Seasonal seminal quality variations and vitrification prospects in black flounder Paralichthys orbignyanus
Long-term preservation of gametes has been identified as a tool to improve broodstock management and increase the number of juveniles produced by artificial fertilization. Paralichthys orbignyanus is an important commercial and recreational species distributed in marine and estuarine waters from Rio...
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Veröffentlicht in: | Theriogenology 2024-11, Vol.229, p.30-40 |
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Sprache: | eng |
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Zusammenfassung: | Long-term preservation of gametes has been identified as a tool to improve broodstock management and increase the number of juveniles produced by artificial fertilization. Paralichthys orbignyanus is an important commercial and recreational species distributed in marine and estuarine waters from Rio de Janeiro (Brazil) to the San Matías Gulf (Argentina). This work focused on studying the seminal quality of tank-reared P. orbignyanus, demonstrating that males are fluent year-round, with the highest yields at the early reproductive season. Fresh sperm exhibited good forward swimming, and samples could be refrigerated up to 48 h while retaining their motility after activation. The optimal conditions for P. orbignyanus sperm motility activation were established as 950 mOsmol/Kg and pH values between 7 and 7.9. Additionally, a well-defined protocol for semen vitrification was developed to assess the cryotolerance of this species’ sperm. We successfully produced high-quality sperm samples, using two vitrification formulations containing trehalose and both z-1000 and x-1000 polymers, that can be used in a near-future in vitro embryo production program.
•Captive Paralichthys orbignyanus males yield year-round semen quality.•Semen retains good motility when refrigerated up to 48 h.•Optimal conditions for sperm activation were set at 950 mOsmol and pH 7–7.9.•A novel protocol for P. orbignyanus semen vitrification is reported.•The best extender formulations showed good fertilization rates vs fresh samples. |
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ISSN: | 0093-691X 1879-3231 1879-3231 |
DOI: | 10.1016/j.theriogenology.2024.08.008 |