Preliminary insights into the molecular mechanism of energy metabolism on sex differentiation in chickens based on transcriptome sequencing

Author:

Zhao Zongyi1,Zuo Qisheng1,Cheng Fufu1,Hu Cai1,Wu Yuhui1,Geng Qingqing1,Wu Rongfeng1,Wang Yingjie2,Zhang Wenhui3,Niu Yingjie1,Sun Hongyan1,Jin Kai1,Li Bichun1,Zhang Yani1

Affiliation:

1. Yangzhou University

2. Jiangsu University of Science and Technology

3. China Agricultural University

Abstract

Abstract Mammalians sex determination is well-known, and sophisticated mechanisms to sex control have been developed. However, effective sex control in poultry has not yet been developed. Through RNA-sequencing of the male gonads and ovarian tissues of chicken embryos up to 18.5 days, we identified the primary metabolic factors affecting male and female sex differentiation and gonadal development. Pkm2, an essential glycolysis-related protein, influences sex differentiation in chickens via Gapdh, a crucial hormone gene. Glycolysis-related sex regulation also involves epigenetic alterations such as transcription factor (Srf, Myb, Tead1), acetylation (Hdac3), and phosphorylation (Nfkbia, Ikbkb) modifications. Our findings support the concept that glycolysis and oxidative phosphorylation contribute upstream to sexual phenotypic development and maintenance.

Publisher

Research Square Platform LLC

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