Spermatocytes are the terminals of germ cell differentiation in plateau zokor (Eospalax baileyi) during the non‐breeding season

Author:

AN Kang12,YAO Baohui12,TAN Yuchen12,KANG Yukun12,WANG Zhicheng12,SU Junhu12

Affiliation:

1. College of Grassland Science, Key Laboratory of Grassland Ecosystem (Ministry of Education) Gansu Agricultural University Lanzhou China

2. Gansu Agricultural University–Massey University Research Centre for Grassland Biodiversity Gansu Agricultural University Lanzhou China

Abstract

AbstractPlateau zokor (Eospalax baileyi) is a subterranean rodent and seasonal breeder. During the non‐breeding season, the testicles regress, leading to the arrest of spermatogenesis and loss of fertility. The identification of the specific germ cell type at which spermatogenesis is arrested, as well as potential regulatory factors during the non‐breeding season, is important for understanding seasonal spermatogenesis in subterranean species. This study analyzed genes in spermatocytes of plateau zokor by referring to single‐cell RNA results in mice. We discovered that spermatogenesis is arrested at the spermatocyte during the non‐breeding season, which was corroborated via immunofluorescence staining results. The analysis of gene expression during different stages of meiotic prophase I has revealed that germ cell development may be arrested, starting from zygonema, during the non‐breeding season. Meanwhile, we discovered that the apoptosis genes were up‐regulated, leading to apoptosis in spermatocytes. To confirm that the germ cell differentiation was blocked during the non‐breeding season due to a decrease in the androgen level, we used androgen receptor antagonist (flutamide) to intervene in the breeding season and found that the inner diameter of the seminiferous tubules was significantly reduced, spermatogenesis was arrested, and spermatocytes underwent apoptosis. This study revealed that spermatocytes are the terminal of germ cell differentiation in plateau zokor during the non‐breeding season and that the arrest of differentiation is attributed to a decline in androgen levels. Our results complement the theoretical basis of seasonal reproduction in plateau zokor.

Funder

Kementerian Pendidikan

National Natural Science Foundation of China

Publisher

Wiley

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