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Evolution of Reproductive Division of Labor – Lessons Learned From the Social Amoeba Dictyostelium discoideum During Its Multicellular Development

机译:生殖分工的演变 - 从社会amoeba dictyostelium discoidem中的多细胞发展中的经验教训

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摘要

The origin of multicellular life from unicellular beings is an epochal step in the evolution of eukaryotes. There are several factors influencing cell fate choices during differentiation and morphogenesis of an organism. Genetic make-up of two cells that unite and fertilize is the key factor to signal the formation of various cell-types in due course of development. Although ploidy of the cell-types determines the genetics of an individual, the role of ploidy in cell fate decisions remains unclear. Dictyostelium serves as a versatile model to study the emergence of multicellular life from unicellular life forms. In this work, we investigate the role played by ploidy status of a cell on cell fate commitments during Dictyostelium development. To answer this question, we created Dictyostelium cells of different ploidy: haploid parents and derived isogenic diploids, allowing them to undergo development. The diploid strains used in this study were generated using parasexual genetics. The ploidy status of the haploids and diploids were confirmed by microscopy, flow cytometry, and karyotyping. Prior to reconstitution, we labeled the cells by two methods. First, intragenic expression of red fluorescent protein (RFP) and second, staining the amoebae with a vital, fluorescent dye carboxyfluorescein succinimidyl ester (CFSE). RFP labeled haploid cells allowed us to track the haploids in the chimeric aggregates, slugs, and fruiting bodies. The CFSE labeling method allowed us to track both the haploids and the diploids in the chimeric developmental structures. Our findings illustrate that the haploids demonstrate sturdy cell fate commitment starting from the aggregation stage. The haploids remain crowded at the aggregation centers of the haploid–diploid chimeric aggregates. At the slug stage haploids are predominantly occupying the slug posterior, and are visible in the spore population in the fruiting bodies. Our findings show that cell fate decisions during D. discoideum development are highly influenced by the ploidy status of a cell, adding a new aspect to already known factors Here, we report that ploidy status of a cell could also play a crucial role in regulating the cell fate commitments.
机译:单细胞生命的起源是真核生物演化中的划仓步骤。在分化和生物体的形态发生过程中,有几个影响细胞命运的选择。联合和施肥的两个细胞的遗传构成是在适当的发展过程中发出各种细胞类型的关键因素。虽然细胞类型的倍数决定了个体的遗传学,但倍增性在细胞命运决策中的作用仍然不清楚。 Dictyostelium用作多功能模型,用于研究从单细胞生命形式的多细胞生命的出现。在这项工作中,我们调查了在Dictyostelium开发期间细胞命运承诺对细胞的倍增性状态发挥的作用。为了回答这个问题,我们创造了不同倍性的Dictyostelium细胞:单倍体父母和衍生的中源性二倍体,使它们能够经历发育。本研究中使用的二倍体菌株是使用解剖遗传生成的。通过显微镜,流式细胞术和核型分类证实了单倍体和二倍体的倍性状态。在重建之前,我们用两种方法标记细胞。首先,红荧光蛋白(RFP)的内瘤表达和第二,用重要的荧光染料羧基甲苯琥珀酰亚胺(CFSE)染色AmoEbae。 RFP标记的单倍体细胞使我们可以在嵌合聚集体,块和结果体中跟踪单倍体。 CFSE标记方法使我们能够跟踪嵌合发育结构中的单倍体和二倍体。我们的研究结果表明,单倍体从聚集阶段开始表现出坚固的细胞命运承诺。单倍体仍然挤满了单倍体二倍体嵌合聚集体的聚集中心。在SLUP阶段,单倍体主要占据SLUIS后,并且在果实中的孢子群中可见。我们的研究结果表明,D. Discoide开发期间的细胞命运决定受到细胞的倍性状态的影响,在这里增加了已经已知的因素,我们报告了细胞的倍性地位也可能在调节中发挥至关重要的作用细胞命运承诺。

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