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首页> 外文期刊>Plant physiology >Cellulose synthesis is coupled to cell cycle progression at G(1) in the dinoflagellate Crypthecodinium cohnii
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Cellulose synthesis is coupled to cell cycle progression at G(1) in the dinoflagellate Crypthecodinium cohnii

机译:纤维素合成与在鞭毛藻Crypthecodinium cohnii中G(1)的细胞周期进程耦合

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摘要

Cellulosic deposition in alveolar vesicles forms the "internal cell wall" in thecated dinoflagellates. The availability of synchronized single cells, the lack of secondary deposition, and the absence of cellulosic cell plates at division facilitate investigation of the possible roles of cellulose synthesis (CS) in the entire cell cycle. Flow cytograms of cellulosic contents revealed a stepwise process of CS in the dinoflagellate cell cycle, with the highest rate occurring at G, A cell cycle delay in G(1), but not G(2)/M, was observed after inhibition of CS. A cell cycle inhibitor of G(1)/S, but not G(2)/M, was able to delay cell cycle progression with a corresponding reduction of CS. The increase of cellulose content in the cell cycle corresponded well to the expected increase of surface area. No differences were observed in the cellulose to surface area ratio between normal and fast-growing G(1) cells, implicating the significance of surface area in linking CS to the coupling of cell growth with cell cycle progression. The coupling of CS to G(1) implicates a novel link between CS and cell cycle control, and we postulate that the coupling mechanism might integrate cell wall integrity to the cell size checkpoint.
机译:肺泡囊泡中的纤维素沉积形成了带甲藻的鞭毛中的“内部细胞壁”。同步单细胞的可用性,缺乏次生沉积以及分裂时不存在纤维素细胞板有助于研究纤维素合成(CS)在整个细胞周期中的可能作用。纤维素含量的流式细胞图揭示了鞭毛藻细胞周期中CS的逐步过程,在G处发生率最高,抑制CS后观察到G(1)的细胞周期延迟,但未观察到G(2)/ M。 。 G(1)/ S,而不是G(2)/ M的细胞周期抑制剂能够延迟细胞周期进程,并相应降低CS。细胞周期中纤维素含量的增加与预期的表面积增加非常吻合。没有观察到正常和快速增长的G(1)细胞之间的纤维素与表面积之比的差异,这暗示着表面积在连接CS到细胞生长与细胞周期进程的耦合中的重要性。 CS耦合到G(1)暗示了CS与细胞周期控制之间的新颖联系,我们推测该耦合机制可能会将细胞壁完整性整合到细胞大小检查点中。

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