the second pole where the opposite polarity predominates. We conclude that the spindle of endosperm cells is constructed from two sets of microtubules with opposite polarity that interdigitate near the spindle equator. The length of the zone of interdigitation shortens from metaphase through telophase, consistent with a model that states that during anaphase spindle elongation in Haemanthus, the interdigitating sets of microtubules are moved apart. We found no major changes in the distribution of microtubule polarity in the spindle interzone from anaphase to telophase when cells are engaged in phragmoplast formation. Therefore, the initiation and organization of new microtubules, thought to take place during phragmoplast assembly, must occur without significant alteration of the microtubule polarity distribution.
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- Bergen LG, Kuriyama R, Borisy GG. Polarity of microtubules nucleated by centrosomes and chromosomes of Chinese hamster ovary cells in vitro. J Cell Biol. 1980 Jan;84(1):151–159. [Europe PMC free article] [Abstract] [Google Scholar]
- Binder LI, Dentler WL, Rosenbaum JL. Assembly of chick brain tubulin onto flagellar microtubules from Chlamydomonas and sea urchin sperm. Proc Natl Acad Sci U S A. 1975 Mar;72(3):1122–1126. [Europe PMC free article] [Abstract] [Google Scholar]
- Bradford MM. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal Biochem. 1976 May 7;72:248–254. [Abstract] [Google Scholar]
- De Mey J, Lambert AM, Bajer AS, Moeremans M, De Brabander M. Visualization of microtubules in interphase and mitotic plant cells of Haemanthus endosperm with the immuno-gold staining method. Proc Natl Acad Sci U S A. 1982 Mar;79(6):1898–1902. [Europe PMC free article] [Abstract] [Google Scholar]
- Dentler WL, Granett S, Witman GB, Rosenbaum JL. Directionality of brain microtubule assembly in vitro. Proc Natl Acad Sci U S A. 1974 May;71(5):1710–1714. [Europe PMC free article] [Abstract] [Google Scholar]
- Euteneuer U, McIntosh JR. Polarity of midbody and phragmoplast microtubules. J Cell Biol. 1980 Nov;87(2 Pt 1):509–515. [Europe PMC free article] [Abstract] [Google Scholar]
- Euteneuer U, McIntosh JR. Structural polarity of kinetochore microtubules in PtK1 cells. J Cell Biol. 1981 May;89(2):338–345. [Europe PMC free article] [Abstract] [Google Scholar]
- Fuge H. Ultrastructure of the mitotic spindle. Int Rev Cytol Suppl. 1977;(6):1–58. [Abstract] [Google Scholar]
- Haimo LT, Telzer BR, Rosenbaum JL. Dynein binds to and crossbridges cytoplasmic microtubules. Proc Natl Acad Sci U S A. 1979 Nov;76(11):5759–5763. [Europe PMC free article] [Abstract] [Google Scholar]
- Hepler PK, Jackson WT. Microtubules and early stages of cell-plate formation in the endosperm of Haemanthus katherinae Baker. J Cell Biol. 1968 Aug;38(2):437–446. [Europe PMC free article] [Abstract] [Google Scholar]
- INOUE S, BAJER A. Birefringence in endosperm mitosis. Chromosoma. 1961;12:48–63. [Abstract] [Google Scholar]
- McDonald K, Pickett-Heaps JD, McIntosh JR, Tippit DH. On the mechanism of anaphase spindle elongation in Diatoma vulgare. J Cell Biol. 1977 Aug;74(2):377–388. [Europe PMC free article] [Abstract] [Google Scholar]
- Margolis RL, Wilson L, Keifer BI. Mitotic mechanism based on intrinsic microtubule behaviour. Nature. 1978 Mar 30;272(5652):450–452. [Abstract] [Google Scholar]
- Paweletz N, Mazia D. Fine structure of the mitotic cycle of unfertilized sea urchin eggs activated by ammoniacal sea water. Eur J Cell Biol. 1979 Oct;20(1):37–44. [Abstract] [Google Scholar]
- Rieder CL, Borisy GG. The attachment of kinetochores to the pro-metaphase spindle in PtK1 cells. Recovery from low temperature treatment. Chromosoma. 1981;82(5):693–716. [Abstract] [Google Scholar]
- Shelanski ML, Gaskin F, Cantor CR. Microtubule assembly in the absence of added nucleotides. Proc Natl Acad Sci U S A. 1973 Mar;70(3):765–768. [Europe PMC free article] [Abstract] [Google Scholar]
- Subirana JA. Role of spindle microtubules in mitosis. J Theor Biol. 1968 Jul;20(1):117–123. [Abstract] [Google Scholar]
- Summers K, Kirschner MW. Characteristics of the polar assembly and disassembly of microtubules observed in vitro by darkfield light microscopy. J Cell Biol. 1979 Oct;83(1):205–217. [Europe PMC free article] [Abstract] [Google Scholar]
- Telzer BR, Haimo LT. Decoration of spindle microtubules with Dynein: evidence for uniform polarity. J Cell Biol. 1981 May;89(2):373–378. [Europe PMC free article] [Abstract] [Google Scholar]
- Tippit DH, Pickett-Heaps JD, Leslie R. Cell division in two large pennate diatoms Hantzschia and Nitzschia III. A new proposal for kinetochore function during prometaphase. J Cell Biol. 1980 Aug;86(2):402–416. [Europe PMC free article] [Abstract] [Google Scholar]
- Tippit DH, Schulz D, Pickett-Heaps JD. Analysis of the distribution of spindle microtubules in the diatom Fragilaria. J Cell Biol. 1978 Dec;79(3):737–763. [Europe PMC free article] [Abstract] [Google Scholar]
- Witt PL, Ris H, Borisy GG. Origin of kinetochore microtubules in Chinese hamster ovary cells. Chromosoma. 1980;81(3):483–505. [Abstract] [Google Scholar]
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