Biosynthesis of cyanogenic glucosides in Phaseolus lunatus and the evolution of oxime-based defenses

Research output: Contribution to journalJournal articleResearchpeer-review

  • Daniela Lai
  • Alexandra B. Maimann
  • Eliana Macea
  • Cesar H. Ocampo
  • Gustavo Cardona
  • Martina Picmanova
  • Behrooz Darbani
  • Carl Erik Olsen
  • Daniel Debouck
  • Bodo Raatz
  • Møller, Birger Lindberg
  • Fred Rook

Lima bean,Phaseolus lunatus, is a crop legume that produces the cyanogenic glucosides linamarin and lotaustralin. In the legumesLotus japonicusandTrifolium repens, the biosynthesis of these two alpha-hydroxynitrile glucosides involves cytochrome P450 enzymes of the CYP79 and CYP736 families and a UDP-glucosyltransferase. Here, we identify CYP79D71 as the first enzyme of the pathway inP. lunatus, producing oximes from valine and isoleucine. A second CYP79 family member, CYP79D72, was shown to catalyze the formation of leucine-derived oximes, which act as volatile defense compounds inPhaseolusspp. The organization of the biosynthetic genes for cyanogenic glucosides in a gene cluster aided their identification inL. japonicus. In the available genome sequence ofP. vulgaris, the gene orthologous toCYP79D71is adjacent to a member of theCYP83family. AlthoughP. vulgarisis not cyanogenic, it does produce oximes as volatile defense compounds. We cloned the genes encoding two CYP83s (CYP83E46 and CYP83E47) and a UDP-glucosyltransferase (UGT85K31) fromP. lunatus, and these genes combined form a complete biosynthetic pathway for linamarin and lotaustralin in Lima bean. Within the genusPhaseolus, the occurrence of linamarin and lotaustralin as functional chemical defense compounds appears restricted to species belonging to the closely related Polystachios and Lunatus groups. A preexisting ability to produce volatile oximes and nitriles likely facilitated evolution of cyanogenesis within thePhaseolusgenus.

Original languageEnglish
Article number00244
JournalPlant Direct
Volume4
Issue number8
Number of pages13
ISSN2475-4455
DOIs
Publication statusPublished - 2020

    Research areas

  • chemical defense, cyanogenic glucosides, cytochrome P450, Phaseolus lunatus, SORGHUM-BICOLOR, CYTOCHROME-P450 ENZYMES, HYDROXYNITRILE GLUCOSIDES, LOTUS-JAPONICUS, GENE CLUSTERS, EXPRESSION, LINAMARIN, DHURRIN, LOTAUSTRALIN, LEGUMINOSAE

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