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Comparative Developmental Transcriptomics Reveals Rewiring of a Highly Conserved Gene Regulatory Network during a Major Life History Switch in the Sea Urchin Genus Heliocidaris

机译:比较发展的转录组学揭示了在海胆属Heliocidaris的主要生命史转换过程中高度保守的基因调控网络的重新布线

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摘要

The ecologically significant shift in developmental strategy from planktotrophic (feeding) to lecithotrophic (nonfeeding) development in the sea urchin genus Heliocidaris is one of the most comprehensively studied life history transitions in any animal. Although the evolution of lecithotrophy involved substantial changes to larval development and morphology, it is not known to what extent changes in gene expression underlie the developmental differences between species, nor do we understand how these changes evolved within the context of the well-defined gene regulatory network (GRN) underlying sea urchin development. To address these questions, we used RNA-seq to measure expression dynamics across development in three species: the lecithotroph Heliocidaris erythrogramma, the closely related planktotroph H. tuberculata, and an outgroup planktotroph Lytechinus variegatus. Using well-established statistical methods, we developed a novel framework for identifying, quantifying, and polarizing evolutionary changes in gene expression profiles across the transcriptome and within the GRN. We found that major changes in gene expression profiles were more numerous during the evolution of lecithotrophy than during the persistence of planktotrophy, and that genes with derived expression profiles in the lecithotroph displayed specific characteristics as a group that are consistent with the dramatically altered developmental program in this species. Compared to the transcriptome, changes in gene expression profiles within the GRN were even more pronounced in the lecithotroph. We found evidence for conservation and likely divergence of particular GRN regulatory interactions in the lecithotroph, as well as significant changes in the expression of genes with known roles in larval skeletogenesis. We further use coexpression analysis to identify genes of unknown function that may contribute to both conserved and derived developmental traits between species. Collectively, our results indicate that distinct evolutionary processes operate on gene expression during periods of life history conservation and periods of life history divergence, and that this contrast is even more pronounced within the GRN than across the transcriptome as a whole.
机译:在海胆属中,Helioidas属的发展策略从浮游性(进食)向营养性(非进食)发展的生态学重大转变是任何动物中对生命史进行的最全面研究之一。尽管鞘膜萎缩的进化涉及幼虫发育和形态的实质性变化,但尚不清楚基因表达变化在多大程度上影响了物种之间的发育差异,我们也不了解这些变化如何在定义明确的基因调控的背景下进化而来。海胆开发的基础网络(GRN)。为了解决这些问题,我们使用RNA-seq测量了三种物种在整个发育过程中的表达动态:食盐菌Heliocidaris erythrogramma,紧密相关的浮游植物H. tuberculata和外浮游植物Lytechinus variegatus。使用公认的统计方法,我们开发了一个新颖的框架,可用于识别,量化和极化转录组和GRN内基因表达谱中的进化变化。我们发现,在lethothotrophy进化过程中,基因表达谱的主要变化比在platetotrophy持续期间要多得多,并且在lethothotroph中具有派生表达谱的基因显示出一组特定的特征,这些特征与显着改变的发育程序一致。这个物种。与转录组相比,GLE内的基因表达谱的变化在噬菌体中更为明显。我们找到了证据,以保护和维护可能在lethothophph中的特定GRN调节相互作用,以及在幼虫骨骼发生中具有已知作用的基因表达的显着变化。我们进一步使用共表达分析来鉴定功能未知的基因,这些基因可能有助于物种之间的保守和衍生发育性状。总的来说,我们的结果表明,在生命史保存和生命史分歧期间,基因表达具有独特的进化过程,并且这种差异在GRN中比在整个转录组中更为明显。

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