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首页> 外文期刊>Development Growth and Differentiation >Gene expression kinetics in individual plasmodial cells reveal alternative programs of differential regulation during commitment and differentiation
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Gene expression kinetics in individual plasmodial cells reveal alternative programs of differential regulation during commitment and differentiation

机译:单个浆膜细胞中的基因表达动力学揭示了参与和分化过程中差异调节的替代程序

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During its life cycle, the amoebozoon Physarum polycephalum forms multinucleate plasmodial cells that can grow to macroscopic size while maintaining a naturally synchronous population of nuclei. Sporulation-competent plasmodia were stimulated through photoactivation of the phytochrome photoreceptor and the expression of sporulation marker genes was analyzed quantitatively by repeatedly taking samples of the same plasmodial cell at successive time points after the stimulus pulse. Principal component analysis of the gene expression data revealed that plasmodial cells take different trajectories leading to cell fate decision and differentiation and suggested that averaging over individual cells is inappropriate. Queries for genes with pairwise correlated expression kinetics revealed qualitatively different patterns of co-regulation, indicating that alternative programs of differential regulation are operational in individual plasmodial cells. At the single cell level, the response to stimulation of a non-sporulating mutant was qualitatively different as compared to the wild type with respect to the differentially regulated genes and their patterns of co-regulation. The observation of individual differences during commitment and differentiation supports the concept of a Waddington-type quasipotential landscape for the regulatory control of cell differentiation. Comparison of wild type and sporulation mutant data further supports the idea that mutations may impact the topology of this landscape.
机译:在其生命周期中,变形虫多头cephal虫形成多核浆细胞,可以生长到宏观大小,同时保持自然同步的核种群。通过光活化植物色素感光体来刺激具有孢子能力的疟原虫,并通过在刺激脉冲后的连续时间点重复采集相同的浆膜细胞的样品来定量分析孢子形成标记基因的表达。对基因表达数据的主成分分析表明,浆母细胞具有不同的轨迹,导致细胞命运的决定和分化,并建议对单个细胞进行平均是不合适的。对具有成对相关的表达动力学的基因的查询显示出定性的共调节模式不同,这表明差异调节的替代程序在单个质粒细胞中起作用。在单细胞水平上,就差异调节基因及其共调节模式而言,与野生型相比,对非形成孢子突变体的刺激反应在质量上有差异。在承诺和分化过程中对个体差异的观察支持了Waddington型准势态景观的概念,用于细胞分化的调控。野生型和孢子突变体数据的比较进一步支持了突变可能影响该景观拓扑的想法。

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