首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Homeologue Specific Gene Expression Analysis of Two Vital Carbon Metabolizing EnzymesCitrate Synthase and NADP-Isocitrate Dehydrogenasefrom Wheat (Triticum aestivum L.) Under Nitrogen Stress: Homeologue Specific gene expression of CS and NADP-ICDH
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Homeologue Specific Gene Expression Analysis of Two Vital Carbon Metabolizing EnzymesCitrate Synthase and NADP-Isocitrate Dehydrogenasefrom Wheat (Triticum aestivum L.) Under Nitrogen Stress: Homeologue Specific gene expression of CS and NADP-ICDH

机译:氮胁迫下两种重要碳代谢酶脲合酶和NADP-乙酸脱氢酶的自制性基因表达分析:CS和NADP-ICDH的自主特异性基因表达

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Citrate synthase (CS) and NADP-dependent isocitrate dehydrogenase (NADP-ICDH) have been considered as candidate enzymes to provide carbon skeletons for nitrogen assimilation, i.e., production of 2-oxoglutarate required by the glutamine synthetase/glutamate synthase cycle. The CS and NADP-ICDH cDNAs were encoded for polypeptides of 402 and 480 amino acids with an estimated molecular weight of 53.01 and 45kDa and an isoelectric point of 9.08 and 5.98, respectively. Phylogenetic analysis of these proteins in wheat across kingdoms confirmed the close relationship with Aegilops tauschii and Hordeum vulgare. Further, their amino acid sequences were demonstrated to have some conserved motifs such as Mg2+ or Mn-2 binding site, catalytic sites, NADP binding sites, and active sites. In-silico-identified genomic sequences for the three homeologues A, B, and Dof CS and NADP-ICDH were found to be located on long arm of chromosomes 5 and 3, and sequence analysis also revealed that the three homeologues consisted of 13 and 15 exons, respectively. The total expression analysis indicated that both genes are ubiquitously expressed in shoot and root tissues under chronic as well as transient nitrogen stress. However, they are differentially and contrastingly expressed but almost in a coordinated manner in both the tissues. Under chronic as well as transient stress, both the genes in shoot tissue showed downregulation, lowest at 6h of transient stress. However, in the root tissue, trend was found opposite except with exceptions. Moreover, all the three homeologues of both the genes were transcribed differentially, and the ratio of the individual homeologues transcripts to total homeologues transcripts also varied with the tissue, i.e., shoots or roots, as well as with nitrogen stress treatments. Thus, cDNA as well as genomic sequence information, apparent expression at different time point of nitrogen stress, and coordination between these enzymes would be ultimately linked to nitrate assimilation and nitrogen use efficiency in wheat.
机译:柠檬酸酯合酶(Cs)和NADP依赖性异柠檬酸脱氢酶(NADP-ICDH)被认为是候选酶,以提供用于氮同化的碳骨架,即谷氨酰胺合成酶/谷氨酸合成酶循环所需的2-氧氧化术。将Cs和NADP-ICDH CDNA用于402和480个氨基酸的多肽,其估计分子量为53.01和45kDa,等电点分别为9.08和5.98。跨越王国小麦的这些蛋白质的系统发育分析证实了与Aegilops Tauschii和Hordeum Vulgare的密切关系。此外,对其氨基酸序列进行说明,具有一些保守的基序,例如Mg2 +或Mn-2结合位点,催化位点,NADP结合位点和活性位点。发现三种自制性A,B和DOF CS和NADP-ICDH的硅鉴定的基因组序列位于染色体5和3的长臂上,序列分析还显示出三个作业由13和15组成外显子分别。总表达分析表明,两种基因在慢性以及瞬时氮胁迫下以枝条和根组织中普遍地表达。然而,它们在差异上且比地表达,但在两种组织中几乎处于协调的方式。在慢性和瞬态应力下,芽组织中的基因均显示下调,在瞬态应力的6小时下最低。然而,在根系组织中,除了例外之外,趋势是对面的。此外,两种基因的所有三种自制性被差异转录,并且个体自制成分转录物与总自制性转录物的比例也随组织,即芽或根以及氮胁迫处理而变化。因此,cDNA以及基因组序列信息,在氮胁迫下的不同时间点表达,以及这些酶之间的协调最终与小麦的硝酸盐同化和氮气使用效率相关联。

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