首页> 外文期刊>Insect Biochemistry and Molecular Biology >Cell cycle arrest as a hallmark of insect diapause: Changes in gene transcription during diapause induction in the drosophilid fly, Chymomyza costata
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Cell cycle arrest as a hallmark of insect diapause: Changes in gene transcription during diapause induction in the drosophilid fly, Chymomyza costata

机译:细胞周期停滞是昆虫滞育的标志:果蝇蝇(Chymomyza costata)滞蝇诱导滞育过程中基因转录的变化

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摘要

The division cycle of CNS cells was arrested in G0/G1 (86.6%) and G2 (12.8%) phases in diapausing larvae of Chymomyza costata. A two-step response was observed when the diapause was induced by transferring the 3rd instar larvae from long-day to short-day conditions: first, the proportion of G2-arrested cells increased rapidly within a single day after transfer; and second, the increase of G0/G1-arrested cells started with a delay of 5 days after transfer. The changes of relative mRNA levels of seven different genes, which code for important cell cycle regulatory factors [Cyclins D and E, kinases Wee1 and Myt1, phosphatase Cdc25 (String), Dacapo (p27), and PCNA] were followed using qRT-PCR technique. Two reference genes (Rp49 and c-tubulin) served as a background. Significant transcriptional responses to photoperiodic transfer were observed for two genes: while the relative levels of dacapo mRNA increased during the rapid entry into the G2 arrest, the pcna expression was significantly downregulated during the delayed onset of G0/G1 arrest. In addition, moderate transcriptional upregulations of the genes coding for two inhibitory kinases, wee1 and myt1 accompanied the entry into diapause. The other genes were expressed equally in all photoperiodic conditions.
机译:CNS细胞的分裂周期被阻滞于金线藻(Chymomyza costata)幼虫的G0 / G1(86.6%)和G2(12.8%)期。当将三龄幼虫从长日状态转移到短日状态而引起滞育时,观察到两步反应:首先,转移后一天之内,G2阻滞细胞的比例迅速增加。第二,G0 / G1阻滞细胞的增加开始于转移后5天的延迟。使用qRT-PCR追踪了七个不同基因的相对mRNA水平的变化,这些基因编码重要的细胞周期调控因子[周期蛋白D和E,激酶Wee1和Myt1,磷酸酶Cdc25(字符串),Dacapo(p27)和PCNA]。技术。两个参考基因(Rp49和c-微管蛋白)作为背景。观察到了两个基因对光周期转移的重要转录反应:虽然dacapo mRNA的相对水平在快速进入G2逮捕期间增加,但pcna表达在G0 / G1逮捕延迟发作期间显着下调。另外,编码两个抑制性激酶wee1和myt1的基因的中等转录上调伴随着进入滞育期。其他基因在所有光周期条件下均表达。

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