Sperm traits and seminal plasma proteome of locally adapted hairy rams subjected to intermittent scrotal insulation

IF 2.2 2区 农林科学 Q1 AGRICULTURE, DAIRY & ANIMAL SCIENCE
Aderson M. Viana Neto , Denise D. Guerreiro , Jorge A.M. Martins , F.ábio R. Vasconcelos , R.évila B.F. Melo , Ana Luiza M.C. S. Velho , Marta Neila-Montero , Rafael Montes-Garrido , Celso S. Nagano , Airton A. Araújo , Arlindo A. Moura
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Abstract

The present study evaluated the effects of heat stress on reproductive parameters of hairy rams. Six animals were subjected to scrotal insulation during four consecutive nights (6 PM – 6 AM). Day (D) 0 was the first day of insulation. Scrotal circumference increased from 30.5 ± 0.3 cm (at pre-insulation) to 31.8 ± 0.4 cm on D4, decreased 3.9 cm on D28, returning to 30.6 ± 0.6 cm on D57. Sperm concentration decreased from 3.7 ± 0.12 ×109 sperm/mL before insulation to 2.6 ± 0.1 ×109 on D23, returning to normal on D57. Sperm motility averaged 75 ± 2.9% before insulation, was undetectable on D23, and became normal on D77. Sperm with normal morphology reached 5.9 ± 2.6% on D35 but recovered (86.8 ± 2.1%) on D91. Sperm DNA integrity decreased from 86.5 ± 4.7% before insulation to 11.1 ± 3.7% on D63, returning to pre-insulation values on D120. Sperm BSP immunostaining was reduced after scrotal insulation. Variations in seminal protein abundances coincided with changes in sperm parameters. Seminal plasma superoxide dismutase, carboxypeptidase Q-precursor and NPC intracellular cholesterol transporter 2 decreased on D18, returning to normal after D28. Albumin, inhibitor of carbonic anhydrase precursor, EGF-like repeat and discoid I-like domain-containing protein 3 and polymeric immunoglobulin receptor increased after insulation. In summary, intermittent scrotal insulation drastically altered ram sperm attributes and seminal proteins, especially those associated with oxidative stress. Knowledge of animal´s response to thermal stress is vital in the scenario of climate changes.

间歇性阴囊保温的本地适应性毛公羊的精子性状和精浆蛋白质组
本研究评估了热应激对毛公羊生殖参数的影响。在连续四个晚上(下午 6 点至早上 6 点)对六只动物进行阴囊保温。第(D)0 天是隔热的第一天。阴囊周长从 30.5 ± 0.3 厘米(保温前)增加到 D4 的 31.8 ± 0.4 厘米,D28 时减少了 3.9 厘米,D57 时恢复到 30.6 ± 0.6 厘米。精子浓度从绝育前的 3.7 ± 0.12 ×10 精子/毫升降至 D23 的 2.6 ± 0.1 ×10,D57 时恢复正常。精子活力在保温前平均为 75 ± 2.9%,D23 时检测不到,D77 时恢复正常。形态正常的精子在D35达到5.9 ± 2.6%,但在D91恢复正常(86.8 ± 2.1%)。精子DNA完整性从绝育前的86.5 ± 4.7%下降到D63的11.1 ± 3.7%,在D120恢复到绝育前的值。阴囊保温后,精子的BSP免疫染色减少。精液蛋白质丰度的变化与精子参数的变化相吻合。精浆中的超氧化物歧化酶、羧肽酶Q-前体和NPC细胞内胆固醇转运体2在D18时减少,D28后恢复正常。白蛋白、碳酸酐酶前体抑制剂、类表皮生长因子重复和盘状 I 样域含蛋白 3 和聚合免疫球蛋白受体在保温后增加。总之,间歇性阴囊隔热大大改变了公羊精子的属性和精液蛋白,尤其是与氧化应激相关的蛋白。在气候变化的情况下,了解动物对热应激的反应至关重要。
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来源期刊
Animal Reproduction Science
Animal Reproduction Science 农林科学-奶制品与动物科学
CiteScore
4.50
自引率
9.10%
发文量
136
审稿时长
54 days
期刊介绍: Animal Reproduction Science publishes results from studies relating to reproduction and fertility in animals. This includes both fundamental research and applied studies, including management practices that increase our understanding of the biology and manipulation of reproduction. Manuscripts should go into depth in the mechanisms involved in the research reported, rather than a give a mere description of findings. The focus is on animals that are useful to humans including food- and fibre-producing; companion/recreational; captive; and endangered species including zoo animals, but excluding laboratory animals unless the results of the study provide new information that impacts the basic understanding of the biology or manipulation of reproduction. The journal''s scope includes the study of reproductive physiology and endocrinology, reproductive cycles, natural and artificial control of reproduction, preservation and use of gametes and embryos, pregnancy and parturition, infertility and sterility, diagnostic and therapeutic techniques. The Editorial Board of Animal Reproduction Science has decided not to publish papers in which there is an exclusive examination of the in vitro development of oocytes and embryos; however, there will be consideration of papers that include in vitro studies where the source of the oocytes and/or development of the embryos beyond the blastocyst stage is part of the experimental design.
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