中国农业科技导报 ›› 2023, Vol. 25 ›› Issue (12): 67-84.DOI: 10.13304/j.nykjdb.2023.0132

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发情周期对香猪卵巢生物钟相关基因表达的影响

唐靓婷1,2(), 黄世会1, 牛熙1, 李升1, 王嘉福1(), 冉雪琴1()   

  1. 1.贵州大学动物科学学院,农业生物工程研究所,教育部山区植物资源保护与种质创新重点实验室,贵阳 550025
    2.贵州开放大学,贵阳 550023
  • 出版日期:2023-12-15 发布日期:2023-12-12
  • 通讯作者: 王嘉福,冉雪琴

Effects of Estrus Cycle on Expression of Ovarian Biological Clock-related Genes of Xiang Pig

Liangting TANG1,2(), Shihui HUANG1, Xi NIU1, Sheng LI1, Jiafu WANG1(), Xueqin RAN1()   

  1. 1.Key Laboratory of Plant Resource Conservative and Germplam Innovation in Mountainous Region of Ministry of Education,Institute of Agro-Bioengineering,College of Animal Science,Guizhou University,Guiyang 550025,China
    2.Guizhou Open University,Guiyang 550023,China
  • Online:2023-12-15 Published:2023-12-12
  • Contact: Jiafu WANG,Xueqin RAN
  • About author:TANG Liangting E-mail:714941286@qq.com
  • Supported by:
    Funding project:National Natural Science Foundation of China(31960641);Guizhou Province Science and Technology Innovation Team Building Special (QKHPTRC〔2019〕5615);Guizhou Province “Hundred” Innovative Talents Project(2016-4012);Guizhou Agriculture Research program (QKHZC〔2017〕2585, QKHZC〔2017〕2587, QKHNY〔2013〕3073);National High Technology Research and Development Program of China(2013AA102503)

摘要:

生物钟在生物体(如猪)的生殖系统中起着重要作用。为研究发情周期对香猪卵巢生物钟相关基因表达的影响,本研究分析了香猪卵巢在发情期和未发情期生物钟相关基因的表达和可变剪接。结果在香猪卵巢中共检测到90个生物钟相关基因的表达,其中有33个生物钟相关基因在发情期和未发情期差异表达。从34个生物钟相关基因的转录本中鉴定出44个差异可变剪接事件。此外,还发现包括核心时钟成分 arntlcry1在内的20个基因仅在可变剪接水平上被差异调节,包括 per1clock在内的14个基因同时在基因表达和可变剪接水平被差异调节。通过RT-qPCR 实验,证实了核心时钟基因 per1、cry1clockarntl以及时钟相关基因 ppp1cbntrk1在香猪卵巢中的表达具有节律性。结果表明,香猪卵巢生物钟可能通过转录和转录后调控水平在调节卵巢生理功能中发挥着重要作用。

关键词: 昼夜节律, 香猪, 卵巢, 发情周期, 可变剪接

Abstract:

The biological clock plays a critical role in the reproductive system of various living organisms like swine. To examine the effects of estrus cycle on the expression of ovarian biological clock-related gene in Xiang pig, this study analyzed the expression and alternative splicing of biological clock-related genes in ovary during estrus and diestrus periods. In total, 90 clock-related genes expressed in the ovaries of the Xiang pig were detected and 33 clock-related genes differentially expressed between estrous and diestrous stages. 44 differential splicing events were identified from the transcripts of 34 biological clock-related genes. Furthermore, it was found 20 genes including the core clock components, arntl and cry1 were differentially regulated only at AS level and 14 genes, including per1 and clock, were differentially regulated at both expression and AS levels. We also proved that the core clock genes per1cry1clock and arntl and the clock-related genes, ppp1cb and ntrk1 were rhythmically expressed in Xiang pig ovaries by RT-qPCR experiments. The results demonstrated that the biological clock in the ovaries of Xiang pig might play an important role in regulating the ovarian physiological functions by the transcriptional and post-transcriptional regulation.

Key words: circadian rhythm, Xiang pig, ovary, estrus cycle, alternative splicing

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