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不同氮素和光照条件影响下Dof1/Dof2表达比率的波动:参与两种基因型龙爪稷(Eleusine coracana L.)氮代谢的差异调控

Fluctuation of Dof1/Dof2 expression ratio under the influence of varying nitrogen and light conditions: involvement in differential regulation of nitrogen metabolism in two genotypes of finger millet (Eleusine coracana L.).

作者信息

Gupta Supriya, Gupta Sanjay Mohan, Gupta Alok Kumar, Gaur Vikram Singh, Kumar Anil

机构信息

Department of Molecular Biology and Genetic Engineering, CBSH, G.B. Pant University of Agriculture & Technology, Pantnagar 263 145, India.

Molecular Biology and Genetic Engineering Laboratory, DIBER, DRDO, Haldwani 263 139, India.

出版信息

Gene. 2014 Aug 10;546(2):327-35. doi: 10.1016/j.gene.2014.05.057. Epub 2014 May 27.

Abstract

In order to gain insights into the mechanism of high nitrogen use efficiency (NUE) of finger millet (FM) the role of Dof2 transcription factor (TF), which is a repressor of genes involved in C/N metabolism was investigated. The partial cDNA fragment of EcDof2 (912-bp; GenBank acc. no. KF261117) was isolated and characterized from finger millet (FM) that showed 63% and 58% homology with Dof2 of Zea mays at nucleotide and protein level, respectively. Its expression studies were carried out along with the activator EcDof1 in two genotypes (GE3885, high protein genotype (HPG); GE1437, low protein genotype (LPG)) of FM differing in grain protein contents (13.8% and 6.2%) showed that EcDof2 is expressed in both shoot and root tissues with significantly (p≤0.05) higher expression in the roots. The diurnal expression of both EcDof1 and EcDof2 in shoots was differential having different time of peak expression indicating a differential response to diurnal condition. Under continuous dark conditions, expression of EcDof1 and EcDof2 oscillated in both the genotypes whereas on illumination, the fold expression of EcDof1 was higher as compared to EcDof2. Under increasing nitrate concentration, EcDof2 expression increases in roots and shoots of LPG while it remains unchanged in HPG. However, the EcDof1 expression was found to increase in both genotypes. Further, time kinetics studies under single nitrate concentration revealed that EcDof2 was repressed in the roots of both genotypes whereas EcDof1 oscillated with time. The EcDof1/EcDof2 ratio measured showed differential response under different light and nitrogen conditions. It was higher in the roots of HPG indicating higher activation of genes involved in N uptake and assimilation resulting in high grain protein accumulation. The results indicate that both light and nitrogen concentration influence Dof1 and Dof2 expression and suggests a complex pattern of regulation of genes influenced by these plant specific TFs. In nutshell, the Dof1/Dof2 ratio can serve as an index for measuring the N responsiveness and NUE of crops and can be further validated by Dof2 knock down approach.

摘要

为深入了解龙爪稷的高氮利用效率(NUE)机制,对Dof2转录因子(TF)的作用进行了研究,该转录因子是参与碳/氮代谢相关基因的阻遏物。从龙爪稷中分离并鉴定了EcDof2的部分cDNA片段(912 bp;GenBank登录号:KF261117),其在核苷酸水平和蛋白质水平上分别与玉米的Dof2具有63%和58%的同源性。在两种籽粒蛋白质含量不同(分别为13.8%和6.2%)的龙爪稷基因型(GE3885,高蛋白基因型(HPG);GE1437,低蛋白基因型(LPG))中,对其与激活因子EcDof1一起进行了表达研究,结果表明EcDof2在地上部和根组织中均有表达,且在根中的表达显著更高(p≤0.05)。EcDof1和EcDof2在地上部的昼夜表达存在差异,峰值表达时间不同,表明对昼夜条件的反应不同。在持续黑暗条件下,EcDof1和EcDof2在两种基因型中均有表达振荡,而在光照条件下,EcDof1的表达倍数高于EcDof2。在硝酸盐浓度增加的情况下,LPG地上部和根中EcDof2的表达增加,而HPG中则保持不变。然而,发现两种基因型中EcDof1的表达均增加。此外,在单一硝酸盐浓度下的时间动力学研究表明,两种基因型根中EcDof2均受到抑制,而EcDof1随时间振荡。所测的EcDof1/EcDof2比值在不同光照和氮条件下表现出不同的反应。在HPG根中该比值更高,表明参与氮吸收和同化的基因激活程度更高,从而导致籽粒蛋白质积累量高。结果表明,光照和氮浓度均影响Dof1和Dof2的表达,提示受这些植物特异性转录因子影响的基因存在复杂的调控模式。简而言之,Dof1/Dof2比值可作为衡量作物氮响应性和氮利用效率的指标,并且可通过Dof2基因敲低方法进一步验证。

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