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山羊睾丸出生后发育过程中组织形态学和基因表达的时间变化。

Temporal changes in histomorphology and gene expression in goat testes during postnatal development.

作者信息

Faucette A N, Maher V A, Gutierrez M A, Jucker J M, Yates D C, Welsh T H, Amstalden M, Newton G R, Nuti L C, Forrest D W, Ing N H

机构信息

Department of Animal Science, Texas A&M University, Texas A&M AgriLife Research, College Station 77843-2471.

Cooperative Agriculture Research Center, Prairie View A&M University, Prairie View, TX 77446.

出版信息

J Anim Sci. 2014 Oct;92(10):4440-8. doi: 10.2527/jas.2014-7903. Epub 2014 Aug 1.

Abstract

Testicular cell proliferation and differentiation is critical for development of normal testicular function and male reproductive maturity. The objective of the current study was to evaluate histoarchitecture and expression of genes marking specific cells and important functions as well as testosterone production of the developing goat testes. Testes were harvested from Alpine bucks at 0, 2, 4, 6, and 8 mo of age (n = 5/age group). Paired testes weight increased from 2 to 4 (P < 0.001) and 4 to 6 mo (P < 0.01). The greatest increases in seminiferous tubule and lumen diameters and height of the seminiferous epithelium occurred between 2 and 4 mo (P < 0.001). Genes expressed in haploid germ cells (Protamine1 [PRM1], Outer Dense Fiber protein 2 [ODF2], and Stimulated by Retinoic Acid gene 8 [STRA8]) increased dramatically at the same time (P < 0.001). Expression of other genes decreased (P < 0.05) during testicular maturation. These genes included P450 side chain cleavage (CYP11A1), Sex determining region Y-box 9 (SOX9), Insulin-like Growth Factor 1 Receptor (IGF1R), and Heat Shock Protein A8 (HSPA8). The Glutathione S-Transferase A3 (GSTA3) gene, whose product was recently recognized as a primary enzyme involved in isomerization of androstenedione in man and livestock species including goats, sheep, cattle, pigs, and horses, uniquely peaked in expression at 2 mo (P < 0.05). Follicle-Stimulating Hormone Receptor (FSHR) mRNA abundance tended to steadily decrease with age (P = 0.1), while Luteinizing Hormone Receptor (LHCGR) mRNA abundance in testes was not significantly different across the ages. Testosterone content per gram of testicular tissue varied among individuals. However, testosterone content per testis tended to increase at 6 mo (P = 0.06). In conclusion, major changes in cellular structure and gene expression in goat testes were observed at 4 mo of age, when spermatogenesis was initiated. Male goats mature rapidly and represent a good model species for the study of agents that enhance or impair development of testicular functions.

摘要

睾丸细胞的增殖和分化对于正常睾丸功能的发育和雄性生殖成熟至关重要。本研究的目的是评估发育中的山羊睾丸的组织结构、标记特定细胞和重要功能的基因表达以及睾酮的产生。从0、2、4、6和8月龄的阿尔卑斯种公羊中采集睾丸(每个年龄组n = 5)。配对睾丸重量在2至4月龄(P < 0.001)和4至6月龄(P < 0.01)时增加。生精小管、管腔直径和生精上皮高度在2至4月龄时增加最为显著(P < 0.001)。单倍体生殖细胞中表达的基因(鱼精蛋白1 [PRM1]、外周致密纤维蛋白2 [ODF2]和视黄酸刺激基因8 [STRA8])在同一时间显著增加(P < 0.001)。其他基因的表达在睾丸成熟过程中下降(P < 0.05)。这些基因包括细胞色素P450侧链裂解酶(CYP11A1)、性别决定区Y盒9(SOX9)、胰岛素样生长因子1受体(IGF1R)和热休克蛋白A8(HSPA8)。谷胱甘肽S-转移酶A3(GSTA3)基因,其产物最近被认为是参与包括山羊、绵羊、牛、猪和马在内的人和家畜物种中雄烯二酮异构化的主要酶,其表达在2月龄时独特地达到峰值(P < 0.05)。促卵泡激素受体(FSHR)mRNA丰度随年龄增长有稳步下降的趋势(P = 0.1),而睾丸中促黄体生成素受体(LHCGR)mRNA丰度在各年龄组之间无显著差异。每克睾丸组织中的睾酮含量因个体而异。然而,每个睾丸中的睾酮含量在6月龄时趋于增加(P = 0.06)。总之,在4月龄开始精子发生时,观察到山羊睾丸细胞结构和基因表达发生了重大变化。雄性山羊成熟迅速,是研究增强或损害睾丸功能发育的药物的良好模式物种。

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