Cargando…

Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice

Primordial follicle assembly in the mouse occurs during perinatal ages and largely determines the ovarian reserve that will be available to support the reproductive life span. The development of primordial follicles is controlled by a complex network of interactions between oocytes and ovarian somat...

Descripción completa

Detalles Bibliográficos
Autores principales: Wang, Jun-Jie, Ge, Wei, Zhai, Qiu-Yue, Liu, Jing-Cai, Sun, Xiao-Wen, Liu, Wen-Xiang, Li, Lan, Lei, Chu-Zhao, Dyce, Paul W., De Felici, Massimo, Shen, Wei
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7787681/
https://www.ncbi.nlm.nih.gov/pubmed/33351795
http://dx.doi.org/10.1371/journal.pbio.3001025
_version_ 1783632873479208960
author Wang, Jun-Jie
Ge, Wei
Zhai, Qiu-Yue
Liu, Jing-Cai
Sun, Xiao-Wen
Liu, Wen-Xiang
Li, Lan
Lei, Chu-Zhao
Dyce, Paul W.
De Felici, Massimo
Shen, Wei
author_facet Wang, Jun-Jie
Ge, Wei
Zhai, Qiu-Yue
Liu, Jing-Cai
Sun, Xiao-Wen
Liu, Wen-Xiang
Li, Lan
Lei, Chu-Zhao
Dyce, Paul W.
De Felici, Massimo
Shen, Wei
author_sort Wang, Jun-Jie
collection PubMed
description Primordial follicle assembly in the mouse occurs during perinatal ages and largely determines the ovarian reserve that will be available to support the reproductive life span. The development of primordial follicles is controlled by a complex network of interactions between oocytes and ovarian somatic cells that remain poorly understood. In the present research, using single-cell RNA sequencing performed over a time series on murine ovaries, coupled with several bioinformatics analyses, the complete dynamic genetic programs of germ and granulosa cells from E16.5 to postnatal day (PD) 3 were reported. Along with confirming the previously reported expression of genes by germ cells and granulosa cells, our analyses identified 5 distinct cell clusters associated with germ cells and 6 with granulosa cells. Consequently, several new genes expressed at significant levels at each investigated stage were assigned. By building single-cell pseudotemporal trajectories, 3 states and 1 branch point of fate transition for the germ cells were revealed, as well as for the granulosa cells. Moreover, Gene Ontology (GO) term enrichment enabled identification of the biological process most represented in germ cells and granulosa cells or common to both cell types at each specific stage, and the interactions of germ cells and granulosa cells basing on known and novel pathway were presented. Finally, by using single-cell regulatory network inference and clustering (SCENIC) algorithm, we were able to establish a network of regulons that can be postulated as likely candidates for sustaining germ cell-specific transcription programs throughout the period of investigation. Above all, this study provides the whole transcriptome landscape of ovarian cells and unearths new insights during primordial follicle assembly in mice.
format Online
Article
Text
id pubmed-7787681
institution National Center for Biotechnology Information
language English
publishDate 2020
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-77876812021-01-14 Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice Wang, Jun-Jie Ge, Wei Zhai, Qiu-Yue Liu, Jing-Cai Sun, Xiao-Wen Liu, Wen-Xiang Li, Lan Lei, Chu-Zhao Dyce, Paul W. De Felici, Massimo Shen, Wei PLoS Biol Methods and Resources Primordial follicle assembly in the mouse occurs during perinatal ages and largely determines the ovarian reserve that will be available to support the reproductive life span. The development of primordial follicles is controlled by a complex network of interactions between oocytes and ovarian somatic cells that remain poorly understood. In the present research, using single-cell RNA sequencing performed over a time series on murine ovaries, coupled with several bioinformatics analyses, the complete dynamic genetic programs of germ and granulosa cells from E16.5 to postnatal day (PD) 3 were reported. Along with confirming the previously reported expression of genes by germ cells and granulosa cells, our analyses identified 5 distinct cell clusters associated with germ cells and 6 with granulosa cells. Consequently, several new genes expressed at significant levels at each investigated stage were assigned. By building single-cell pseudotemporal trajectories, 3 states and 1 branch point of fate transition for the germ cells were revealed, as well as for the granulosa cells. Moreover, Gene Ontology (GO) term enrichment enabled identification of the biological process most represented in germ cells and granulosa cells or common to both cell types at each specific stage, and the interactions of germ cells and granulosa cells basing on known and novel pathway were presented. Finally, by using single-cell regulatory network inference and clustering (SCENIC) algorithm, we were able to establish a network of regulons that can be postulated as likely candidates for sustaining germ cell-specific transcription programs throughout the period of investigation. Above all, this study provides the whole transcriptome landscape of ovarian cells and unearths new insights during primordial follicle assembly in mice. Public Library of Science 2020-12-22 /pmc/articles/PMC7787681/ /pubmed/33351795 http://dx.doi.org/10.1371/journal.pbio.3001025 Text en © 2020 Wang et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Methods and Resources
Wang, Jun-Jie
Ge, Wei
Zhai, Qiu-Yue
Liu, Jing-Cai
Sun, Xiao-Wen
Liu, Wen-Xiang
Li, Lan
Lei, Chu-Zhao
Dyce, Paul W.
De Felici, Massimo
Shen, Wei
Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
title Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
title_full Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
title_fullStr Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
title_full_unstemmed Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
title_short Single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
title_sort single-cell transcriptome landscape of ovarian cells during primordial follicle assembly in mice
topic Methods and Resources
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7787681/
https://www.ncbi.nlm.nih.gov/pubmed/33351795
http://dx.doi.org/10.1371/journal.pbio.3001025
work_keys_str_mv AT wangjunjie singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT gewei singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT zhaiqiuyue singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT liujingcai singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT sunxiaowen singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT liuwenxiang singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT lilan singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT leichuzhao singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT dycepaulw singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT defelicimassimo singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice
AT shenwei singlecelltranscriptomelandscapeofovariancellsduringprimordialfollicleassemblyinmice