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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >Specification of Germ Cell Fates by FOG-3 Has Been Conserved During Nematode Evolution
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Specification of Germ Cell Fates by FOG-3 Has Been Conserved During Nematode Evolution

机译:线虫进化过程中,FOG-3对生殖细胞命运的规定得到了保留。

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Rapid changes in sexual traits are ubiquitous in evolution. To analyze this phenomenon, we are studying species of the genus Caenorhabditis. These animals use one of two different mating systems—male/hermaphroditic, like the model organism Caenorhabditis elegans , or male/female, like C. remanei. Since hermaphrodites are essentially females that produce sperm for self-fertilization, elucidating the control of cell fate in the germ line in each species could provide the key to understanding how these mating systems evolved. In C. elegans , FOG-3 is required to specify that germ cells become sperm. Thus, we cloned its homologs from both C. remanei and C. briggsae. Each species produces a single homolog of FOG-3, and RNA-mediated interference indicates that FOG-3 functions in each species to specify that germ cells develop as sperm rather than as oocytes. What factors account for the different mating systems? Northern analyses and RT-PCR data reveal that the expression of fog-3 is always correlated with spermatogenesis. Since the promoters for all three fog-3 genes contain binding sites for the transcription factor TRA-1A and are capable of driving expression of fog-3 in C. elegans hermaphrodites, we propose that alterations in the upstream sex-determination pathway, perhaps acting through TRA-1A, allow spermatogenesis in C. elegans and C. briggsae XX larvae but not in C. remanei.
机译:性特征的快速变化在进化中无处不在。为了分析这种现象,我们正在研究秀丽隐杆线虫的种类。这些动物使用两种不同的交配系统之一-雄性/雌雄同体的,如模型生物秀丽隐杆线虫,或雄性/雌性,如re。C. remanei。由于雌雄同体本质上是雌性,会产生精子进行自我受精,因此阐明每种物种的种系中对细胞命运的控制可能会成为了解这些交配系统如何进化的关键。在秀丽隐杆线虫中,需要FOG-3来指定生殖细胞变成精子。因此,我们从Remanei和C. briggsae克隆了其同源物。每个物种产生一个单一的FOG-3同源物,RNA介导的干扰表明FOG-3在每个物种中发挥功能,表明生殖细胞发育成精子而不是卵母细胞。哪些因素导致了不同的交配系统? Northern分析和RT-PCR数据表明,fog-3的表达总是与精子发生有关。由于所有三个fog-3基因的启动子均包含转录因子TRA-1A的结合位点,并能够驱动秀丽隐杆线虫雌雄同体的fog-3表达,因此我们建议上游性别决定途径的改变,也许是起作用的。通过TRA-1A,可以在秀丽隐杆线虫和Brixsae XX幼虫中允许精子发生,而在remanei中则不允许。

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