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The testis-specific expressed gene Spata34 is not required for fertility in mice

机译:睾丸特异性表达的基因SPATA34不是小鼠生育能力所必需的

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It is estimated that more than two thousand genes exhibit testis-predominant expression pattern. The functions of hundreds of these genes have been explored during mouse spermatogenesis. However, there are still many genes whose relevance to reproduction in vivo remains unexplored. Our previous studies, as well as the other documented study, have indicated that Spata34, an evolutionarily conserved gene in metazoan species, was exclusively expressed in mouse testes and involved in spermatogenesis by regulating cell cycle progression. The present study aims to determine the effect of Spata34 gene knockout on mouse reproduction in vivo by generating a Spata34 gene knockout model using CRISPR/Cas9-mediated genome editing technology. We found that the Spata34 gene KO mice had normal fertility compared with wild type mice, and no overt detectable difference was found in testis/body weight ratios, testicular histology, sperm counts and spermatozoa motility parameters between WT and Spata34 KO mice. Our report indicated that the testis-specific-expressed gene Spata34 was not required for male mouse fertility, which will help to avoid unnecessary expenditures and effort by other researchers.
机译:估计超过两千个基因表现出睾丸主要的表达模式。在小鼠精子发生期间已经探讨了数百种这些基因的功能。然而,仍然存在许多基因,其与体内繁殖的相关性仍未探索。我们以前的研究以及其他记录的研究表明,SPATA34是在小鼠睾丸中仅在小鼠睾丸中表达并通过调节细胞周期进展而参与精子发生。本研究旨在通过使用CRISPR / CAS9介导的基因组编辑技术产生Spata34基因敲除模型来确定Spata34基因敲除对体内小鼠繁殖的影响。我们发现,与野生型小鼠相比,Spata34基因KO小鼠具有正常的生育率,并且在WT和Spata34 KO小鼠之间没有发现睾丸/体重比,睾丸组织学,精子计数和精子毒性参数明显可检测差异。我们的报告表明,睾丸特异性表达的基因SPATA34不是雄性小鼠生育所要求的,这将有助于避免其他研究人员的不必要的支出和努力。

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