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Phylogeny-wide analysis of social amoeba genomes highlights ancient origins for complex intercellular communication

机译:社会变形虫基因组的系统发育分析突出了复杂细胞间通讯的古老起源

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摘要

Dictyostelium discoideum (DD), an extensively studied model organism for cell and developmental biology, belongs to the most derived group 4 of social amoebas, a clade of altruistic multicellular organisms. To understand genome evolution over long time periods and the genetic basis of social evolution, we sequenced the genomes of Dictyostelium fasciculatum (DF) and Polysphondylium pallidum (PP), which represent the early diverging groups 1 and 2, respectively. In contrast to DD, PP and DF have conventional telomere organization and strongly reduced numbers of transposable elements. The number of protein-coding genes is similar between species, but only half of them comprise an identifiable set of orthologous genes. In general, genes involved in primary metabolism, cytoskeletal functions and signal transduction are conserved, while genes involved in secondary metabolism, export, and signal perception underwent large differential gene family expansions. This most likely signifies involvement of the conserved set in core cell and developmental mechanisms, and of the diverged set in niche- and species-specific adaptations for defense and food, mate, and kin selection. Phylogenetic dating using a concatenated data set and extensive loss of synteny indicate that DF, PP, and DD split from their last common ancestor at least 0.6 billion years ago.
机译:Dictyostelium discoideum(DD),是一种经过广泛研究的细胞和发育生物学模型生物,属于社会变形虫中最衍生的第4类,利他性多细胞生物群系。为了了解长期的基因组进化和社会进化的遗传基础,我们对了棒状双歧杆菌(DF)和苍白头孢菌(PP)的基因组进行了测序,分别代表了早期分化群体1和2。与DD相比,PP和DF具有传统的端粒结构,可转座元素的数量大大减少。物种之间蛋白质编码基因的数量相似,但其中只有一半包含一组可识别的直系同源基因。通常,涉及初级代谢,细胞骨架功能和信号转导的基因是保守的,而涉及次级代谢,输出和信号感知的基因则经历了大的差异基因家族扩展。这最有可能表明保守组参与核心细胞和发育机制,而分散组参与针对防御和食物,配偶和亲属选择的利基和物种特定适应。使用级联数据集进行的系统发育测年和广泛的语气丧失表明,DF,PP和DD至少在6亿年前从其上一个共同祖先分裂而来。

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