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Evolutionary and Functional Relationships of the dha Regulon by Genomic Context Analysis

机译:基于基因组上下文分析的dha Regulon的进化和功能关系

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摘要

3-hydroxypropionaldehyde (3-HPA) and 1,3-propanediol (1,3-PD) are subproducts of glycerol degradation and of economical interest as they are used for polymers synthesis, such as polyesters and polyurethanes. Some few characterized bacterial species (mostly from Firmicutes and Gamma-proteobacteria groups) are able to catabolize these monomers from glycerol using the gene products from the dha regulon. To expand our knowledge and direct further experimental studies on the regulon and related genes for the anaerobic glycerol metabolism, an extensive genomic screening was performed to identify the presence of the dha genes in fully sequenced prokaryotic genomes. Interestingly, this work shows that although only few bacteria species are known to produce 3-HPA or 1,3-PD, the incomplete regulon is found in more than 100 prokaryotic genomes. However, the complete pathway is found only in a few dozen species belonging to five different taxonomic groups, including one Archaea species, Halalkalicoccus jeotgali. Phylogenetic analysis and conservation of both gene synteny and primary sequence similarity reinforce the idea that these genes have a common origin and were possibly acquired by lateral gene transfer (LGT). Besides the evolutionary aspect, the identification of homologs from several different organisms may predict potential alternative targets for faster or more efficient biological synthesis of 3-HPA or 1,3-PD.
机译:3-羟基丙醛(3-HPA)和1,3-丙二醇(1,3-PD)是甘油降解的副产品,具有经济意义,因为它们用于聚合物合成,例如聚酯和聚氨酯。一些少量的特征细菌种类(主要来自Firmicutes和Gamma-proteobacteria类)能够使用dha regulon的基因产物从甘油中分解这些单体。为了扩展我们的知识并指导有关厌氧甘油代谢的调节子和相关基因的进一步实验研究,进行了广泛的基因组筛选,以鉴定完全测序的原核生物基因组中dha基因的存在。有趣的是,这项工作表明,尽管已知只有少数细菌会产生3-HPA或1,3-PD,但在100多个原核基因组中发现了不完全的调控子。但是,仅在属于五个不同分类组的几十个物种中发现了完整的途径,其中包括一个古细菌物种,jealgali嗜盐链球菌。系统发育分析和基因同义性和一级序列相似性的保守性加强了这样的想法,即这些基因具有共同的起源,并可能是通过横向基因转移(LGT)获得的。除了进化方面,从几种不同生物的同系物的鉴定可能会预测潜在的替代目标,以更快或更有效地生物合成3-HPA或1,3-PD。

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