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Quartet-based inference of cell differentiation trees from ChIP-Seq histone modification data

机译:从芯片-SEQ组蛋白修改数据中的基于四重奏的细胞分化树推断

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Understanding cell differentiation—the process of generation of distinct cell-types—plays a pivotal role in developmental and evolutionary biology. Transcriptomic information and epigenetic marks are useful to elucidate hierarchical developmental relationships among cell-types. Standard phylogenetic approaches such as maximum parsimony, maximum likelihood and neighbor joining have previously been applied to ChIP-Seq histone modification data to infer cell-type trees, showing how diverse types of cells are related. In this study, we demonstrate the applicability and suitability of quartet-based phylogenetic tree estimation techniques for constructing cell-type trees. We propose two quartet-based pipelines for constructing cell phylogeny. Our methods were assessed for their validity in inferring hierarchical differentiation processes of various cell-types in H3K4me3, H3K27me3, H3K36me3, and H3K27ac histone mark data. We also propose a robust metric for evaluating cell-type trees.
机译:了解细胞分化 - 不同细胞类型的生成过程 - 在发育和进化生物学中起着枢轴作用。 转录组信息和表观遗传标记可用于阐明细胞类型之间的分层发育关系。 标准的系统发育方法如最大差异,最大可能性和邻居连接,先前已被应用于芯片-SEQ组蛋白修饰数据以推断细胞型树,显示多样化的细胞类型相关。 在这项研究中,我们证明了基于四重体的系统发育树估计技术构建细胞型树的适用性和适用性。 我们提出了两种基于四重奏的管道来构建细胞发生。 在H3K4ME3,H3K27ME3,H3K36ME3和H3K27AC组蛋白标记数据中,评估了他们在推断各种细胞类型的分层分化过程中的有效性。 我们还提出了一种评估细胞型树的强大指标。

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