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公猪基因型作为影响精液参数与繁殖寿命模拟中年龄相关变化的一个因素。

Boar genotype as a factor shaping age-related changes in semen parameters and reproduction longevity simulations.

作者信息

Knecht Damian, Jankowska-Mąkosa Anna, Duziński Kamil

机构信息

Institute of Animal Breeding, Wroclaw University of Environmental and Life Sciences, Chelmonskiego 38C, 51-630 Wroclaw, Poland.

Institute of Animal Breeding, Wroclaw University of Environmental and Life Sciences, Chelmonskiego 38C, 51-630 Wroclaw, Poland.

出版信息

Theriogenology. 2017 Aug;98:50-56. doi: 10.1016/j.theriogenology.2017.04.050. Epub 2017 May 4.

Abstract

The aim of this study was a detailed analysis of the boar genotypes used in AI stations with an indication of their production capacity, including age and a precise analysis of their culling time and reason. The study included 334 boars: 81 Polish Large White (PLW), 108 Polish Landrace (PL), 49 Pietrain (P), 56 Duroc × Pietrain (D × P) and 40 Hampshire × Pietrain (H × P). Semen volume, spermatozoa concentration, total number of spermatozoa, number of motile spermatozoa, and number of insemination doses were analyzed. Quadratic regression was used to illustrate the selected sperm parameters at specific ages. Among all the studied boars the lowest motilities of spermatozoa were identified in white breeds PLW and PL, and the difference between motility extremes was 3.53% (P ≤ 0.01). The highest number of insemination doses were produced from D × P crossbreed boars: about 0.7 portions more compared to PL, 1.13 to PLW, 1.18 to H × P and 1.8 to P (all differences P ≤ 0.01). It has been shown in the case of ejaculate volume that for PLW and H × P boars the culling moment was far too early in terms of production capacity and differences were, respectively, 16.35 ml for PLW and 12.61 ml for H × P. Based on the developed regression equations, the earliest maximum number of motile sperm (73.82 × 10) was obtained by H × P crossbreed boars as early as at age 24 months. The highest values for this parameter were achieved, however, by other D × P crossbreed boars: 74.30 × 10 at the later age of 32 months. A consequence of the high number of motile sperm in young H × P boars was that the theoretical maximum value of the number of AI doses was produced as early as the 14th month (25.59 portions). Curves of similar shape were obtained for PL and D × P boars; the difference in maximal values was 0.54 portions in favor of crossbreeds, at a later age of 7 months. It was noted that for PLW and D × P boars the highest number of cullings were due to reduced demand (24.47% and even 31.19%, respectively). Other boars - PL, P and H × P - were most frequently culled because of low semen values. Regardless of the genotype, high survival probabilities (over 0.96) were noted for the age of 12 months. The highest probabilities (still over 0.96) were noted in the longest time period (up to 18 months) for P boars. The results of our study can be used in AI stations as reference points for the exploitation and culling of boars with different genotypes.

摘要

本研究的目的是详细分析人工授精站使用的公猪基因型,指明其生产性能,包括年龄,并精确分析其淘汰时间及原因。该研究纳入了334头公猪:81头波兰大白猪(PLW)、108头波兰长白猪(PL)、49头皮特兰猪(P)、56头杜洛克×皮特兰杂交猪(D×P)以及40头汉普夏×皮特兰杂交猪(H×P)。分析了精液体积、精子浓度、精子总数、活动精子数以及输精剂量。采用二次回归来阐明特定年龄下所选的精子参数。在所有研究的公猪中,白色品种的PLW和PL精子活力最低,活力极值之间的差异为3.53%(P≤0.01)。D×P杂交公猪生产的输精剂量最多:与PL相比多约0.7份,与PLW相比多1.13份,与H×P相比多1.18份,与P相比多1.8份(所有差异P≤0.01)。就射精量而言,已表明PLW和H×P公猪的淘汰时机在生产性能方面过早,PLW的差异为16.35毫升,H×P的差异为12.61毫升。根据所建立的回归方程,最早在24月龄时,H×P杂交公猪获得了最多的活动精子数(73.82×10)。然而,该参数的最高值是由其他D×P杂交公猪在32月龄时获得的:74.30×10。年轻的H×P公猪活动精子数量多的一个结果是,早在第14个月就产生了理论上最大数量的输精剂量(25.59份)。PL和D×P公猪获得了形状相似的曲线;最大值的差异为0.54份,杂交猪更具优势,出现在7月龄之后。值得注意的是,对于PLW和D×P公猪,淘汰数量最多是由于需求减少(分别为24.47%甚至31.19%)。其他公猪——PL、P和H×P——最常因精液质量低而被淘汰。无论基因型如何,12月龄时的存活概率都很高(超过0.96)。P公猪在最长时间段(直至18个月)内的存活概率最高(仍超过0.96)。我们的研究结果可在人工授精站用作不同基因型公猪利用和淘汰的参考依据。

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