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猪精液的全面无菌化,提高猪繁殖的生物安全性。

Total Aseptization of Boar Semen, to Increase the Biosecurity of Reproduction in Swine.

机构信息

Reproduction Clinic, Department Clinics, Faculty of Veterinary Medicine, Iasi University of Life Sciences (IULS), M. Sadoveanu Alee, no 6, 700489 Iaşi, Romania.

Laboratory of Microbiology, Department of Public Health, Faculty of Veterinary Medicine, Iasi University of Life Sciences (IULS), M. Sadoveanu Alee, no 6, 700489 Iaşi, Romania.

出版信息

Molecules. 2021 Oct 13;26(20):6183. doi: 10.3390/molecules26206183.

Abstract

The aim of the study was to establish the complete microbiological profile of boar semen () and to choose the most effective antiseptic measures in order to control and optimize AI reproduction in pig farms. One hundred and one semen samples were collected and analyzed from several pig farms. The microbiological profile of ejaculates was determined by evaluating the degree of contamination of fresh semen and after dilution with specific extenders. The bacterial and fungal load of fresh boar semen recorded an average value of 82.41/0.149 × 10 CFU/mL, while after diluting the ejaculates the contamination value was 0.354/0.140 × 10 CFU/mL. Twenty-four germs (15 bacterial and 9 fungal species) were isolated, the most common being (92%) and (81.2%). Modification of the sperm collection protocol (HPBC) reduced contamination in raw sperm by 49.85% in bacteria (significant ( < 0.00001) and by 9.67% in fungi (non-significant ( < 0.111491). The load in bacteria and filamentous fungi can be controllable, but not in levuras fungi. Some fluconazole-added extenders (12.5 mg%), ensure fungal aseptization, and even an increase in sperm progressivity (8.39%) for at least a 12 h shelf life after dilution. Validation of sperm aseptization was done by maintaining sow fecundity unchanged after AI (insignificant > 0.05).

摘要

本研究旨在建立公猪精液的完整微生物图谱,并选择最有效的消毒措施,以控制和优化猪场的人工授精繁殖。从几个猪场收集并分析了 101 份精液样本。通过评估新鲜精液和用特定稀释剂稀释后的污染程度来确定精液的微生物谱。新鲜公猪精液的细菌和真菌负荷平均记录为 82.41/0.149×10 CFU/mL,而稀释精液后的污染值为 0.354/0.140×10 CFU/mL。分离出 24 种细菌(15 种细菌和 9 种真菌),最常见的是 (92%)和 (81.2%)。改良的精子采集方案(HPBC)使原始精子中的细菌污染减少了 49.85%(差异显著(<0.00001),真菌污染减少了 9.67%(差异不显著(<0.111491)。细菌和丝状真菌的负荷是可以控制的,但不能控制真菌的负荷。一些添加氟康唑的稀释剂(12.5 mg%)可确保真菌无菌,并在稀释后至少 12 小时的货架期内提高精子的渐进性(8.39%)。通过维持人工授精后母猪的繁殖力不变(差异不显著(>0.05))来验证精子无菌性。

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