Bharadwaj Revuru, Kumar Sarma R, Sharma Ashutosh, Sathishkumar Ramalingam
Plant Genetic Engineering Laboratory, Department of Biotechnology, Bharathiar University, Coimbatore, India.
Tecnologico de Monterrey, Centre of Bioengineering, Querétaro, Mexico.
Front Plant Sci. 2021 Aug 13;12:697318. doi: 10.3389/fpls.2021.697318. eCollection 2021.
Plants are a remarkable source of high-value specialized metabolites having significant physiological and ecological functions. Genes responsible for synthesizing specialized metabolites are often clustered together for a coordinated expression, which is commonly observed in bacteria and filamentous fungi. Similar to prokaryotic gene clustering, plants do have gene clusters encoding enzymes involved in the biosynthesis of specialized metabolites. More than 20 gene clusters involved in the biosynthesis of diverse metabolites have been identified across the plant kingdom. Recent studies demonstrate that gene clusters are evolved through gene duplications and neofunctionalization of primary metabolic pathway genes. Often, these clusters are tightly regulated at nucleosome level. The prevalence of gene clusters related to specialized metabolites offers an attractive possibility of an untapped source of highly useful biomolecules. Accordingly, the identification and functional characterization of novel biosynthetic pathways in plants need to be worked out. In this review, we summarize insights into the evolution of gene clusters and discuss the organization and importance of specific gene clusters in the biosynthesis of specialized metabolites. Regulatory mechanisms which operate in some of the important gene clusters have also been briefly described. Finally, we highlight the importance of gene clusters to develop future metabolic engineering or synthetic biology strategies for the heterologous production of novel metabolites.
植物是具有重要生理和生态功能的高价值特殊代谢产物的显著来源。负责合成特殊代谢产物的基因通常聚集在一起进行协调表达,这在细菌和丝状真菌中很常见。与原核基因簇类似,植物确实拥有编码参与特殊代谢产物生物合成的酶的基因簇。在整个植物界已鉴定出20多个参与多种代谢产物生物合成的基因簇。最近的研究表明,基因簇是通过初级代谢途径基因的基因复制和新功能化进化而来的。通常,这些基因簇在核小体水平受到严格调控。与特殊代谢产物相关的基因簇的普遍存在为未开发的高有用生物分子来源提供了诱人的可能性。因此,需要确定植物中新型生物合成途径并对其进行功能表征。在这篇综述中,我们总结了对基因簇进化的见解,并讨论了特定基因簇在特殊代谢产物生物合成中的组织和重要性。还简要描述了在一些重要基因簇中起作用的调控机制。最后,我们强调了基因簇对于开发未来代谢工程或合成生物学策略以异源生产新型代谢产物的重要性。