College of Agriculture, Guizhou University, Guiyang 550025, PR China.
Genome Biol Evol. 2024 Nov 1;16(11). doi: 10.1093/gbe/evae240.
Cytochrome P450 enzymes (CYPs) are widely distributed among various plant groups and constitute approximately 1% of the total number of protein-coding genes. Extensive studies suggest that CYPs are involved in nearly all molecular processes that occur in plants. Over the past two decades, the identification of CYP genes has expanded rapidly, with more than 40,000 CYP genes and 819 CYP families being discovered. Copy number variation is a significant evolutionary characteristic of gene families, yet a systematic characterization of the copy evolution patterns in plant CYP gene families has been lacking, resulting in confusion and challenges in understanding CYP functions. To address these concerns, this review provides comprehensive statistics and analyses of the copy number and diversity of almost all plant CYP gene families, focusing on CYP evolution from Chlorophyta to Dicotyledoneae. Additionally, we examined the subfamily characteristics of certain CYP families with restricted copy changes and identified several CYP subfamilies that play pivotal roles in this event. Furthermore, we analyzed the structural conservation of CYPs across different taxa and compiled a comprehensive database to support plant CYP studies. Our analysis revealed differences in the six core conserved motifs of plant CYP proteins among various clans and plant taxa, while demonstrating similar conservation patterns for the ERR (glutamic acid-arginine-arginine) triad motifs. These findings will significantly facilitate the understanding of plant CYP gene evolution and metabolic diversity and serve as a valuable reference for researchers studying CYP enzymes.
细胞色素 P450 酶(CYPs)广泛分布于各种植物群中,约占蛋白质编码基因总数的 1%。大量研究表明,CYPs 参与了植物中几乎所有的分子过程。在过去的二十年中,CYP 基因的鉴定迅速扩展,发现了超过 40000 个 CYP 基因和 819 个 CYP 家族。拷贝数变异是基因家族的一个重要进化特征,但植物 CYP 基因家族的拷贝进化模式的系统描述一直缺乏,导致对 CYP 功能的理解出现混乱和挑战。为了解决这些问题,本综述提供了几乎所有植物 CYP 基因家族的拷贝数和多样性的全面统计和分析,重点是从绿藻到双子叶植物的 CYP 进化。此外,我们还研究了某些具有受限拷贝变化的 CYP 家族的亚家族特征,并确定了在该事件中起关键作用的几个 CYP 亚家族。此外,我们分析了不同分类群中 CYP 的结构保守性,并编制了一个综合数据库,以支持植物 CYP 研究。我们的分析表明,不同族和植物类群中植物 CYP 蛋白的六个核心保守基序存在差异,而 ERR(谷氨酸-精氨酸-精氨酸)三联基序的保守模式相似。这些发现将极大地促进对植物 CYP 基因进化和代谢多样性的理解,并为研究 CYP 酶的研究人员提供有价值的参考。