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Spatio-temporal expression of polyphenol oxidase unveils the dynamics of L-DOPA accumulation in faba bean ( L.). | LitMetric

AI Article Synopsis

  • Faba beans are a significant source of L-DOPA, an anti-Parkinson's drug, and their biosynthesis of L-DOPA varies across different plant tissues, which remains largely unstudied.
  • Research shows that the accumulation of L-DOPA is higher in younger leaves and flower buds, correlating with the selective expression of specific Polyphenol Oxidase (PPO) genes.
  • Understanding the mechanisms behind L-DOPA production in faba beans through a multi-omics approach could lead to increased L-DOPA levels in crops, benefiting agricultural and medical fields.

Article Abstract

Unlabelled: Faba bean ( L.) is a winter season grain legume and a rich source of the anti-parkinson drug, L-3,4-dihydroxyphenylalanine (L-DOPA). The biosynthesis of L-DOPA in plants is not uniform and remains largely unexplored. While the hydroxylase activities of Tyrosine Hydroxylase (TH), the Cytochrome P450 (CYP450) class of enzymes, and Polyphenol Oxidases (PPOs) on tyrosine substrate have been reported in plants, only the roles of PPOs in L-DOPA biosynthesis have been recently established in velvet bean (). To understand the differential accumulation of L-DOPA in different tissues of faba bean, profiling of L-Tyrosine, L-DOPA, Tyramine, and Dopamine in different tissues was performed. Differential accumulation of L-DOPA depended on tissue type and maturity. Furthermore, dopamine biosynthesis through L-DOPA from L-Tyr was confirmed in faba bean. The expression analysis of PPOs in leaf and flower tissues revealed the selective induction of only four (, , , and ) out of ten genes encoding different PPOs mined from the faba bean genome. Higher accumulation of L-DOPA in young leaves and flower buds than in mature leaves and flowers was accompanied by significantly higher expression of and , respectively. The role of various transcription factors contributing to such metabolite dynamics was also predicted. Further exploration of this mechanism using a multi-omics approach can provide meaningful insight and pave the way for enhancing L-DOPA content in crops.

Supplementary Information: The online version contains supplementary material available at 10.1007/s12298-024-01449-2.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11150222PMC
http://dx.doi.org/10.1007/s12298-024-01449-2DOI Listing

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