精子发生
精母细胞
细胞质
生物
减数分裂
有丝分裂
细胞内
细胞生物学
生殖细胞
突变体
细胞分化
舱室(船)
体细胞
电池类型
细胞
基因
遗传学
内分泌学
地质学
海洋学
作者
C A Rezende-Melo,Andre L. Caldeira‐Brant,Ana Luiza Drumond-Bock,Gregory M. Buchold,Gunapala Shetty,Fernanda Radicchi Campos Lobato de Almeida,Martin M. Matzuk,Kenshiro Hara,Shosei Yoshida,Marvin L. Meistrich,Hélio Chiarini‐Garcia
出处
期刊:Reproduction
[Bioscientifica]
日期:2020-08-01
卷期号:160 (2): 205-215
被引量:6
摘要
The existence of cytoplasmic passages between germ cells and their potential function in the control of the spermatogenic process has long been an intriguing question. Evidence of the important role of such structures, known as intercellular bridges (ICB), in spermatogenesis has been implicated by the failure of spermatogenesis in testis-expressed gene 14 ( Tex14) mutant mice, which lack the ICBs, to progress past the pachytene spermatocyte stage. Using these Tex14 mutants, the present study evaluated, for the first time, the behavior and synchrony of the spermatogonial lineage in the absence of ICBs. Our data suggest that the absence of these cytoplasmic connections between cells affects the expansion of the undifferentiated type A (A undiff ) spermatogonia compartment and their transition to A 1 , resulting in a significant numerical reduction of differentiating A 1 spermatogonia, but did not interfere with cell amplification during subsequent mitotic steps of differentiating spermatogonia from A 1 through intermediate (In). However, beginning at the type B spermatogonia, the synchrony of differentiation was impaired as some cells showed delayed differentiation compared to their behavior in a normal seminiferous epithelium cycle. Thus although spermatogonial development is able to proceed, in the absence of ICBs in Tex14 −/ − mutants, the yield of cells, specific steps of differentiation, the synchrony of the cell kinetics, and the subsequent progression in meiosis are quantitatively lower than normal.
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