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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Pan-Genome-Scale Network Reconstruction: Harnessing Phylogenomics Increases the Quantity and Quality of Metabolic Models
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Pan-Genome-Scale Network Reconstruction: Harnessing Phylogenomics Increases the Quantity and Quality of Metabolic Models

机译:泛基因组尺度网络重建:利用系统染色剂增加代谢模型的数量和质量

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摘要

A genome-scale network reconstruction (GENRE) is a knowledgebase for an organism and has various applications. Available genome sequences have risen in recent years, but the number of curated GENREs has not kept pace. Existing yeast GENREs contain significant commission and omission errors. Current practices limit the quantity and quality of GENREs. An open and transparent phylogenomic-driven framework is outlined to address these issues. The method is demonstrated with 33 yeasts and fungi in Dikarya. A pan-fungal metabolic network called FYRMENT (Fungal and Yeast Metabolic Network) (https://github.com/LMSE/FYRMENT) is created, and annotated with ortholog groups from AYbRAH (https://github.com/LMSE/AYbRAH). Metabolic models for lower-level taxons are compiled. The fungal pan-GENRE contains 1553 orthologs, 2759 reactions, 2251 metabolites. The GENREs have higher genomic and metabolic coverage than existing yeast and fungal GENREs created with other methods. Metabolic simulations show the maximum amino acid yields from glucose differs between yeast lineages, indicating metabolic networks have evolved. Curating genomes and reactions at higher taxonomic-levels increases the quantity and quality of GENREs than conventional approaches. This approach can scale to other branches in the tree of life.
机译:基因组级网络重建(类型)是有机体的知识库,具有各种应用。近年来,可用的基因组序列已上升,但策序的类型数量并未保持速度。现有的酵母类型包含重要的委员会和遗漏误差。目前的做法限制了流派的数量和质量。概述了开放和透明的系统源驱动框架以解决这些问题。该方法用33种酵母和达特拉纳真菌进行了演示。创建了一种称为Fyrment(真菌和酵母代谢网络)(HTTPS://github.com/lmse/fyment)的泛菌代谢网络,并用来自Aybrah的Ortholog组(https://github.com/lmse/aybrah )。编制了较低级别额内额度的代谢模型。真菌泛流含有1553次orthologs,2759个反应,2251个代谢物。与用其他方法产生的现有酵母和真菌类型具有更高的基因组和代谢覆盖。代谢模拟显示葡萄糖在酵母谱系之间的最大氨基酸产率不同,表明代谢网络已经发展。在较高的分类水平下凝乳基因组和反应增加了遗传的数量和质量而不是常规方法。这种方法可以扩展到生活树中的其他分支。

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