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促性腺激素亚基基因在生殖不活跃的金黄仓鼠中的表达

Expressions of Gonadotropin Subunit Genes in the Reproductively Inactive Golden Hamsters.

作者信息

Choi Donchan

机构信息

Dept. of Life Science, College of Health and Welfare Sciences, Yong-In University, Yongin 17092, Korea.

出版信息

Dev Reprod. 2022 Jun;26(2):37-47. doi: 10.12717/DR.2022.26.2.37. Epub 2022 Jun 30.

Abstract

Photoperiod has well been established to regulate testicular activities in golden hamsters. These animals breed actively around summer but become infertile in winter. In males, testicles are full of multistep germ cells including spermatozoa in summer. But in winter only fundamental cells consisting of the testicles are detected. The testicular degeneration is accompanied by the reduced levels of blood gonadotropins and testosterone. In this study, the expressions of gonadotropin subunit genes were investigated in the reproductive active and inactive testicles. And parts of sequences of the gonadotropin subunits were identified and compared with those of other rodents. As results, common gonadotropin alpha (CGa), follicle-stimulating hormone (FSH) β, and luteinizing hormone (LH) β genes were equivalently detected in pituitaries of both sexually active and inactive animals. In considering low concentrations of gonadotropin hormones determined in pituitary, the present findings imply that the processes involved in translation and/or formation of functional hormones could be impeded in the sexually inactive hamsters. All the nucleotide sequences of gonadotropin subunits identified in this study were same as those reported previously except for one base in CGa. An unsure amino acid deduced from the CGa sequence was confirmed from mRNA sequencing. The outcomes mentioned above suggest that animals with regressed testes prepare for the sexually active period forthcoming in the future.

摘要

光照周期对金黄地鼠睾丸活动的调节作用已得到充分证实。这些动物在夏季左右繁殖活跃,但在冬季会变得不育。在雄性中,夏季睾丸充满了包括精子在内的多阶段生殖细胞。但在冬季,只能检测到构成睾丸的基础细胞。睾丸退化伴随着血液中促性腺激素和睾酮水平的降低。在本研究中,对处于生殖活跃期和非活跃期的睾丸中促性腺激素亚基基因的表达进行了研究。并对促性腺激素亚基的部分序列进行了鉴定,并与其他啮齿动物的序列进行了比较。结果显示,在性活跃和不活跃动物的垂体中均能等量检测到常见的促性腺激素α(CGa)、促卵泡激素(FSH)β和促黄体生成素(LH)β基因。考虑到垂体中促性腺激素的低浓度,目前的研究结果表明,在性不活跃的仓鼠中,参与功能性激素翻译和/或形成的过程可能受到阻碍。本研究中鉴定的促性腺激素亚基的所有核苷酸序列与先前报道的序列相同,除了CGa中的一个碱基。从CGa序列推导的一个不确定氨基酸通过mRNA测序得到了证实。上述结果表明,睾丸退化的动物正在为即将到来的性活跃期做准备。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3268/9336214/ea761f3ea3b2/dr-26-2-37-g1.jpg

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