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对拟南芥同时缺铁和缺铜时的组合反应过程中可变剪接的分析揭示了参与氨基酸代谢的基因中的差异事件。

Analysis of Alternative Splicing During the Combinatorial Response to Simultaneous Copper and Iron Deficiency in Arabidopsis Reveals Differential Events in Genes Involved in Amino Acid Metabolism.

作者信息

Mancini Estefania, Garcia-Molina Antoni

机构信息

Centre for Genomic Regulation, Barcelona, Spain.

Centre for Research in Agricultural Genomics (CRAG), CSIC-IRTA-UAB-UB, Barcelona, Spain.

出版信息

Front Plant Sci. 2022 Jan 31;13:827828. doi: 10.3389/fpls.2022.827828. eCollection 2022.

Abstract

Copper (Cu) and iron (Fe) constitute fundamental nutrients for plant biology but are often limited due to low bioavailability. Unlike responses to single Cu or Fe deprivation, the consequences of simultaneous Cu and Fe deficiency have not yet been fully deciphered. Previously, it was demonstrated that Cu and Fe deficiency applied in combination imposes transcriptome, proteome, and metabolome changes different from those triggered under each deficiency individually. Here, we evaluated the effect of alternative splicing (AS) on the transcriptome of rosette leaves under single and simultaneous Cu and Fe deficiency. Differentially spliced genes (DSGs) and differentially expressed genes (DEGs) coincided in number (2,600 approx.) although the overlapping fraction was minimal (15%). Functional annotation of changes exclusively detected under simultaneous Cu and Fe deficiency revealed that DEGs participated in general stress responses and translation, while DSGs were involved in metabolic reactions, especially amino acid biosynthesis. Interestingly, transcripts encoding central features for tryptophan (Trp) and asparagine (Asn) synthesis - two significantly altered metabolites under simultaneous Cu and Fe deficiency - underwent exclusive intron retention events under the double deficiency. However, transcript and protein amounts for these enzymes did not correlate with Trp and Asn concentration. In consequence, we propose that AS might act as a regulatory mechanism to modify the stability and/or functionality of the enzymes and therefore fine-tune amino acid production during the combinatorial response to simultaneous Cu and Fe deficiency.

摘要

铜(Cu)和铁(Fe)是植物生物学的基本营养元素,但由于生物有效性低,它们常常处于缺乏状态。与对单一铜或铁缺乏的反应不同,同时缺乏铜和铁的后果尚未完全弄清楚。此前有研究表明,联合施加铜和铁缺乏会导致转录组、蛋白质组和代谢组发生变化,这些变化与单独每种缺乏情况下引发的变化不同。在这里,我们评估了选择性剪接(AS)对莲座叶转录组在单一及同时缺乏铜和铁情况下的影响。差异剪接基因(DSG)和差异表达基因(DEG)数量一致(约2600个),尽管重叠部分极少(15%)。对仅在同时缺乏铜和铁情况下检测到的变化进行功能注释发现,DEG参与一般应激反应和翻译,而DSG参与代谢反应,尤其是氨基酸生物合成。有趣的是,编码色氨酸(Trp)和天冬酰胺(Asn)合成核心特征的转录本——这两种在同时缺乏铜和铁时显著改变的代谢物——在双重缺乏情况下经历了独特的内含子保留事件。然而,这些酶的转录本和蛋白量与Trp和Asn浓度并无关联。因此,我们提出AS可能作为一种调节机制来改变酶的稳定性和/或功能,从而在对同时缺乏铜和铁的组合反应中微调氨基酸的产生。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e1e/8841432/aaaaeb616153/fpls-13-827828-g001.jpg

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