首页> 美国卫生研究院文献>G3: GenesGenomesGenetics >Cell-Type Transcriptomes of the Multicellular Green Alga Volvox carteri Yield Insights into the Evolutionary Origins of Germ and Somatic Differentiation Programs
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Cell-Type Transcriptomes of the Multicellular Green Alga Volvox carteri Yield Insights into the Evolutionary Origins of Germ and Somatic Differentiation Programs

机译:多细胞绿色藻类Volvox Carteri的细胞类型转录组产生洞察胚芽和体细胞分化程序的进化起源。

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摘要

Germ–soma differentiation is a hallmark of complex multicellular organisms, yet its origins are not well understood. Volvox carteri is a simple multicellular green alga that has recently evolved a simple germ–soma dichotomy with only two cell-types: large germ cells called gonidia and small terminally differentiated somatic cells. Here, we provide a comprehensive characterization of the gonidial and somatic transcriptomes of V. carteri to uncover fundamental differences between the molecular and metabolic programming of these cell-types. We found extensive transcriptome differentiation between cell-types, with somatic cells expressing a more specialized program overrepresented in younger, lineage-specific genes, and gonidial cells expressing a more generalist program overrepresented in more ancient genes that shared striking overlap with stem cell-specific genes from animals and land plants. Directed analyses of different pathways revealed a strong dichotomy between cell-types with gonidial cells expressing growth-related genes and somatic cells expressing an altruistic metabolic program geared toward the assembly of flagella, which support organismal motility, and the conversion of storage carbon to sugars, which act as donors for production of extracellular matrix (ECM) glycoproteins whose secretion enables massive organismal expansion. V. carteri orthologs of diurnally controlled genes from C. reinhardtii, a single-celled relative, were analyzed for cell-type distribution and found to be strongly partitioned, with expression of dark-phase genes overrepresented in somatic cells and light-phase genes overrepresented in gonidial cells- a result that is consistent with cell-type programs in V. carteri arising by cooption of temporal regulons in a unicellular ancestor. Together, our findings reveal fundamental molecular, metabolic, and evolutionary mechanisms that underlie the origins of germ–soma differentiation in V. carteri and provide a template for understanding the acquisition of germ–soma differentiation in other multicellular lineages.
机译:生殖细胞分化是复杂的多细胞生物的标志,但其起源尚不清楚。 Volvox Carteri是一种简单的多细胞绿藻,最近进化出一种简单的生殖-体二分法,只有两种细胞类型:称为淋病的大生殖细胞和最终分化的体细胞。在这里,我们提供了V. Carteri的性腺和体细胞转录组的全面表征,以揭示这些细胞类型的分子和代谢程序之间的根本差异。我们发现细胞类型之间存在广泛的转录组分化,其中体细胞表达的更专业的程序在年轻的谱系特异性基因中过分代表,而生殖腺细胞表达的更通俗的程序在较古老的基因中过分代表,而古老的基因与干细胞特异的基因有着惊人的重叠来自动物和陆地植物。对不同途径的直接分析表明,细胞类型之间存在强烈的二分法,其中表达生长相关基因的性腺细胞与表达针对鞭毛装配的利他性代谢程序的体细胞,这些鞭毛细胞支持机体的运动以及碳和糖的转化,它们充当产生细胞外基质(ECM)糖蛋白的供体,其分泌使大量生物体得以扩张。对来自单细胞亲缘种莱茵衣藻的昼夜控制基因的V. Carteri直系同源物进行细胞类型分布分析,发现其强烈分隔,其中体细胞中暗相基因的表达过高,而光相基因的表达过高在性腺细胞中的结果—与在单细胞祖先中临时性调节子的共同选择引起的卡氏弧菌细胞型程序一致的结果。在一起,我们的发现揭示了基础的分子,代谢和进化机制,这些机制构成了弧菌中种质分化的起源,并为理解其他多细胞谱系中种质分化的获得提供了模板。

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