Graduate School of Biological Sciences, Nara Institute of Science and Technology (NAIST), Takayama-cho 8916-5, Ikoma, Nara 630-0192, Japan.
Graduate School of Biological Sciences, Nara Institute of Science and Technology (NAIST), Takayama-cho 8916-5, Ikoma, Nara 630-0192, Japan.
Curr Opin Plant Biol. 2023 Oct;75:102427. doi: 10.1016/j.pbi.2023.102427. Epub 2023 Jul 28.
Functional genomics approaches with comparative omics analyses of wild-accessions and cultivars/wild species, as well as comparative genomic analyses in plant species focusing on gene clusters, have successfully detected key metabolic polymorphisms in plant specialized metabolism. In recent decades, (i) intra-species specific metabolic polymorphisms, (ii) new functionalization of tandem duplicated genes, and (iii) metabolic gene clusters were found as the main factors creating metabolic diversity of specialized metabolites in plants. However, given findings aware us that the identification of genes in plant specialized metabolism requires strategic approaches depending on the target metabolic pathways. The increasing availability of plant genome sequences and transcriptome data has facilitated inter-specific comparative analyses, including genomic analysis and gene co-expression network analysis. Here, we introduce functional genomics approaches with the integration of inter-/intra-species comparative metabolomics, their key roles in providing genomic signatures of metabolic evolution, and discuss future prospects of functional genomics on plant specialized metabolism.
功能基因组学方法结合了对野生品系和栽培品种/野生种的比较组学分析,以及对植物物种中关注基因簇的比较基因组学分析,成功地检测到植物特化代谢中的关键代谢多态性。近几十年来,(i)种内特定代谢多态性,(ii)串联重复基因的新功能化,以及(iii)代谢基因簇被发现是植物特化代谢物代谢多样性的主要因素。然而,鉴于发现使我们认识到,鉴定植物特化代谢中的基因需要根据目标代谢途径采取策略性方法。植物基因组序列和转录组数据的日益普及促进了种间比较分析,包括基因组分析和基因共表达网络分析。在这里,我们介绍了功能基因组学方法,包括种间/种内比较代谢组学的整合,它们在提供代谢进化的基因组特征方面的关键作用,并讨论了功能基因组学在植物特化代谢方面的未来前景。