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首页> 外文期刊>Insect Biochemistry and Molecular Biology >Cell cycle regulator, small silencing RNA, and segmentation patterning gene expression in relation to embryonic diapause in the band-legged ground cricket
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Cell cycle regulator, small silencing RNA, and segmentation patterning gene expression in relation to embryonic diapause in the band-legged ground cricket

机译:细胞周期调节剂,小沉默RNA和分割图案化基因表达与腿部颈蟋蟀的胚胎延展相关

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Insects enter diapause to synchronize their life cycle with biotic and abiotic conditions favorable for their development, reproduction, and survival. Adult females of the band-legged ground cricket Dianemobius nigrofasciatus (Orthoptera, Glyllidae) respond to environmental factors in autumn and lay diapause-destined eggs. The eggs arrest their development and enter diapause at a very early embryonic stage, specifically the cellular blastoderm. To elucidate the physiological mechanisms underlying this very early stage programmed developmental arrest, we investigated the cell division cycle as well as the expression of cell cycle regulators, small silencing RNAs, and segment patterning genes. The diapause embryo arrests its cell cycle predominantly at the G(0)/G(1) phase. The proportion of cells in the S phase of the cell cycle abruptly decreased at the time of developmental arrest, but further changes of the G(0)/G(1) and G(2)/M were later observed. Thus, cell cycle arrest in the diapause embryo is not an immediate event, but it takes longer to reach the steady state. We further elucidated molecular events possibly involved in diapause preparation and entry. Downregulation of Proliferating cellular antigen (PCNA; a cell cycle regulator), caudal and pumilio (cad and pum; early segmentation genes) as well as P-element induced wimpy testis (piwi) (a small silencing RNA) prior to the onset of developmental arrest was notable. The downregulation of PCNA, cad and pum continued even after entry into developmental arrest. In contrast to upregulation in non-diapause eggs, Cyclin D (another cell cycle regulator) and hunchback, Kriippel, and runt (gap and pair-rule genes) were downregulated in diapause eggs. These molecular events may contribute to embryonic diapause of D. nigrofasciatus.
机译:昆虫进入延展,以使他们的生命周期与生物和非生物条件同步,优惠他们的发展,繁殖和生存。带腿腿蟋蟀Dianemobius Nigrofasciatus(Orthoptera,Glyllidae)的成年女性反应秋季的环境因素,并奠定了注定的鸡蛋。蛋抑制了他们的发展,并在非常早期的胚胎阶段进入延展,特别是细胞胚肠。为了阐明基础的生理机制,这一非常早期计划的发展逮捕,我们研究了细胞分裂周期以及细胞周期调节剂,小沉默RNA和段图案化基因的表达。延伸胚胎主要在G(0)/ g(1)相处主要捕集其细胞周期。在发育停滞时,细胞周期的S期细胞的比例突然下降,但后来观察到G(0)/ g(1)和G(2)/ m的进一步变化。因此,延伸胚胎中的细胞周期停滞不是即时事件,但达到稳定状态需要更长时间。我们进一步阐明了可能参与延展的分子事件,延伸制备和进入。增殖细胞抗原(PCNA;细胞周期调节剂),尾部和甲屑(CAD和PUM;早期分割基因)以及在发育开始之前的P型诱导的WIMPY睾丸(PIWI)(PIWI)(小沉默RNA)的下调被捕是值得注意的。即使在进入发展逮捕后,PCNA,CAD和PUM的下调也持续。与非延伸卵中的上调相比,在延伸卵中下调细胞周期蛋白D(另一个细胞周期调节器)和HUNCHBACK,Krippel和runt(间隙和对规则基因)。这些分子事件可能有助于D. nigrofasciatus的胚胎延伸。

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