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Co-expression and regulation of photorespiratory genes in Arabidopsis thaliana: A bioinformatic approach

机译:拟南芥中光呼吸基因的共表达和调控:一种生物信息学方法

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p id="spar0065"Being a pathway tightly linked to photosynthesis, photorespiration is regulated by light, but also by both nutrients and metabolites on transcriptional level. However, only little is known about the signals and how they are integrated on promoter level to coordinate the whole pathway. Using a bioinformatic approach we analyzed the co-expression patterns of photorespiratory genes, the predicted cis -regulatory elements in their 5′ upstream regions and the existence of introns in their 5′UTRs. We found that there are groups of photorespiratory genes that are strongly co-expressed among each other. The analysis showed a high co-expression between photorespiration and ammonia re-fixation. However, a strong co-regulation between two genes, like GDCH1 and GDCH2 , did not necessarily mean that these genes share common cis -element in their 5′ upstream regions. TATA-box, MYB1AT, and MYB4 binding site motifs occurred in 16 out of 20 genes. Furthermore, photorespiratory genes are subjected to alternative splicing. We discuss the presence of cis -elements in the context of both stress responses and development. A genome wide analysis of Arabidopsis 5′UTRs revealed that 5′UTRs introns are overrepresented in photorespiratory genes. Promoter: gusA studies indicated that photorespiratory gene expression is also regulated by intron-mediated enhancement (IME). As already shown for glutamate: glyoxylate aminotransferase, transcript abundance of serine: glyoxylate aminotransferase was affected by IME on mRNA level. IME of gene expression of glycolate oxidase was shown to act on translational level.
机译:id =“ spar0065”>光呼吸是与光合作用紧密相关的途径,受光调节,而且受转录水平上的养分和代谢产物的调节。然而,关于信号以及它们如何在启动子水平上整合以协调整个途径的了解甚少。使用生物信息学方法,我们分析了光呼吸基因的共表达模式,在其5'上游区域中预测的顺式调控元件以及在其5'UTR中内含子的存在。我们发现,存在彼此之间强烈共表达的光呼吸基因组。分析表明,光呼吸和氨固色之间有很高的共表达。但是,两个基因(如GDCH1和GDCH2)之间的强共调控并不一定意味着这些基因在其5'上游区域共享相同的顺式元件。 TATA-box,MYB1AT和MYB4结合位点基序出现在20个基因中的16个基因中。此外,对光呼吸基因进行可变剪接。我们讨论了在应激反应和发育过程中顺式元素的存在。拟南芥5'UTRs的全基因组分析表明,在光呼吸基因中5'UTRs内含子过多。启动子:gusA研究表明,光呼吸基因表达也受内含子介导的增强(IME)调控。如已经针对谷氨酸:乙醛酸转氨酶显示的那样,IME在mRNA水平上影响丝氨酸:乙醛酸转氨酶的转录本丰度。乙醇酸氧化酶基因表达的IME被证明在翻译水平上起作用。

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