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首页> 外文期刊>The Plant Cell >The Arabidopsis D-Type Cyclin CYCD2;1 and the Inhibitor ICK2/KRP2 Modulate Auxin-Induced Lateral Root Formation
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The Arabidopsis D-Type Cyclin CYCD2;1 and the Inhibitor ICK2/KRP2 Modulate Auxin-Induced Lateral Root Formation

机译:拟南芥D型细胞周期蛋白CYCD2; 1和抑制剂ICK2 / KRP2调节生长素诱导的侧根形成。

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The integration of cell division in root growth and development requires mediation of developmental and physiological signals through regulation of cyclin-dependent kinase activity. Cells within the pericycle form de novo lateral root meristems, and D-type cyclins (CYCD), as regulators of the G(1)-to-S phase cell cycle transition, are anticipated to play a role. Here, we show that the D-type cyclin protein CYCD2;1 is nuclear in Arabidopsis thaliana root cells, with the highest concentration in apical and lateral meristems. Loss of CYCD2;1 has a marginal effect on unstimulated lateral root density, but CYCD2;1 is rate-limiting for the response to low levels of exogenous auxin. However, while CYCD2;1 expression requires sucrose, it does not respond to auxin. The protein Inhibitor-Interactor of CDK/Kip Related Protein2 (ICK2/KRP2), which interacts with CYCD2;1, inhibits lateral root formation, and ick2/krp2 mutants show increased lateral root density. ICK2/KRP2 can modulate the nuclear levels of CYCD2;1, and since auxin reduces ICK2/KRP2 protein levels, it affects both activity and cellular distribution of CYCD2;1. Hence, as ICK2/KRP2 levels decrease, the increase in lateral root density depends on CYCD2;1, irrespective of ICK2/CYCD2;1 nuclear localization. We propose that ICK2/KRP2 restrains root ramification by maintaining CYCD2;1 inactive and that this modulates pericycle responses to auxin fluctuations.
机译:细胞分裂在根的生长和发育中的整合需要通过调节细胞周期蛋白依赖性激酶活性来调节发育和生理信号。周周期内的细胞形成从头开始的侧根分生组织和D型细胞周期蛋白(CYCD),作为G(1)到S期细胞周期过渡的调节剂,有望发挥作用。在这里,我们显示D型细胞周期蛋白CYCD2; 1在拟南芥根细胞中具有核,在顶端和外侧分生组织中浓度最高。 CYCD2; 1的损失对未刺激的侧根密度有边际影响,但是CYCD2; 1限制了对低水平外源生长素的反应。但是,虽然CYCD2; 1表达需要蔗糖,但它对生长素没有反应。与CYCD2; 1相互作用的CDK / Kip相关蛋白2(ICK2 / KRP2)的蛋白质抑制剂相互作用物,抑制侧根形成,而ick2 / krp2突变体显示出侧根密度增加。 ICK2 / KRP2可以调节CYCD2; 1的核水平,并且由于生长素降低ICK2 / KRP2蛋白质的水平,因此它会影响CYCD2; 1的活性和细胞分布。因此,随着ICK2 / KRP2水平的降低,侧根密度的增加取决于CYCD2; 1,而与ICK2 / CYCD2; 1的核定位无关。我们建议ICK2 / KRP2通过保持CYCD2; 1失活来抑制根分枝,并调节周生长素对生长素波动的响应。

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