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PMID: 15111364 Published · ppublish English Comparative Study Journal Article Research Support, Non-U.S. Gov't

Strategies for sperm chemotaxis in the siphonophores and ascidians: a numerical simulation study.

The Biological bulletin ·Vol. 206 ·No. 2 ·2004-04-00 ·Pages 95-102

Ishikawa M, Tsutsui H, Cosson J, Oka Y, Morisawa M

Abstract

Chemotactic swimming behaviors of spermatozoa toward an egg have been reported in various species. The strategies underlying these behaviors, however, are poorly understood. We focused on two types of chemotaxis, one in the siphonophores and the second in the ascidians, and then proposed two models based on experimental data. Both models assumed that the radius of the path curvature of a swimming spermatozoon depends on [Ca(2+)](i), the intracellular calcium concentration. The chemotaxis in the siphonophores could be simulated in a model that assumes that [Ca(2+)](i) depends on the local concentration of the attractant in the vicinity of the spermatozoon and that a substantial time period is required for the clearance of transient high [Ca(2+)](i). In the case of ascidians, trajectories similar to those in experiments could be adequately simulated by a variant of this model that assumes that [Ca(2+)](i) depends on the time derivative of the attractant concentration. The properties of these strategies and future problems are discussed in relation to these models.

MeSH Terms
Animals Calcium Chemotaxis/physiology Computer Simulation Hydrozoa/physiology Male Models, Biological Sperm Motility/physiology Sperm-Ovum Interactions/physiology Spermatozoa/physiology Time Factors Urochordata/physiology
Chemicals
Calcium
Authors & Affiliations
5 authors, click to expand affiliations / ORCID
Ishikawa Makiko
Misaki Marine Biological Station, Graduate School of Science, The University of Tokyo, Japan.
Tsutsui Hidekazu
Cosson Jacky
Oka Yoshitaka
Morisawa Masaaki
Article Info
Journal
The Biological bulletin
Abbr.
Biol Bull
ISSN
0006-3185
Published
2004-04-00
Pages
95-102
Language
English
Region
United States
NLM ID
2984727R
Subset
IM
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