The Path from β-Carotene to Carlactone, a Strigolactone-Like Plant Hormone

Adrian Alder(University of Freiburg), Muhammad Jamil(Graduate School Experimental Plant Sciences), Mattia Marzorati(University of Bern), Mark Bruno(University of Freiburg), Martina Vermathen(University of Bern), Peter Bigler(University of Bern), Sandro Ghisla(University of Konstanz), Harro J. Bouwmeester(Graduate School Experimental Plant Sciences), Peter Beyer(University of Freiburg), Salim Al‐Babili(University of Freiburg)
Science
March 15, 2012
Cited by 923

Abstract

Strigolactones, phytohormones with diverse signaling activities, have a common structure consisting of two lactones connected by an enol-ether bridge. Strigolactones derive from carotenoids via a pathway involving the carotenoid cleavage dioxygenases 7 and 8 (CCD7 and CCD8) and the iron-binding protein D27. We show that D27 is a β-carotene isomerase that converts all-trans-β-carotene into 9-cis-β-carotene, which is cleaved by CCD7 into a 9-cis-configured aldehyde. CCD8 incorporates three oxygens into 9-cis-β-apo-10'-carotenal and performs molecular rearrangement, linking carotenoids with strigolactones and producing carlactone, a compound with strigolactone-like biological activities. Knowledge of the structure of carlactone will be crucial for understanding the biology of strigolactones and may have applications in combating parasitic weeds.


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