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Divergent gene expression in the conserved dauer stage of the nematodes Pristionchus pacificus and Caenorhabditis elegans

机译:线虫Pristionchus pacificus和秀丽隐杆线虫的保守dauer阶段的不同基因表达

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Background An organism can respond to changing environmental conditions by adjusting gene regulation and by forming alternative phenotypes. In nematodes, these mechanisms are coupled because many species will form dauer larvae, a stress-resistant and non-aging developmental stage, when exposed to unfavorable environmental conditions, and execute gene expression programs that have been selected for the survival of the animal in the wild. These dauer larvae represent an environmentally induced, homologous developmental stage across many nematode species, sharing conserved morphological and physiological properties. Hence it can be expected that some core components of the associated transcriptional program would be conserved across species, while others might diverge over the course of evolution. However, transcriptional and metabolic analysis of dauer development has been largely restricted to Caenorhabditis elegans. Here, we use a transcriptomic approach to compare the dauer stage in the evolutionary model system Pristionchus pacificus with the dauer stage in C. elegans. Results We have employed Agilent microarrays, which represent 20,446 P. pacificus and 20,143?C. elegans genes to show an unexpected divergence in the expression profiles of these two nematodes in dauer and dauer exit samples. P. pacificus and C. elegans differ in the dynamics and function of genes that are differentially expressed. We find that only a small number of orthologous gene pairs show similar expression pattern in the dauers of the two species, while the non-orthologous fraction of genes is a major contributor to the active transcriptome in dauers. Interestingly, many of the genes acquired by horizontal gene transfer and orphan genes in P. pacificus, are differentially expressed suggesting that these genes are of evolutionary and functional importance. Conclusion Our data set provides a catalog for future functional investigations and indicates novel insight into evolutionary mechanisms. We discuss the limited conservation of core developmental and transcriptional programs as a common aspect of animal evolution.
机译:背景生物可以通过调节基因调控和形成其他表型来应对不断变化的环境条件。在线虫中,这些机制是耦合的,因为当暴露于不利的环境条件下时,许多物种会形成道尔幼虫,这是一种抗逆性和非衰老的发育阶段,并执行为动物的生存选择的基因表达程序。野生。这些道尔幼虫代表了许多线虫物种在环境上的同源发育阶段,具有保守的形态和生理特性。因此,可以预期,相关转录程序的某些核心组成部分在整个物种中都将得到保守,而其他一些核心组成部分可能在进化过程中发生分歧。然而,dauer发育的转录和代谢分析在很大程度上局限于秀丽隐杆线虫。在这里,我们使用转录组学方法比较进化模型系统Pristionchus pacificus中的dauer阶段与秀丽隐杆线虫的dauer阶段。结果我们使用了安捷伦微阵列,代表20,446个太平洋假单胞菌和20,143?C。线虫基因在dauer和dauer出口样品中的这两个线虫的表达谱中显示出意想不到的差异。太平洋假单胞菌和秀丽隐杆线虫在差异表达的基因的动力学和功能上有所不同。我们发现只有少数直系同源基因对在两个物种的dauers中显示相似的表达模式,而基因的非直系同源部分是dauers中活性转录组的主要贡献者。有趣的是,通过水平基因转移获得的许多基因和太平洋假单胞菌中的孤儿基因差异表达,表明这些基因具有进化和功能重要性。结论我们的数据集为将来的功能研究提供了目录,并指出了对进化机制的新颖见解。我们讨论了作为动物进化的一个共同方面的核心发育和转录程序的有限保存。

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