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Subcellular Relocalization and Positive Selection Play Key Roles in the Retention of Duplicate Genes of Populus Class III Peroxidase Family

机译:亚细胞再定位和阳性选择在保留三类杨过氧化物酶家族重复基因中起关键作用

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摘要

Gene duplication is the primary source of new genes and novel functions. Over the course of evolution, many duplicate genes lose their function and are eventually removed by deletion. However, some duplicates have persisted and evolved diverse functions. A particular challenge is to understand how this diversity arises and whether positive selection plays a role. In this study, we reconstructed the evolutionary history of the class III peroxidase (PRX) genes from the Populus trichocarpa genome. PRXs are plant-specific enzymes that play important roles in cell wall metabolism and in response to biotic and abiotic stresses. We found that two large tandem-arrayed clusters of PRXs evolved from an ancestral cell wall type PRX to vacuole type, followed by tandem duplications and subsequent functional specification. Substitution models identified seven positively selected sites in the vacuole PRXs. These positively selected sites showed significant effects on the biochemical functions of the enzymes. We also found that positive selection acts more frequently on residues adjacent to, rather than directly at, a critical active site of the enzyme, and on flexible regions rather than on rigid structural elements of the protein. Our study provides new insights into the adaptive molecular evolution of plant enzyme families.
机译:基因复制是新基因和新功能的主要来源。在进化过程中,许多重复的基因失去了功能,最终被删除而被删除。但是,某些重复项已持续存在并发展了多种功能。一个特殊的挑战是要了解这种多样性是如何产生的,以及积极选择是否起作用。在这项研究中,我们从毛果杨基因组中重建了III类过氧化物酶(PRX)基因的进化史。 PRX是植物特有的酶,在细胞壁代谢以及对生物和非生物胁迫的响应中起重要作用。我们发现,两个大的PRX串联排列簇从祖先的细胞壁类型PRX演变为液泡类型,随后是串联重复和随后的功能规格。替代模型在液泡PRX中鉴定出七个阳性选择位点。这些积极选择的站点显示出对酶的生化功能的重大影响。我们还发现,正选择作用于与酶的关键活性位点相邻而不是直接作用于残基的残基,并且作用于柔性区域而不是作用于蛋白质的刚性结构元件上的频率更高。我们的研究为植物酶家族的适应性分子进化提供了新的见解。

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