Pathways to defense metabolites and evading fruit bitterness in genus Solanum evolved through 2-oxoglutarate-dependent dioxygenases

Research output: Contribution to journalJournal articleResearchpeer-review

  • Prashant D. Sonawane
  • Uwe Heinig
  • Adam Jozwiak
  • Sayantan Panda
  • Bekele Abebie
  • Yana Kazachkova
  • Margarita Pliner
  • Tamar Unger
  • Dalia Wolf
  • Itai Ofner
  • Ester Vilaprinyo
  • Sagit Meir
  • Olga Davydov
  • Amit Gal-on
  • Saul Burdman
  • Ashok Giri
  • Dani Zamir
  • Tali Scherf
  • Jedrzej Szymanski
  • Ilana Rogachev
  • Asaph Aharoni

The genus Solanum comprises three food crops (potato, tomato, and eggplant), which are consumed on daily basis worldwide and also producers of notorious anti-nutritional steroidal glycoalkaloids (SGAs). Hydroxylated SGAs (i.e. leptinines) serve as precursors for leptines that act as defenses against Colorado Potato Beetle (Leptinotarsa decemlineata Say), an important pest of potato worldwide. However, SGA hydroxylating enzymes remain unknown. Here, we discover that 2-OXOGLUTARATE-DEPENDENT-DIOXYGENASE (2-ODD) enzymes catalyze SGA-hydroxylation across various Solanum species. In contrast to cultivated potato, Solanum chacoense, a widespread wild potato species, has evolved a 2-ODD enzyme leading to the formation of leptinines. Furthermore, we find a related 2-ODD in tomato that catalyzes the hydroxylation of the bitter α-tomatine to hydroxytomatine, the first committed step in the chemical shift towards downstream ripening-associated non-bitter SGAs (e.g. esculeoside A). This 2-ODD enzyme prevents bitterness in ripe tomato fruit consumed today which otherwise would remain unpleasant in taste and more toxic.

Original languageEnglish
Article number5169
JournalNature Communications
Volume10
Issue number1
Number of pages13
ISSN2041-1723
DOIs
Publication statusPublished - 2019
Externally publishedYes

ID: 234142548