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果蝇后胸板大刚毛发育过程中的核内复制动力学。

Dynamics of endoreplication during Drosophila posterior scutellar macrochaete development.

机构信息

Department of Applied Biology, Kyoto Institute of Technology, Sakyo-ku, Kyoto, Japan.

出版信息

PLoS One. 2012;7(6):e38714. doi: 10.1371/journal.pone.0038714. Epub 2012 Jun 6.

Abstract

Endoreplication is a variant type of DNA replication, consisting only of alternating G1 and S phases. Many types of Drosophila tissues undergo endoreplication. However, the timing and the extent to which a single endocycling macrochaete undergoes temporally programmed endoreplication during development are unclear. Here, we focused on the dynamics of endoreplication during posterior scutellar (pSC) macrochaete development. Quantitative analyses of C values in shaft cells and socket cells revealed a gradual rise from 8C and 4C at 8 hours after pupal formation (APF) to 72C and 24C at 29 hours APF, respectively. The validity of the values was further confirmed by the measurement of DNA content with a confocal laser microscope. BrdU incorporation assays demonstrated that shaft cells undergo four rounds of endoreplication from 18 to 29.5 hours APF. In contrast, socket cells undergo two rounds of endoreplication during the same period. Statistical analyses showed that the theoretical C values, based on BrdU assays, nearly coincide with the actually measured C values in socket cells, but not in shaft cells after 22 hours APF. These analyses suggest that socket cells undergo two rounds of endoreplication. However, the mechanism of endoreplication in the shaft cells may change from 22 hours APF, suggesting the possibility that shaft cells undergo two or four rounds of endoreplication during the periods. We also found that the timing of endoreplication differs, depending on the type of macrochaete. Moreover, endocycling in shaft cells of both the left and right sides of pSC bristle lineages occurs in the same pattern, indicating that the process is synchronized for specific types of macrochaete. Our findings suggest that endocycling in macrochaete cell lineages can be a model for understanding mechanisms of endoreplication at the single-cell level.

摘要

内复制是一种 DNA 复制的变体类型,仅由交替的 G1 和 S 期组成。许多类型的果蝇组织经历内复制。然而,单个内循环大刚毛在发育过程中经历时间程序内复制的时间和程度尚不清楚。在这里,我们专注于后胸盾(pSC)大刚毛发育过程中内复制的动态。轴细胞和插座细胞中 C 值的定量分析显示,从蛹形成后 8 小时(APF)的 8C 和 4C 逐渐上升到 29 小时 APF 的 72C 和 24C。通过共聚焦激光显微镜测量 DNA 含量进一步证实了这些值的有效性。BrdU 掺入测定表明,轴细胞在 18 至 29.5 小时 APF 期间经历了四轮内复制。相比之下,插座细胞在同一时期经历了两轮内复制。统计分析表明,基于 BrdU 测定的理论 C 值几乎与插座细胞中实际测量的 C 值吻合,但在 22 小时 APF 后轴细胞则不然。这些分析表明,插座细胞经历了两轮内复制。然而,轴细胞内复制的机制可能从 22 小时 APF 起发生变化,这表明在该时期内轴细胞可能经历两轮或四轮内复制。我们还发现,内复制的时间取决于大刚毛的类型而有所不同。此外,pSC 刚毛谱系左右两侧轴细胞的内循环以相同的模式发生,表明该过程针对特定类型的大刚毛同步进行。我们的研究结果表明,大刚毛细胞谱系中的内循环可以作为在单细胞水平上理解内复制机制的模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8b31/3368872/f2264b22781d/pone.0038714.g001.jpg

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