春秋两季出生的青春期前牛犊促性腺激素的分泌。

J P Aravindakshan, A Honaramooz, P M Bartlewski, A P Beard, R R Pierson, N C Rawlings
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摘要

比较了春秋两季出生公牛的生殖发育情况。春季犊牛平均血清LH浓度在出生后第4 ~ 18周呈上升趋势,第24周呈下降趋势。在秋季出生的公牛犊牛中,平均LH浓度在出生后第4周至第8周呈上升趋势,并保持稳定至第44周。在24周龄前,秋季犊牛LH脉幅值低于春季犊牛(P < 0.05)。犊牛出生后第12周的LH脉冲频率与青春期年龄呈负相关,与出生季节无关;犊牛出生后第18周的LH脉冲频率与青春期年龄呈负相关。平均血清FSH浓度、青春期年龄、体重、阴囊周长、睾丸、前列腺和囊泡尺寸以及超声灰度(像素单位)在秋季和春季出生的犊牛之间无显著差异。秋季出生的犊牛青春期年龄和体重变化较大(P < 0.05)。在第二项研究中,春天出生的小牛在出生后立即、出生后第6周和11周接受褪黑素或假植入。植入物在第20周取出。两组平均黄体生成素浓度、黄体生成素脉冲频率和振幅、平均卵泡刺激素浓度和青春期年龄无显著差异。超声检查各组间生殖道生长和象素单位无明显差异。综上所述,虽然秋、春出生的犊牛青春期前黄体生成素分泌模式存在差异,但春出生的犊牛出生后促性腺激素分泌的变化并未因褪黑素处理而受到影响。春秋出生的公牛生殖道发育无明显差异,但春秋出生的公牛生殖道发育年龄差异较大。在青春期前的早期,LH脉冲频率可能是决定青春期公牛犊牛年龄的一个重要因素。
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Gonadotrophin secretion in prepubertal bull calves born in spring and autumn.

The reproductive development of bull calves born in spring and autumn was compared. Mean serum LH concentrations in calves born in spring increased from week 4 to week 18 after birth and decreased by week 24. In bull calves born in autumn, mean LH concentrations increased from week 4 to week 8 after birth and remained steady until week 44. LH pulse amplitude was lower in bull calves born in autumn than in calves born in spring until week 24 of age (P < 0.05). There was a negative correlation between LH pulse frequency at week 12 after birth and age at puberty in bull calves, irrespective of season of birth, and LH pulse frequency at week 18 also tended to correlate negatively with age at puberty. Mean serum FSH concentrations, age at puberty, bodyweight, scrotal circumference, testes, prostate and vesicular gland dimensions, and ultrasonographic grey scale (pixel units) were not significantly different between bull calves born in autumn and spring. However, age and body-weight at puberty were more variable for bull calves born in autumn (P < 0.05). In a second study, bull calves born in spring received either a melatonin or sham implant immediately after birth and at weeks 6 and 11 after birth. Implants were removed at week 20. Mean LH concentrations, LH pulse frequency and amplitude, mean FSH concentrations and age at puberty did not differ between the two groups. No significant differences between groups in the growth and pixel units of the reproductive tract were observed by ultrasonography. In conclusion, although there were differences in the pattern of LH secretion in the prepubertal period between bull calves born in autumn and spring, the postnatal changes in gonadotrophin secretion were not disrupted by melatonin treatment in bull calves born in spring. Reproductive tract development did not differ between calves born in spring and autumn but age at puberty was more variable in bull calves born in autumn. LH pulse frequency during the early prepubertal period may be a vital factor in determining the age of bull calves at puberty.

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