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Effect of Reproductive Seasonality on Gamete Quality in the North American Bison (Bison bison bison)
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ContentsThe objective was to investigate the effects of reproductive seasonality on gamete quality in plains bison (Bison bison bison). Epididymal sperm (n = 61 per season), collected during the breeding season (July–September), had significantly higher post‐thaw total motility (36.76 ± 14.18 vs 31.24 ± 12.74%), and lower linearity (0.36 ± 0.06 vs 0.39 ± 0.04) and wobbliness (0.49 ± 0.04 vs 0.51 ± 0.03; mean ± SD) compared to non‐breeding season (January–March) samples. Representative samples (n = 4) from each season were used in heterologous IVF trials using cattle oocytes. Cleavage, morulae and blastocyst percentage were higher for breeding vs non‐breeding season sperm samples (81.88 ± 6.8 vs 49.94 ± 6.77; 41.89 ± 13.40 vs 27.08 ± 23.21; and 30.49 ± 17.87 vs 13.72 ± 18.98%, respectively). Plains bison ovaries collected during the breeding (n = 97 pairs) and non‐breeding (n = 100 pairs) seasons were classified as luteal or follicular. Oocytes recovered from these ovaries were classified into five grades based on morphology. There was no significant difference in the number of luteal ovaries or grades of oocytes recovered. Oocytes were matured, fertilized (with frozen sperm from three bison bulls) and cultured in vitro. Cleavage percentage was higher for oocytes collected during breeding vs non‐breeding season (83.72 ± 6.42 vs 73.98 ± 6.43), with no significant difference in subsequent development to blastocysts. In summary, epididymal sperm from non‐breeding season had decreased total motility and resulted in reduced embryo production in vitro. Oocytes collected during non‐breeding season had reduced ability to be matured, fertilized and/or undergo cleavage in vitro. Data suggested that season influenced gamete quality in plains bison.
Title: Effect of Reproductive Seasonality on Gamete Quality in the North American Bison (Bison bison bison)
Description:
ContentsThe objective was to investigate the effects of reproductive seasonality on gamete quality in plains bison (Bison bison bison).
Epididymal sperm (n = 61 per season), collected during the breeding season (July–September), had significantly higher post‐thaw total motility (36.
76 ± 14.
18 vs 31.
24 ± 12.
74%), and lower linearity (0.
36 ± 0.
06 vs 0.
39 ± 0.
04) and wobbliness (0.
49 ± 0.
04 vs 0.
51 ± 0.
03; mean ± SD) compared to non‐breeding season (January–March) samples.
Representative samples (n = 4) from each season were used in heterologous IVF trials using cattle oocytes.
Cleavage, morulae and blastocyst percentage were higher for breeding vs non‐breeding season sperm samples (81.
88 ± 6.
8 vs 49.
94 ± 6.
77; 41.
89 ± 13.
40 vs 27.
08 ± 23.
21; and 30.
49 ± 17.
87 vs 13.
72 ± 18.
98%, respectively).
Plains bison ovaries collected during the breeding (n = 97 pairs) and non‐breeding (n = 100 pairs) seasons were classified as luteal or follicular.
Oocytes recovered from these ovaries were classified into five grades based on morphology.
There was no significant difference in the number of luteal ovaries or grades of oocytes recovered.
Oocytes were matured, fertilized (with frozen sperm from three bison bulls) and cultured in vitro.
Cleavage percentage was higher for oocytes collected during breeding vs non‐breeding season (83.
72 ± 6.
42 vs 73.
98 ± 6.
43), with no significant difference in subsequent development to blastocysts.
In summary, epididymal sperm from non‐breeding season had decreased total motility and resulted in reduced embryo production in vitro.
Oocytes collected during non‐breeding season had reduced ability to be matured, fertilized and/or undergo cleavage in vitro.
Data suggested that season influenced gamete quality in plains bison.
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