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Transcriptomic analysis of maternally provisioned cues for phenotypic plasticity in the annual killifish, Austrofundulus limnaeus

机译:母本提供的线索对一年生金鱼鱼Austrofundulus limnaeus表型可塑性的转录组学分析

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BackgroundGenotype and environment can interact during development to produce novel adaptive traits that support life in extreme conditions. The development of the annual killifish Austrofundulus limnaeus is unique among vertebrates because the embryos have distinct cell movements that separate epiboly from axis formation during early development, can enter into a state of metabolic dormancy known as diapause and can survive extreme environmental conditions. The ability to enter into diapause can be maternally programmed, with young females producing embryos that do not enter into diapause. Alternately, embryos can be programmed to “escape” from diapause and develop directly by both maternal factors and embryonic incubation conditions. Thus, maternally packaged gene products are hypothesized to regulate developmental trajectory and perhaps the other unique developmental characters in this species. ResultsUsing high-throughput RNA sequencing, we generated transcriptomic profiles of mRNAs, long non-coding RNAs and small non-coding RNAs (sncRNAs) in 1–2 cell stage embryos of A. limnaeus . Transcriptomic analyses suggest maternal programming of embryos through alternatively spliced mRNAs and antisense sncRNAs. Comparison of these results to those of comparable studies on zebrafish and other fishes reveals a surprisingly high abundance of transcripts involved in the cellular response to stress and a relatively lower expression of genes required for rapid transition through the cell cycle. ConclusionsMaternal programming of developmental trajectory is unlikely accomplished by differential expression of diapause-specific genes. Rather, evidence suggests a role for trajectory-specific splice variants of genes expressed in both phenotypes. In addition, based on comparative studies with zebrafish, the A. limnaeus 1–2 cell stage transcriptome is unique in ways that are consistent with their unique life history. These results not only impact our understanding of the genetic mechanisms that regulate entrance into diapause, but also provide insight into the epigenetic regulation of gene expression during development.
机译:背景基因型和环境可以在发育过程中相互作用,以产生新的适应性特征,以支持极端条件下的生活。在脊椎动物中,一年生金枪鱼对虾的发育是独特的,因为胚胎具有独特的细胞运动,这些细胞运动在早期发育过程中将轴突与轴突分开,可以进入称为休眠的代谢休眠状态,并且可以在极端的环境条件下生存。可以由母亲设定进入滞育的能力,年轻雌性产生的胚胎不会进入滞育。或者,可以将胚胎编程为从滞育中“逃脱”,并通过母体因素和胚胎孵育条件直接发育。因此,假设母体包装的基因产物可调节该物种的发育轨迹以及其他独特的发育特征。结果使用高通量RNA测序,我们在A. limnaeus 1-2细胞阶段胚胎中生成了mRNA,长非编码RNA和小的非编码RNA(sncRNA)的转录组图谱。转录组学分析表明,母体通过交替剪接的mRNA和反义sncRNA对胚胎进行编程。将这些结果与对斑马鱼和其他鱼类进行的可比较研究的结果进行比较后,发现令人惊讶的是,与应激反应有关的细胞转录本含量很高,并且在整个细胞周期中快速过渡所需的基因表达相对较低。结论滞育特异性基因的差异表达不可能完成母亲对发育轨迹的编程。相反,有证据表明,两种表型中表达的基因的轨迹特异性剪接变体都有作用。此外,根据与斑马鱼的比较研究,林蛙A. 1–2细胞阶段转录组的独特性与其独特的生活史保持一致。这些结果不仅影响我们对调节滞育的遗传机制的理解,而且还提供了对发育过程中基因表达的表观遗传调控的见解。

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