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拟南芥GSQ5/DOG1的Cvi等位基因由脱落酸介导的糖信号通路诱导,并通过刺激ABI4表达增强糖敏感性。

The Arabidopsis GSQ5/DOG1 Cvi allele is induced by the ABA-mediated sugar signalling pathway, and enhances sugar sensitivity by stimulating ABI4 expression.

作者信息

Teng Sheng, Rognoni Sara, Bentsink Leónie, Smeekens Sjef

机构信息

Molecular Plant Physiology Group, Institute of Environmental Biology, Utrecht University, Padualaan 8, 3584 CH Utrecht, The Netherlands.

出版信息

Plant J. 2008 Aug;55(3):372-81. doi: 10.1111/j.1365-313X.2008.03515.x. Epub 2008 Apr 12.

Abstract

ABI4 encodes an AP2 family transcription factor that is a central regulator in sugar responsive gene expression in plants. Sugar-induced ABI4 regulates plant genes essential for photosynthesis, and carbon, nitrogen and lipid metabolism. ABI4 activity is induced via the ABA-mediated sugar signalling pathway, which is initiated by the glucose sensing protein hexokinase. Natural variation in sugar sensitivity was used to identify new loci involved in sugar signalling. Five quantitative trait loci (QTLs) for glucose sensitivity (GSQ1-GSQ5) were identified in a Ler/Cvi recombinant inbred line (RIL) population. The GSQ3, GSQ4 and GSQ5 loci are positioned in regions not previously associated with known sugar-sensing genes. GSQ5 was fine mapped and cloned using a candidate-gene approach. The GSQ5 locus was shown to encode the DELAY OF GERMINATION 1 (DOG1) gene. DOG1 was previously identified as a major locus in seed dormancy control. Glucose addition induced the expression of the GSQ5/DOG1 Cvi allele, whereas the Ler and Col alleles did not respond to glucose. Positive feedback was observed between the ABA-mediated sugar signalling pathway and the GSQ5/DOG1 Cvi allele. Expression of the GSQ5/DOG1 Cvi allele requires the ABA-mediated sugar signalling pathway, of which ABI4 is an important component. In addition, sugar induction of ABI4 was promoted by the GSQ5/DOG1 Cvi allele.

摘要

ABI4编码一种AP2家族转录因子,它是植物糖响应基因表达的核心调节因子。糖诱导的ABI4调节植物中对光合作用以及碳、氮和脂质代谢至关重要的基因。ABI4的活性通过ABA介导的糖信号通路诱导产生,该通路由葡萄糖传感蛋白己糖激酶启动。利用糖敏感性的自然变异来鉴定参与糖信号传导的新基因座。在Ler/Cvi重组自交系(RIL)群体中鉴定出五个葡萄糖敏感性数量性状基因座(QTLs,GSQ1 - GSQ5)。GSQ3、GSQ4和GSQ5基因座位于以前与已知糖感应基因无关的区域。使用候选基因方法对GSQ5进行了精细定位和克隆。结果表明,GSQ5基因座编码萌发延迟1(DOG1)基因。DOG1先前被确定为种子休眠控制中的一个主要基因座。添加葡萄糖可诱导GSQ5/DOG1 Cvi等位基因的表达,而Ler和Col等位基因对葡萄糖无反应。在ABA介导的糖信号通路与GSQ5/DOG1 Cvi等位基因之间观察到正反馈。GSQ5/DOG1 Cvi等位基因的表达需要ABA介导的糖信号通路,其中ABI4是一个重要组成部分。此外,GSQ5/DOG1 Cvi等位基因促进了ABI4的糖诱导作用。

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