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辅酶 Q10 通过调节日本鹌鹑(Coturnix japonica)睾丸类固醇生成相关基因表达和炎症途径增强睾丸功能和性行为,以抵御镉的毒性。

Coenzyme Q10 enhances testicular functions and sexual behavior through regulating steroidogenic-related gene expression and inflammatory pathways of Japanese quail (Coturnix japonica) aganist cadmium.

机构信息

Department of Physiology, Faculty of Veterinary Medicine, Alexandria University, Alexandria, Egypt.

Animal and Poultry Behaviour and Management, Animal Husbandry and Animal Wealth Development Department, Faculty of Veterinary Medicine, Alexandria University, Alexandria, Egypt.

出版信息

Poult Sci. 2023 Apr;102(4):102517. doi: 10.1016/j.psj.2023.102517. Epub 2023 Jan 20.

Abstract

A progressively essential bird of high economic significance for meat production and commercial egg is the Japanese quail, and so more experiments are necessary to improve the productivity of these birds under stressful encounters. The current work was performed to define the influences of Coenzyme Q10 (CoQ10) on growth, sexual behavior, and testicular characteristics (size of the gonad, traits of spermatic features, levels of plasma testosterone, steroidogenic-related gene expression) of Japanese quail (Coturnix coturnix japonica) aganist cadmium (Cd) administration. Chicks of quail (n = 250), 14 days old of age were distributed into 4 groups: basal ration (Group 1), basal ration and CoQ10 at 100 mg/kg ration (Group 2), basal ration and Cd at 50 mg/kg ration (Group 3), and CoQ10 + Cd (Group 4). Several parameters relating to productive performance, such as weight of the body, weight gain, feed intake, and the conversion ratio of feed, were evaluated. Constant visual scanning of the quails was performed to observe their sexual behaviors. Sperm characteristics, plasma testosterone levels, and testicular inflammatory markers of interleukin-6 (IL-6) and tumor necrosis factor-α (TNF-α) were also determined. Oxidative-antioxidant redox status in the testes was evaluated by analyzing MDA level, GPx, and SOD activities. Steroidogenic-related gene expression in the testes (CYP17A1, StAR, 3β-HSD, and Cyp19) was also examined. In addition, testicular apoptosis was assessed by monitoring the alterations in the local expression of stress-induced (HSP70), proteins of anti-apoptotic marker (Bcl-2), and pro-apoptotic markers (caspase-3 and Bax). Cd administration hurts body performance, sexual behavior, and testicular efficiency parameters. Interestingly, CoQ10 supplementation improved reproductive performance. Moreover, it significantly increases the % of birds exhibiting sexual behavior and enhances testicular functions, which were damaged by Cd administration, by enhancing plasma testosterone level, antioxidative enzyme activity, and sperm quality traits while reducing the MDA and pro-inflammatory markers. Furthermore, downregulation of pro-apoptotic factor expression, though it increased the expression of the anti-apoptotic protein, was recorded. Correspondingly, CoQ10 revealed a marked upregulation in the expression of steroidogenic-related genes. Conclusion: It is established that the consumption of CoQ10 in the ration of Japanese quail, following a Cd adminstration, improves productive performance, sexual behavior, and several testicular function parameters as a potent antioxidant.

摘要

一种具有重要经济意义的高产肉和商业蛋的鸟类是日本鹌鹑,因此需要进行更多的实验来提高这些鸟类在应激环境下的生产力。目前的工作旨在确定辅酶 Q10(CoQ10)对日本鹌鹑( Coturnix coturnix japonica )在镉(Cd)处理下的生长、性行为和睾丸特征(性腺大小、精子特征、血浆睾酮水平、类固醇生成相关基因表达)的影响。14 天大的鹌鹑雏鸡(n=250)被分为 4 组:基础日粮(第 1 组)、基础日粮和 100mg/kg 日粮中的 CoQ10(第 2 组)、基础日粮和 50mg/kg 日粮中的 Cd(第 3 组)和 CoQ10+Cd(第 4 组)。评估了与生产性能相关的几个参数,如体重、体重增加、采食量和饲料转化率。对鹌鹑进行了持续的视觉扫描,以观察它们的性行为。还测定了精子特征、血浆睾酮水平和睾丸炎症标志物白细胞介素-6(IL-6)和肿瘤坏死因子-α(TNF-α)。通过分析 MDA 水平、GPx 和 SOD 活性来评估睾丸的氧化-抗氧化还原状态。还检查了睾丸中类固醇生成相关基因的表达(CYP17A1、StAR、3β-HSD 和 Cyp19)。此外,通过监测应激诱导的 HSP70)、抗凋亡标志物(Bcl-2)和促凋亡标志物(caspase-3 和 Bax)的局部表达来评估睾丸凋亡。Cd 处理会损害身体性能、性行为和睾丸效率参数。有趣的是,CoQ10 补充剂改善了繁殖性能。此外,它通过提高血浆睾酮水平、抗氧化酶活性和精子质量特征,同时降低 MDA 和促炎标志物来增强由 Cd 处理破坏的睾丸功能,从而显著增加表现性行为的鸟类比例,并提高睾丸功能。此外,记录到促凋亡因子表达下调,尽管它增加了抗凋亡蛋白的表达。相应地,CoQ10 显示出类固醇生成相关基因表达的显著上调。结论:在日本鹌鹑日粮中添加 CoQ10 可改善生产性能、性行为和几种睾丸功能参数,作为一种有效的抗氧化剂。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e128/9943869/ce38c592bc61/gr1.jpg

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