Genome-wide association study of maternal plasma metabolites during pregnancy

Siyang Liu(BGI Group (China)), Jilong Yao(Shenzhen Maternity and Child Healthcare Hospital), Liang Lin(BGI Group (China)), Xianmei Lan(University of Chinese Academy of Sciences), Linlin Wu(Shenzhen Maternity and Child Healthcare Hospital), Xuelian He(Wuhan Children's Hospital), Nannan Kong(BGI Group (China)), Yan Li(BGI Group (China)), Yuqing Deng(Peking University Shenzhen Hospital), Jiansheng Xie(Shenzhen Maternity and Child Healthcare Hospital), Huanhuan Zhu(BGI Group (China)), Xiaoxia Wu(Shenzhen Maternity and Child Healthcare Hospital), Zilong Li(BGI Group (China)), Likuan Xiong(Jinan University), Yuan Wang(BGI Group (China)), Jinghui Ren(ShenZhen People’s Hospital), Xuemei Qiu(BGI Group (China)), Weihua Zhao(Shenzhen Second People's Hospital), Ya Gao(BGI Group (China)), Yuanqing Chen(Anshan Hospital), Fengxia Su(BGI Group (China)), Yun Zhou(Shenzhen Luohu People's Hospital), Weiqiao Rao(BGI Group (China)), Jing Zhang(Shenzhen Maternity and Child Healthcare Hospital), Guixue Hou(BGI Group (China)), Liping Huang(Shenzhen Bao'an District People's Hospital), Linxuan Li(University of Chinese Academy of Sciences), Xinhong Liu(Longgang Central Hospital), Chao Nie(BGI Group (China)), Liqiong Luo(ShenZhen People’s Hospital), Mei Zhao(BGI Group (China)), Zengyou Liu(ShenZhen People’s Hospital), Fang Chen, Shengmou Lin(University of Hong Kong - Shenzhen Hospital), Lijian Zhao(BGI Group (China)), Qingmei Fu, Dan Jiang(BGI Group (China)), Ye Yin(BGI Group (China)), Xun Xu(BGI Group (China)), Jian Wang(BGI Group (China)), Huanming Yang(BGI Group (China)), Rong Wang(BGI Group (China)), Jianmin Niu(Shenzhen Maternity and Child Healthcare Hospital), Fengxiang Wei(Shenzhen Maternity and Child Healthcare Hospital), Xin Jin(BGI Group (China)), Siqi Liu(BGI Group (China))
Cell Genomics
October 1, 2024
Cited by 11Open Access
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Abstract

Metabolites are key indicators of health and therapeutic targets, but their genetic underpinnings during pregnancy-a critical period for human reproduction-are largely unexplored. Using genetic data from non-invasive prenatal testing, we performed a genome-wide association study on 84 metabolites, including 37 amino acids, 24 elements, 13 hormones, and 10 vitamins, involving 34,394 pregnant Chinese women, with sample sizes ranging from 6,394 to 13,392 for specific metabolites. We identified 53 metabolite-gene associations, 23 of which are novel. Significant differences in genetic effects between pregnant and non-pregnant women were observed for 16.7%-100% of these associations, indicating gene-environment interactions. Additionally, 50.94% of genetic associations exhibited pleiotropy among metabolites and between six metabolites and eight pregnancy phenotypes. Mendelian randomization revealed potential causal relationships between seven maternal metabolites and 15 human traits and diseases. These findings provide new insights into the genetic basis of maternal plasma metabolites during pregnancy.


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