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Quantifying Mosaic Development: Towards an Evo-Devo Postmodern Synthesis of the Evolution of Development via Differentiation Trees of Embryos

机译:量化镶嵌发育:通过胚胎分化树实现进化进化的Evo-Devo后现代综合

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摘要

Embryonic development proceeds through a series of differentiation events. The mosaic version of this process (binary cell divisions) can be analyzed by comparing early development of Ciona intestinalis and Caenorhabditis elegans. To do this, we reorganize lineage trees into differentiation trees using the graph theory ordering of relative cell volume. Lineage and differentiation trees provide us with means to classify each cell using binary codes. Extracting data characterizing lineage tree position, cell volume, and nucleus position for each cell during early embryogenesis, we conduct several statistical analyses, both within and between taxa. We compare both cell volume distributions and cell volume across developmental time within and between single species and assess differences between lineage tree and differentiation tree orderings. This enhances our understanding of the differentiation events in a model of pure mosaic embryogenesis and its relationship to evolutionary conservation. We also contribute several new techniques for assessing both differences between lineage trees and differentiation trees, and differences between differentiation trees of different species. The results suggest that at the level of differentiation trees, there are broad similarities between distantly related mosaic embryos that might be essential to understanding evolutionary change and phylogeny reconstruction. Differentiation trees may therefore provide a basis for an Evo-Devo Postmodern Synthesis.
机译:胚胎发育通过一系列分化事件进行。该过程的镶嵌形式(二元细胞分裂)可以通过比较小肠短叶蝉和秀丽隐杆线虫的早期发育进行分析。为此,我们使用相对细胞体积的图论顺序将谱系树重组为分化树。世系和分化树为我们提供了使用二进制代码对每个单元进行分类的方法。提取表征胚胎早期发生过程中每个细胞的谱系树位置,细胞体积和细胞核位置的数据,我们在分类单元内和分类单元之间进行了一些统计分析。我们比较了单个物种内以及物种之间在整个发育时间内的细胞体积分布和细胞体积,并评估了谱系树和分化树顺序之间的差异。这增强了我们对纯镶嵌胚发生模型中的分化事件及其与进化保守性的关系的理解。我们还为评估谱系树和分化树之间的差异以及不同物种的分化树之间的差异提供了几种新技术。结果表明,在分化树的水平上,远距离相关的镶嵌胚之间存在广泛的相似性,这可能对于理解进化变化和系统发育重建至关重要。因此,差异树可以为Evo-Devo后现代综合提供基础。

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