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饲养密度对山麻鸭育肥期卵巢发育和成熟的影响。

Effects of stocking density on ovarian development and maturation during the rearing period in Shan-ma ducks.

机构信息

College of Animal Science & Technology, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China; Guangdong Province Key Laboratory of Waterfowl Healthy Breeding, Guangzhou, Guangdong 510225, China.

College of Animal Science & Technology, Zhongkai University of Agriculture and Engineering, Guangzhou 510225, China; Guangdong Province Key Laboratory of Waterfowl Healthy Breeding, Guangzhou, Guangdong 510225, China.

出版信息

Poult Sci. 2022 May;101(5):101809. doi: 10.1016/j.psj.2022.101809. Epub 2022 Feb 25.

Abstract

Stocking density critically affects the growth and subsequent performance of animals in modern poultry production. This study investigated the effects of stocking density on ovarian development, ovarian maturation, and the mRNA expression of key genes in the reproductive axis during the rearing period of Shan-ma ducks. The experiments involved 180 healthy 7-wk-old Shan-ma ducks and randomly divided into low stocking density (LSD; n = 30, density = 5 birds/m), medium stocking density (MSD; n = 60, density = 10 birds/m) and high stocking density groups (HSD; n = 90, density = 15 birds/m), for rearing. After examining ovarian development and measuring hormone levels in the plasma and expression levels of key regulatory genes in the reproductive axis at 19 wk of rearing, analysis of the gonad index analysis, reflecting stocking density, uncovered statistically significant differences. The gonad index of the LSD group was significantly higher than those of the MSD and HSD groups (P < 0.01), while no significant difference was observed between the MSD and HSD groups. pre-ovulatory follicles (POFs) and small yellow follicles (SYFs) development was only apparent in the LSD group, with the large white follicles (LWFs) number of this group being significantly higher than that of the MSD group (P < 0.05). The blood levels of E2 (estradiol), P4 (progesterone), and T (testosterone) were significantly higher in the LSD group than in the MSD and HSD groups (P < 0.05 or 0.01). Also, the levels of both P4 and T were significantly higher in the MSD group than in the HSD group (P < 0.01). The gene expression levels of GnRHR, FSH, AMHR, and FSHR were significantly increased in the LSD group compared to the MSD and HSD groups (P < 0.05 or 0.01), while the expression levels of GnIHR and GDF9 were significantly decreased in the LSD and MSD groups compared to the HSD group (P < 0.05 or 0.01). Steroid biosynthesis pathway genes such as StAR, CYP11A1, 3β-HSD, CYP19A1, and BMP15 were significantly downregulated at greater stocking densities (P < 0.05 or 0.01). Likewise, the protein expression of StAR, 3β-HSD, and CYP19A1 was also significantly decreased (P < 0.05 or 0.01). These results demonstrate that both medium and high stocking densities suppressed the expression of the key reproduction-promoting factors, while the expression level of the key reproductive inhibitory factors was enhanced. Therefore, rates of ovarian development and maturation could be reduced by a high stocking density leading to a delay in reproduction performance during the rearing period of Shan-ma ducks.

摘要

饲养密度会严重影响现代家禽生产中动物的生长和后续性能。本研究调查了饲养密度对山麻鸭饲养期卵巢发育、卵巢成熟和生殖轴关键基因 mRNA 表达的影响。实验涉及 180 只健康的 7 周龄山麻鸭,随机分为低密度组(LSD;n=30,密度=5 只/米)、中密度组(MSD;n=60,密度=10 只/米)和高密度组(HSD;n=90,密度=15 只/米)进行饲养。在饲养 19 周时,检查卵巢发育情况,测量血浆中激素水平和生殖轴关键调节基因的表达水平,分析反映饲养密度的性腺指数分析表明,各组间存在统计学差异。LSD 组的性腺指数显著高于 MSD 和 HSD 组(P<0.01),而 MSD 和 HSD 组间无显著差异。LSD 组仅出现预排卵卵泡(POFs)和小黄卵泡(SYFs)发育,大白色卵泡(LWFs)数量显著高于 MSD 组(P<0.05)。LSD 组的 E2(雌二醇)、P4(孕酮)和 T(睾酮)水平显著高于 MSD 和 HSD 组(P<0.05 或 0.01)。此外,MSD 组的 P4 和 T 水平也显著高于 HSD 组(P<0.01)。LSD 组的 GnRHR、FSH、AMHR 和 FSHR 基因表达水平显著高于 MSD 和 HSD 组(P<0.05 或 0.01),而 GnIHR 和 GDF9 的表达水平在 LSD 和 MSD 组显著低于 HSD 组(P<0.05 或 0.01)。类固醇生物合成途径基因如 StAR、CYP11A1、3β-HSD、CYP19A1 和 BMP15 在较高饲养密度下显著下调(P<0.05 或 0.01)。同样,StAR、3β-HSD 和 CYP19A1 的蛋白表达也显著降低(P<0.05 或 0.01)。这些结果表明,中密度和高密度均抑制了关键繁殖促进因子的表达,而关键繁殖抑制因子的表达水平增强。因此,高密度可能会降低卵巢发育和成熟的速度,导致山麻鸭饲养期繁殖性能延迟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe96/8968648/d8b8a804fd0b/gr1.jpg

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