Li Taotao, Wang Xia, Zhang Hongyu, Chen Zhili, Zhao Xingxu, Ma Youji
College of Animal Science and Technology, Gansu Agricultural University, Lanzhou 730070, China.
College of Veterinary Medicine, Gansu Agricultural University, Lanzhou 730070, China.
Animals (Basel). 2019 Mar 21;9(3):105. doi: 10.3390/ani9030105.
is implicated in mammalian testicular function maintenance and spermatogenesis. To understand the expression patterns and biological functions of sheep , we examined the expression and immunolocalization of BOLL in the developing testes of Small-Tail Han sheep aged 0 days (D0), 2 months (2M), 5 months (5M), 1 year (1Y), and 2 years (2Y), by qPCR, Western blot, and immunohistochemistry methods. Firstly, morphological studies revealed that, in addition to spermatogonia, ordered and clear spermatocytes, as well as round and elongated spermatids and sperm, were found in the 1Y and 2Y testicular seminiferous tubules of the sheep testes, compared with the D0, 2M, and 5M testes, as analyzed by hematoxylin and eosin (H&E) staining. The diameter and area of the seminiferous tubules, epithelial thickness, and the area and perimeter of the tubule lumens gradually increased with age. was specifically expressed in testes and upregulation of transcript expression was higher in the testes of the 1Y and 2Y groups than in those of the D0, 2M, and 5M groups. Similarly, BOLL protein was expressed mainly in the 1Y and 2Y testes, ranging from primary spermatocytes to round spermatids, as well as in the spermatozoa. This study is the first demonstration that sheep might serve as a key regulator of the spermiogenesis involved in sperm maturity, in addition to its role as a crucial meiotic regulator.
其与哺乳动物睾丸功能维持及精子发生有关。为了解绵羊BOLL的表达模式及生物学功能,我们采用qPCR、蛋白质免疫印迹和免疫组织化学方法,检测了0日龄(D0)、2月龄(2M)、5月龄(5M)、1岁(1Y)和2岁(2Y)的小尾寒羊发育中睾丸内BOLL的表达及免疫定位。首先,形态学研究显示,苏木精-伊红(H&E)染色分析表明,与D0、2M和5M睾丸相比,在1Y和2Y绵羊睾丸的生精小管中,除精原细胞外,还发现了排列有序且清晰的精母细胞,以及圆形和长形的精子细胞和精子。生精小管的直径和面积、上皮厚度以及管腔面积和周长随年龄逐渐增加。BOLL在睾丸中特异性表达,1Y和2Y组睾丸中BOLL转录本表达的上调高于D0、2M和5M组。同样,BOLL蛋白主要在1Y和2Y睾丸中表达,范围从初级精母细胞到圆形精子细胞,以及精子。本研究首次证明,绵羊BOLL除作为关键的减数分裂调节因子外,可能还作为参与精子成熟的精子形成的关键调节因子。