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Analysis of Arabidopsis thaliana Redox Gene Network Indicates Evolutionary Expansion of Class III Peroxidase in Plants

机译:拟南芥氧化铈基因网络分析表明植物中III类过氧化物酶的进化膨胀

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Reactive oxygen species (ROS) are byproducts of aerobic metabolism and may cause oxidative damage to biomolecules. Plants have a complex redox system, involving enzymatic and non-enzymatic compounds. The evolutionary origin of enzymatic antioxidant defense in plants is yet unclear. Here, we describe the redox gene network for A. thaliana and investigate the evolutionary origin of this network. We gathered from public repositories 246 A. thaliana genes directly involved with ROS metabolism and proposed an A. thaliana redox gene network. Using orthology information of 238 Eukaryotes from STRINGdb, we inferred the evolutionary root of each gene to reconstruct the evolutionary history of A. thaliana antioxidant gene network. We found two interconnected clusters: one formed by SOD-related, Thiol-redox, peroxidases, and other oxido-reductase; and the other formed entirely by class III peroxidases. Each cluster emerged in different periods of evolution: the cluster formed by SOD-related, Thiol-redox, peroxidases, and other oxido-reductase emerged before opisthokonta-plant divergence; the cluster composed by class III peroxidases emerged after opisthokonta-plant divergence and therefore contained the most recent network components. According to our results, class III peroxidases are in expansion throughout plant evolution, with new orthologs emerging in each evaluated plant clade divergence.
机译:反应性氧物质(ROS)是有氧代谢的副产物,可能对生物分子造成氧化损伤。植物具有复杂的氧化还原系统,涉及酶和非酶化合物。植物中酶促抗氧化防御的进化起源尚不清楚。在这里,我们描述了A. Thaliana的氧化还原基因网络,并调查该网络的进化起源。我们从公共存储库246 A.直接参与ROS新陈代谢和提出的A. Thaliana Redox基因网络。使用来自StringdB的238个真核生物的正常信息,我们推断每个基因的进化根,以重建拟南芥抗氧化基因网络的进化史。我们发现两个相互连接的簇:由SOD相关,硫醇氧化还原,过氧化物酶和其他氧化还原酶形成的簇;而另一个完全由III类过氧化物酶形成。在不同的进化期间出现的每个群体:通过SOD相关,硫醇氧化还原,过氧化物酶形成的簇和在Opisthokonta植物分歧之前出现的其他氧化还原酶;在Opisthokonta-植物分歧后,由III类过氧化物酶组成的簇,因此包含最近的网络组件。根据我们的研究结果,III类过氧化物酶在整个植物演化中膨胀,新的正轨在每个评估的植物落下发散中出现。

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