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Updated: Jul 27, 2025

Measuring Sperm Guidance and Motility within the Caenorhabditis elegans Hermaphrodite Reproductive Tract
Published on: June 6, 2019
Factors Controlling Sperm Entry into the Micropyles of Salmonid and Herring Eggs:
Ryuzo Yanagimachi1, Gary N Cherr1, Muralidharan C Pillai1
1University of California at Davis, Bodega Marine Laboratory, Bodega Bay, California 94923 U.S.A.
Abstract:
When the micropyle area of salmonid (trout and salmon) eggs was observed continuously from the moment of insemination, spermatozoa were seen moving along the surface of the chorion and entering the micropyle one by one in a directed fashion. The ability of spermatozoa to enter the micropyle was reduced after the treatment of chorions with pronase; this reduction in sperm entry was observed even before the outer opening of the micropyle channel was narrowed due to gradual swelling of the chorion by pronase treatment. Herring spermatozoa, unlike spermatozoa of most other marine fishes, were motionless in seawater. However, they became vigorously motile on contact with the micropyle area of the herring egg chorion and entered the micropyle rapidly and efficiently. Motility initiation of herring spermatozoa in the micropyle area was dependent on extracellular calcium and potassium. Sodium also appears to be intricately involved in this process as demonstrated by the initiation of sperm movement in sodium-free seawater. When herring eggs were treated with acidic seawater, organic solvents, or glutaraldehyde, spermatozoa did not initiate movement in the micropyle area, and sperm entry was not observed. Herring spermatozoa did not initiate movement in the micropyle area of salmonid eggs. These and other observations suggest that the micropyle areas of salmonid and herring eggs possess some sperm guidance factors which facilitate entry of homologous spermatozoa into the micropyle.
Insights
Fish egg micropyles guide sperm using specific factors. Salmonid and herring sperm entry depends on egg surface chemistry, with herring sperm motility triggered by micropyle contact.
Area of Science:
- Reproductive Biology
- Ichthyology
- Cellular Biology
Background:
- Sperm-egg interaction is crucial for fertilization.
- The micropyle is the primary site of sperm entry in fish eggs.
- Mechanisms of sperm guidance to the micropyle are not fully understood.
Purpose of the Study:
- To investigate the role of the egg chorion and micropyle in sperm guidance and entry.
- To identify factors influencing sperm motility and guidance in salmonid and herring species.
Main Methods:
- Continuous observation of sperm-egg interactions during insemination.
- Treatment of egg chorions with enzymes (pronase) and chemicals (acidic seawater, organic solvents, glutaraldehyde).
- Assessment of sperm motility and micropyle entry under various conditions.
Main Results:
- Salmonid sperm entered the micropyle directly; pronase treatment reduced entry.
- Herring sperm were immotile in seawater but activated upon contact with the egg chorion's micropyle area.
- Herring sperm activation depended on extracellular calcium, potassium, and sodium.
- Chemical treatments of herring eggs inhibited sperm motility and entry.
- Herring sperm did not activate at the salmonid egg micropyle.
Conclusions:
- Egg micropyle areas contain guidance factors for homologous sperm.
- Specific chemical cues on the egg surface regulate sperm motility and facilitate micropyle penetration.
- Differences exist in sperm-egg interaction mechanisms between salmonid and herring species.
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