Dissection of Cell Division Processes in the One Cell Stage Caenorhabditis elegans Embryo by Mutational Analysis
Open Access
- 8 March 1999
- journal article
- Published by Rockefeller University Press in The Journal of cell biology
- Vol. 144 (5) , 927-946
- https://doi.org/10.1083/jcb.144.5.927
Abstract
To identify novel components required for cell division processes in complex eukaryotes, we have undertaken an extensive mutational analysis in the one cell stage Caenorhabditis elegans embryo. The large size and optical properties of this cell permit observation of cell division processes with great detail in live specimens by simple differential interference contrast (DIC) microscopy. We have screened an extensive collection of maternal-effect embryonic lethal mutations on chromosome III with time-lapse DIC video microscopy. Using this assay, we have identified 48 mutations in 34 loci which are required for specific cell division processes in the one cell stage embryo. We show that mutations fall into distinct phenotypic classes which correspond, among others, to the processes of pronuclear migration, rotation of centrosomes and associated pronuclei, spindle assembly, chromosome segregation, anaphase spindle positioning, and cytokinesis. We have further analyzed pronuclear migration mutants by indirect immunofluorescence microscopy using antibodies against tubulin and ZYG-9, a centrosomal marker. This analysis revealed that two pronuclear migration loci are required for generating normal microtubule arrays and four for centrosome separation. All 34 loci have been mapped by deficiencies to distinct regions of chromosome III, thus paving the way for their rapid molecular characterization. Our work contributes to establishing the one cell stage C. elegans embryo as a powerful metazoan model system for dissecting cell division processes.Keywords
This publication has 85 references indexed in Scilit:
- C. elegans: des neurones et des gènesmédecine/sciences, 2003
- Actin cytoskeleton: Are FH proteins local organizers?Current Biology, 1997
- Self-organization of microtubules into bipolar spindles around artificial chromosomes in Xenopus egg extractsNature, 1996
- A plus-end-directed motor enzyme that moves antiparallel microtubules in vitro localizes to the interzone of mitotic spindlesNature, 1992
- Mutations in the par genes of Caenorhabditis elegans affect cytoplasmic reorganization during the first cell cycleDevelopmental Biology, 1990
- Two loci required for cytoplasmic organization in early embryos of Caenorhabditis elegansDevelopmental Biology, 1986
- Maternal effects and temperature-sensitive period of mutations affecting embryogenesis in Caenorhabditis elegansDevelopmental Biology, 1983
- Genetic analysis of temperature-sensitive embryogenesis mutants in Caenorhabditis elegansDevelopmental Biology, 1981
- Mutations affecting segment number and polarity in DrosophilaNature, 1980
- Parental effects and phenotypic characterization of mutations that affect early development in Caenorhabditis elegansDevelopmental Biology, 1980