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No imprinted XIST expression in pigs: biallelic XIST expression in early embryos and random X inactivation in placentas

西斯特 X-失活 生物 胚胎 X染色体 男科 基因组印记 胚胎干细胞 遗传学 细胞生物学 基因 基因表达 医学 DNA甲基化
作者
Huiying Zou,Dawei Yu,Xuguang Du,Jing Wang,Lei Chen,Yangyang Wang,Huitao Xu,Yunxuan Zhao,Shanjiang Zhao,Yunwei Pang,Yan Liu,Haisheng Hao,Xueming Zhao,Weihua Du,Yunping Dai,Ning Li,Sen Wu,Huabin Zhu
出处
期刊:Cellular and Molecular Life Sciences [Springer Nature]
卷期号:76 (22): 4525-4538 被引量:12
标识
DOI:10.1007/s00018-019-03123-3
摘要

Dosage compensation, which is achieved by X-chromosome inactivation (XCI) in female mammals, ensures balanced X-linked gene expression levels between the sexes. Although eutherian mammals commonly display random XCI in embryonic and adult tissues, imprinted XCI has also been identified in extraembryonic tissues of mouse, rat, and cow. Little is known about XCI in pigs. Here, we sequenced the porcine XIST gene and identified an insertion/deletion mutation between Asian- and Western-origin pig breeds. Allele-specific analysis revealed biallelic XIST expression in porcine ICSI blastocysts. To investigate the XCI pattern in porcine placentas, we performed allele-specific RNA sequencing analysis on individuals from reciprocal crosses between Duroc and Rongchang pigs. Our results were the first to reveal that random XCI occurs in the placentas of pigs. Next, we investigated the H3K27me3 histone pattern in porcine blastocysts, showing that only 17–31.8% cells have attained XCI. The hypomethylation status of an important XIST DMR (differentially methylated region) in gametes and early embryos demonstrated that no methylation is pre-deposited on XIST in pigs. Our findings reveal that the XCI regulation mechanism in pigs is different from that in mice and highlight the importance of further study of the mechanisms regulating XCI during early porcine embryo development.

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