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research article

Analysis of centriole elimination during C. elegans oogenesis

Mikeladze-Dvali, Tamara  
•
von Tobel, Lukas  
•
Strnad, Petr
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2012
Development

Centrosomes are the principal microtubule organizing centers (MTOCs) of animal cells and comprise a pair of centrioles surrounded by pericentriolar material (PCM). Centriole number must be carefully regulated, notably to ensure bipolar spindle formation and thus faithful chromosome segregation. In the germ line of most metazoan species, centrioles are maintained during spermatogenesis, but eliminated during oogenesis. Such differential behavior ensures that the appropriate number of centrioles is present in the newly fertilized zygote. Despite being a fundamental feature of sexual reproduction in metazoans, the mechanisms governing centriole elimination during oogenesis are poorly understood. Here, we investigate this question in C. elegans. Using antibodies directed against centriolar components and serial-section electron microscopy, we establish that centrioles are eliminated during the diplotene stage of the meiotic cell cycle. Moreover, we show that centriole elimination is delayed upon depletion of the helicase CGH-1. We also find that somatic cells make a minor contribution to this process, and demonstrate that the germ cell karyotype is important for timely centriole elimination. These findings set the stage for a mechanistic dissection of centriole elimination in a metazoan organism.

  • Details
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Type
research article
DOI
10.1242/dev.075440
Web of Science ID

WOS:000302366400014

Author(s)
Mikeladze-Dvali, Tamara  
von Tobel, Lukas  
Strnad, Petr
Knott, Graham  orcid-logo
Leonhardt, Heinrich
Schermelleh, Lothar
Gönczy, Pierre  
Date Issued

2012

Published in
Development
Volume

139

Issue

9

Start page

1670

End page

1679

Subjects

C. elegans

•

Oogenesis

•

Centriole

•

Elimination

•

Cgh-1

•

Karyotype

•

Sex-Determination Gene

•

Caenorhabditis-Elegans

•

Centrosome Duplication

•

Cell-Cycle

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Germline Development

•

Functional-Analysis

•

Oocyte Development

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Starfish Oocytes

•

Assembly Pathway

•

Protein Spd-2

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPGON  
Available on Infoscience
May 4, 2012
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/80058
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