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首页> 外文期刊>BMC Genomics >An unbiased approach to identify genes involved in development in a turtle with temperature-dependent sex determination
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An unbiased approach to identify genes involved in development in a turtle with temperature-dependent sex determination

机译:一种不偏不倚的方法,可通过温度依赖性性别鉴定来鉴定与乌龟发育相关的基因

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Background Many reptiles exhibit temperature-dependent sex determination (TSD). The initial cue in TSD is incubation temperature, unlike genotypic sex determination (GSD) where it is determined by the presence of specific alleles (or genetic loci). We used patterns of gene expression to identify candidates for genes with a role in TSD and other developmental processes without making a priori assumptions about the identity of these genes (ortholog-based approach). We identified genes with sexually dimorphic mRNA accumulation during the temperature sensitive period of development in the Red-eared slider turtle (Trachemys scripta), a turtle with TSD. Genes with differential mRNA accumulation in response to estrogen (estradiol-17β; E2) exposure and developmental stages were also identified. Results Sequencing 767 clones from three suppression-subtractive hybridization libraries yielded a total of 581 unique sequences. Screening a macroarray with a subset of those sequences revealed a total of 26 genes that exhibited differential mRNA accumulation: 16 female biased and 10 male biased. Additional analyses revealed that C16ORF62 (an unknown gene) and MALAT1 (a long noncoding RNA) exhibited increased mRNA accumulation at the male producing temperature relative to the female producing temperature during embryonic sexual development. Finally, we identified four genes (C16ORF62, CCT3, MMP2, and NFIB) that exhibited a stage effect and five genes (C16ORF62, CCT3, MMP2, NFIB and NOTCH2) showed a response to E2 exposure. Conclusions Here we report a survey of genes identified using patterns of mRNA accumulation during embryonic development in a turtle with TSD. Many previous studies have focused on examining the turtle orthologs of genes involved in mammalian development. Although valuable, the limitations of this approach are exemplified by our identification of two genes (MALAT1 and C16ORF62) that are sexually dimorphic during embryonic development. MALAT1 is a noncoding RNA that has not been implicated in sexual differentiation in other vertebrates and C16ORF62 has an unknown function. Our results revealed genes that are candidates for having roles in turtle embryonic development, including TSD, and highlight the need to expand our search parameters beyond protein-coding genes.
机译:背景许多爬行动物表现出温度依赖性性别决定(TSD)。 TSD的最初提示是孵育温度,这与基因型性别确定(GSD)不同,后者是由特定等位基因(或遗传基因座)的存在来确定的。我们使用基因表达模式来鉴定在TSD和其他发育过程中起作用的基因的候选者,而无需事先假设这些基因的身份(基于直系同源物的方法)。我们在红耳滑龟(Trachemys scripta)(一种TSD龟)的温度敏感时期内鉴定出具有性双态mRNA积累的基因。还确定了与雌激素(雌二醇-17β; E 2 )暴露和发育阶段有关的具有不同mRNA积累的基因。结果对来自三个抑制-扣除杂交文库的767个克隆进行测序,共产生581个独特序列。用这些序列的一个子集筛选一个大阵列,发现共有26个基因表现出差异的mRNA积累:16个雌性偏爱和10个雄性偏爱。进一步的分析表明,在胚胎性发育过程中,相对于雌性产生温度,C16ORF62(一个未知基因)和MALAT1(一种长的非编码RNA)在雄性产生温度下表现出增加的mRNA积累。最后,我们鉴定了四个具有阶段效应的基因(C16ORF62,CCT3,MMP2和NFIB),五个基因(C16ORF62,CCT3,MMP2,NFIB和NOTCH2)对E 2 暴露有反应。结论我们在此报告了对TSD乌龟胚胎发育过程中利用mRNA积累模式鉴定的基因的调查。以前的许多研究都集中在研究与哺乳动物发育有关的基因的乌龟直系同源基因。尽管很有价值,但这种方法的局限性可以通过我们鉴定出在胚胎发育过程中性二态的两个基因(MALAT1和C16ORF62)得到例证。 MALAT1是一种非编码RNA,尚未与其他脊椎动物的性别分化有关,C16ORF62具有未知功能。我们的研究结果揭示了在乌龟胚胎发育(包括TSD)中扮演候选角色的基因,并强调了将我们的搜索参数扩展到蛋白质编码基因以外的需求。

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