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Spatial and temporal expression of spermadhesin genes in reproductive tracts of male and female pigs and ejaculated sperm

机译:精子粘附素基因在雄性和雌性猪及射精后的生殖道中的时空表达

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Spermadhesins, a novel protein family identified in the reproductive tract of ungulates, have important roles in reproduction. In this study, the expression of pig (Sus domesticus) spermadhesion genes in seminal vesicles, prostate, and bulbourethral glands from birth to sexual maturity and the spatial expression in adult male and female genital tracts and ejaculated sperm of Meishan pigs were evaluated by reverse transcription-polymerase chain reaction (RT-PCR). In general, all spermadhesin genes increased from Days 1 to 150 in the seminal vesicle and bulbourethral gland. However, their expression in the prostate was variable; it increased from Days 1 to 60 and then declined until Day 150. In adult boars, all genes had a very high level of expression in the seminal vesicle and somewhat lower (but still relatively high) in the prostate, caput and caudal epididymides, and bulbourethral gland. Expression of AQN1 and AQN3 was not detectable in the corpus epididymis. In the testis, AQN3 gene expression was not detectable, and gene expressions were weak for AQN1, PSP-I, and PSP-II, but strong for AWN. In female pigs, most spermadhesins had low expression in the cervix, uterine horn, oviduct, and ovary. Expression of AQN1 and AQN3 was very weak in the cervix and uterine horn. Signals for AQN1 in oviduct and ovary and AQN3 in ovary were not detectable, whereas AWN had high expression in the cervix and uterine horn. In ejaculated sperm, a strong mRNA signal of spermadhesins was detected. We concluded that transcripts of spermadhesins were not only distributed extensively in male and female reproductive tissues but also in ejaculated sperm. Furthermore, their dynamic changes of expression paralleled reproductive development. Seminal vesicles were the main source of spermadhesins; when the boar reached puberty, expression of spermadhesins reached very high levels.
机译:在有蹄类动物的生殖道中鉴定出的一种新型蛋白质家族-精子粘附素,在生殖中具有重要作用。本研究通过逆转录分析了从出生到性成熟的生精囊,前列腺和球脑腺中猪(Sus domesticus)精子粘附基因的表达以及梅山猪成年雌雄生殖道和射精精的空间表达。 -聚合酶链反应(RT-PCR)。通常,精囊和脑袋腺中所有精子粘附素基因从第1天增加到150天。然而,它们在前列腺中的表达是可变的。它从第1天增加到60天,然后下降到150天。在成年公猪中,所有基因在精囊中的表达水平很高,而在前列腺、,和尾附睾中的表达水平较低(但仍然相对较高),并且球脑腺。在附睾体中未检测到AQN1和AQN3的表达。在睾丸中,无法检测到AQN3基因表达,并且AQN1,PSP-I和PSP-II的基因表达较弱,而AWN的基因表达较强。在雌猪中,大多数精子粘附素在子宫颈,子宫角,输卵管和卵巢中的表达较低。 AQN1和AQN3在子宫颈和子宫角中的表达非常弱。输卵管和卵巢中的AQN1和卵巢中的AQN3信号均未检测到,而AWN在子宫颈和子宫角中高表达。在射精的精子中,检测到精子粘附素的强mRNA信号。我们得出的结论是,精原蛋白的转录本不仅广泛分布在男性和女性生殖组织中,而且还射出了精子。此外,它们的表达动态变化与生殖发育平行。精囊是精子粘附素的主要来源。当公猪到达青春期时,精子粘附素的表达达到很高的水平。

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