Dynamic mRNA expression during chicken ovarian follicle development

Author:

Kui Hua12ORCID,Li Penghao2,Wang Tao1,Luo Yingyu3,Ning Chunyou3,Li Mengmeng3,Liu Siying1,Zhu Qing3,Li Jing4,Li Diyan1ORCID

Affiliation:

1. School of Pharmacy, Chengdu University , Chengdu 610106 , People’s Republic of China

2. Jinxin Research Institute for Reproductive Medicine and Genetics, Chengdu Xi Nan Gynecological Hospital Co., Ltd. , 66 Bisheng Road , Chengdu 610000, People’s Republic of China

3. College of Animal Science and Technology, Sichuan Agricultural University , Chengdu 611130, Sichuan , People’s Republic of China

4. College of Agriculture, Kunming University , Kunming 650214 , People’s Republic of China

Abstract

Abstract Ovarian follicle development is a complex and well-orchestrated biological process of great economic significance for poultry production. Specifically, understanding the molecular mechanisms underlying follicular development is essential for high-efficiency follicular development can benefit the entire industry. In addition, domestic egg-laying hens often spontaneously develop ovarian cancer, providing an opportunity to study the genetic, biochemical, and environmental risk factors associated with the development of this cancer. Here, we provide high-quality RNA sequencing data for chicken follicular granulosa cells across 10 developmental stages, which resulted in a total of 204.57 Gb of clean sequencing data (6.82 Gb on average per sample). We also performed gene expression, time-series, and functional enrichment analyses across the 10 developmental stages. Our study revealed that SWF (small while follicle), F1 (F1 hierarchical follicles), and POFs (postovulatory follicles) best represent the transcriptional changes associated with the prehierarchical, preovulatory, and postovulatory stages, respectively. We found that the preovulatory stage F1 showed the greatest divergence in gene expression from the POF stage. Our research lays a foundation for further elucidation of egg-laying performance of chicken and human ovarian disease.

Funder

National Natural Science Foundation of China

Yunnan Basic Research Program Local University Joint Special Project-Key Project

Yunnan High level technology talent and innovation team selection special project—reserve talent project for young and middle-aged academic and technical leaders

Publisher

Oxford University Press (OUP)

Subject

Genetics (clinical),Genetics,Molecular Biology

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