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Relationship between topology and functions in metabolic network evolution

机译:代谢网络进化中拓扑与功能之间的关系

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What is the relationship between the topological connections among enzymes and their functions during metabolic network evolution? Does this relationship show similarity among closely related organisms? Here we investigated the relationship between enzyme connectivity and functions in metabolic networks of chloroplast and its endosymbiotic ancestor, cyanobacteria (Synechococcus sp. WH8102). Also several other species, including E. coli, Arabidopsis thaliana and Cyanidioschyzon merolae, were used for the comparison. We found that the average connectivity among different functional pathways and enzyme classifications (EC) was different in all the species examined. However, the average connectivity of enzymes in the same functional classification was quite similar between chloroplast and one representative of cyanobacteria, syw. In addition, the enzymes in the highly conserved modules between chloroplast and syw, such as amino acid metabolism, were highly connected compared with other modules. We also discovered that the isozymes of chloroplast and syw often had higher connectivity, corresponded to primary metabolism and also existed in conserved module. In conclusion, despite the drastic re-organization of metabolism in chloroplast during endosymbiosis, the relationship between network topology and functions is very similar between chloroplast and its precursor cyanobacteria, which demonstrates that the relationship may be used as an indicator of the closeness in evolution.
机译:代谢网络进化过程中酶之间的拓扑联系与其功能之间有什么关系?这种关系在密切相关的生物之间是否显示出相似性?在这里,我们研究了叶绿体及其内共生祖先蓝细菌(Synechococcus sp。WH8102)的代谢网络中酶连通性与功能之间的关系。比较还使用了其他几个物种,包括大肠杆菌,拟南芥和Cyanidioschyzon merolae。我们发现,在所有检查的物种中,不同功能途径和酶分类(EC)之间的平均连通性均不同。但是,相同功能分类中酶的平均连接性在叶绿体和蓝细菌的代表之一syw之间非常相似。此外,与其他模块相比,叶绿体和syw之间高度保守的模块中的酶(例如氨基酸代谢)具有高度的联系。我们还发现,叶绿体和半胱氨酸的同工酶通常具有较高的连通性,对应于初级代谢,并且也存在于保守模块中。总之,尽管在共生过程中叶绿体中的代谢发生了急剧的重组,但叶绿体与其前体蓝细菌之间的网络拓扑结构和功能之间的关系非常相似,这表明该关系可以用作进化接近性的指标。

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