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Infertility Associated with Meiotic Failure in the tremor Rat (tm/tm) is Caused by the Deletion of Spermatogenesis Associated 22

机译:与震颤大鼠减数分裂失败相关的不育症(tm / tm)是由精子发生相关的缺失引起的22

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The tremor rat is an autosomal recessive mutant exhibiting sterility with gonadal hypoplasia in both sexes. The causative mutation tremor ( tm ) is known as a genomic deletion spanning >200 kb in Chr 10q24. Spermatogenesis associated 22 ( Spata22 ) has been shown to be a vertebrate-specific gene essential for the progression of meiosis through prophase I and completion of chromosome synapsis and meiotic recombination using a mouse repro42 mutant carrying an N -ethyl- N -nitrosourea (ENU)-induced nonsense mutation in Spata22 . In this study, we show that Spata22 was identified as the gene responsible for the failure of gametogenesis to progress beyond meiosis I in tm homozygous rats by a transgenic rescue experiment. Meiosis was arrested during prophase I in the mutant testis. Precise mapping of the breakage point revealed that the deleted genomic region spanned approximately 240 kb and comprised at least 13 genes, including Spata22 . Rat Spata22 was predominantly expressed in the testis, and its transcription increased with the first wave of spermatogenesis, as seen in the mouse ortholog. These results suggest that Spata22 may play an important role in meiotic prophase I in rats, as seen in mice, and that the tm homozygous rat may be useful for investigating the physiological function of Spata22 , as an experimental system for clarifying the effect of a null mutation, and may be an animal model for studying the pathogenesis and treatment of infertility caused by impaired meiosis.
机译:震颤大鼠是一种常染色体隐性突变体,在两性中均表现出不育和性腺发育不全。原因突变震颤(tm)在Chr 10q24中被称为跨越200 kb的基因组缺失。精子发生相关的22(Spata22)已被证明是脊椎动物特异的基因,它对于通过前期I进行减数分裂的进程以及使用携带N-乙基-N-亚硝基脲(ENU)的小鼠repro42突变体完成染色体突触和减数分裂重组是必不可少的在Spata22中引起的无意义突变。在这项研究中,我们表明,通过转基因拯救实验,Spata22被鉴定为负责配子发生失败的基因,其在纯合子大鼠中超越了减数分裂I。减数分裂在前期I期间在突变睾丸中被捕。断裂点的精确定位揭示,缺失的基因组区域跨度约为240 kb,包含至少13个基因,包括Spata22。大鼠Spata22主要在睾丸中表达,并且其转录随着精子发生的第一波增加而增加,如小鼠直系同源物所示。这些结果表明,如在小鼠中所见,Spata22可能在大鼠减数分裂前期I中起重要作用,而tm纯合大鼠可能有助于研究Spata22的生理功能,作为阐明无效作用的实验系统。突变,可能是研究减数分裂受损所致不孕症的发病机理和治疗方法的动物模型。

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