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Multilevel interactions between native and ectopic isoprenoid pathways affect global metabolism in rice

Transgenic Res. 2022-02; 
Lucía Pérez, Rui Alves, Laura Perez-Fons, Alfonso Albacete, Gemma Farré, Erika Soto, Ester Vilaprinyó, Cristina Martínez-Andújar, Oriol Basallo, Paul D Fraser, Vicente Medina, Changfu Zhu, Teresa Capell, Paul Christou
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Custom Vector Construction All sequences were codon optimized for rice and pre-assembled by GenScript (Piscataway, NJ, USA) on three vectors Get A Quote

摘要

Isoprenoids are natural products derived from isopentenyl diphosphate (IPP) and dimethylallyl diphosphate (DMAPP). In plants, these precursors are synthesized via the cytosolic mevalonate (MVA) and plastidial methylerythritol phosphate (MEP) pathways. The regulation of these pathways must therefore be understood in detail to develop effective strategies for isoprenoid metabolic engineering. We hypothesized that the strict regulation of the native MVA pathway could be circumvented by expressing an ectopic plastidial MVA pathway that increases the accumulation of IPP and DMAPP in plastids. We therefore introduced genes encoding the plastid-targeted enzymes HMGS, tHMGR, MK, PMK and MVD and the nuclear-targeted tra... More

关键词

Engineered plants, Isoprenoids, Metabolomics, Mevalonate pathway, Oryza sativa