Characterization of sheep spermatogenesis through single-cell RNA sequencing.

FASEB J

Jiangsu Livestock Embryo Engineering Laboratory, College of Animal Science and Technology, Nanjing Agricultural University, Nanjing, P.R. China.

Published: February 2021

AI Article Synopsis

  • Spermatogenesis is a crucial process for male reproduction, involving interactions between male germ cells and somatic cells, which are challenging to profile due to cellular diversity.
  • The study utilizes advanced 10× genomics single-cell sequencing to analyze 11,772 cells from adult sheep testis, identifying distinct germ cells and somatic cells, including unexpected leukocytes.
  • Functional enrichment analysis reveals key pathways linked to germ cell development and somatic cell functions and identifies specific marker genes for various sheep germ cell stages, offering new insights into sheep spermatogenesis and cell development.

Article Abstract

Spermatogenesis is an important biological process in male reproduction. The interaction between male germ cells and somatic cells during spermatogenesis, is necessary for male reproductive activities. This cellular heterogeneity has made it difficult to profile distinct cell types at different stages of development. Here, we present the first comprehensive, unbiased single-cell transcriptomic study of sheep spermatogenesis using 10× genomics single cell sequencing (scRNA-seq). We collected scRNA-seq data from 11 772 cells from the adult sheep testis and identified all known germ cells (including early primary spermatocytes, late primary spermatocytes, round spermatids, elongated spermatids, and sperm), and somatic cells (Sertoli cells and Leydig cells), as well as one somatic cell that unexpectedly contained leukocytes. The functional enrichment analysis indicated that several pathways of cell cycle, gamete generation, protein processing, and mRNA surveillance pathways were significantly enriched in testicular germ cell types, and ribosome pathway was significantly enriched in testicular somatic cell types. Further analysis identified several stage-specific marker genes of sheep germ cells, such as EZH2, SOX18, SCP2, PCNA, and PRKCD. Our research explored for the first time of the changes in the transcription level of various cell types during the process of sheep spermatogenesis, providing new insights for sheep spermatogenesis and spermatogenic cell development.

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Source
http://dx.doi.org/10.1096/fj.202001035RRRDOI Listing

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