首页> 美国卫生研究院文献>International Journal of Evolutionary Biology >A Short-Term Advantage for Syngamy in the Origin of Eukaryotic Sex: Effects of Cell Fusion on Cell Cycle Duration and Other Effects Related to the Duration of the Cell Cycle—Relationship between Cell Growth Curve and the Optimal Size of the Species and Circadian Cell Cycle in Photosynthetic Unicellular Organisms
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A Short-Term Advantage for Syngamy in the Origin of Eukaryotic Sex: Effects of Cell Fusion on Cell Cycle Duration and Other Effects Related to the Duration of the Cell Cycle—Relationship between Cell Growth Curve and the Optimal Size of the Species and Circadian Cell Cycle in Photosynthetic Unicellular Organisms

机译:合子在真核生物起源中的短期优势:细胞融合对细胞周期持续时间的影响以及与细胞周期持续时间相关的其他影响-细胞生长曲线与物种的最佳大小和昼夜节律细胞之间的关系光合单细胞生物的循环

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摘要

The origin of sex is becoming a vexatious issue for Evolutionary Biology. Numerous hypotheses have been proposed, based on the genetic effects of sex, on trophic effects or on the formation of cysts and syncytia. Our approach addresses the change in cell cycle duration which would cause cell fusion. Several results are obtained through graphical and mathematical analysis and computer simulations. (1) In poor environments, cell fusion would be an advantageous strategy, as fusion between cells of different size shortens the cycle of the smaller cell (relative to the asexual cycle), and the majority of mergers would occur between cells of different sizes. (2) The easiest-to-evolve regulation of cell proliferation (sexual/asexual) would be by modifying the checkpoints of the cell cycle. (3) A regulation of this kind would have required the existence of the G2 phase, and sex could thus be the cause of the appearance of this phase. Regarding cell cycle, (4) the exponential curve is the only cell growth curve that has no effect on the optimal cell size in unicellular species; (5) the existence of a plateau with no growth at the end of the cell cycle explains the circadian cell cycle observed in unicellular algae.
机译:性的起源正成为进化生物学的一个生死攸关的问题。根据性别的遗传效应,营养效应或囊肿和合胞体的形成,提出了许多假说。我们的方法解决了会导致细胞融合的细胞周期持续时间的变化。通过图形和数学分析以及计算机仿真可以获得一些结果。 (1)在恶劣的环境中,细胞融合将是一种有利的策略,因为不同大小的细胞之间的融合会缩短较小细胞的周期(相对于无性周期),并且大多数合并将发生在不同大小的细胞之间。 (2)最容易发展的细胞增殖(性/无性)调节是通过改变细胞周期的检查点。 (3)这种规定将要求存在G2阶段,因此性别可能是该阶段出现的原因。关于细胞周期,(4)指数曲线是唯一对单细胞物种的最佳细胞大小没有影响的细胞生长曲线。 (5)在细胞周期末期没有生长的平台的存在解释了在单细胞藻类中观察到的昼夜节律细胞周期。

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