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蔗糖调控的拟南芥转录因子 bZIP11 重新编程代谢并调节海藻糖代谢。

The sucrose-regulated Arabidopsis transcription factor bZIP11 reprograms metabolism and regulates trehalose metabolism.

机构信息

Centre for Signal Transduction and Metabolomics, Institute of Botany, The Chinese Academy of Sciences, Naxincun 20, Beijing 100093, China.

Department of Molecular Plant Physiology, Utrecht University, Padualaan 8, 3584 CH Utrecht, the Netherlands.

出版信息

New Phytol. 2011 Aug;191(3):733-745. doi: 10.1111/j.1469-8137.2011.03735.x. Epub 2011 Apr 27.

Abstract

• The Arabidopsis basic region-leucine zipper transcription factor 11 (bZIP11) is known to be repressed by sucrose through a translational inhibition mechanism that requires the conserved sucrose control peptide encoded by the mRNA leader. The function of bZIP11 has been investigated in over-expression studies, and bZIP11 has been found to inhibit plant growth. The addition of sugar does not rescue the growth inhibition phenotype. Here, the function of the bZIP11 transcription factor was investigated. • The mechanism by which bZIP11 regulates growth was studied using large-scale and dedicated metabolic analysis, biochemical assays and molecular studies. • bZIP11 induction results in a reprogramming of metabolism and activation of genes involved in the metabolism of trehalose and other minor carbohydrates such as myo-inositol and raffinose. bZIP11 induction leads to reduced contents of the prominent growth regulatory molecule trehalose 6-phosphate (T6P). • The metabolic changes detected mimic in part those observed in carbon-starved plants. It is proposed that bZIP11 is a powerful regulator of carbohydrate metabolism that functions in a growth regulatory network that includes T6P and the sucrose non-fermenting-1 related protein kinase 1 (SnRK1).

摘要

• 拟南芥碱性亮氨酸拉链转录因子 11(bZIP11)已知通过翻译抑制机制被蔗糖抑制,该机制需要 mRNA 前体中编码的保守蔗糖控制肽。bZIP11 的功能已在过表达研究中进行了研究,发现 bZIP11 抑制植物生长。添加糖不能挽救生长抑制表型。在这里,研究了 bZIP11 转录因子的功能。• 使用大规模和专用代谢分析、生化测定和分子研究研究了 bZIP11 调节生长的机制。• bZIP11 的诱导导致代谢重编程,并激活参与海藻糖和其他少量碳水化合物(如肌醇和棉子糖)代谢的基因。bZIP11 的诱导导致显著生长调节分子海藻糖 6-磷酸(T6P)的含量降低。• 检测到的代谢变化部分模拟了在碳饥饿植物中观察到的变化。据推测,bZIP11 是碳水化合物代谢的强大调节剂,它在包括 T6P 和蔗糖非发酵 1 相关蛋白激酶 1(SnRK1)的生长调节网络中发挥作用。

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