A beta-glucosidase of an insect herbivore determines both toxicity and deterrence of a dandelion defense metabolite

Author:

Huber MeretORCID,Roder Thomas,Irmisch Sandra,Riedel Alexander,Gablenz Saskia,Fricke Julia,Rahfeld Peter,Reichelt Michael,Paetz Christian,Liechti Nicole,Hu Lingfei,Meng Ye,Huang Wei,Robert Christelle A. M.,Gershenzon Jonathan,Erb MatthiasORCID

Abstract

ABSTRACTGut enzymes can metabolize plant defense metabolites and thereby affect the growth and fitness of insect herbivores. Whether these enzymes also influence herbivore behavior and feeding preference is largely unknown. We studied the metabolization of taraxinic acid β-D-glucopyranosyl ester (TA-G), a sesquiterpene lactone of the common dandelion (Taraxacum officinale) that deters its major root herbivore, the common cockchafer larva (Melolontha melolontha). We demonstrate that TA-G is rapidly deglycosylated and conjugated to glutathione in the insect gut. A broad-spectrum M. melolontha β-glucosidase, Mm_bGlc17, is sufficient and necessary for TA-G deglycosylation. Using plants and insect RNA interference, we show that Mm_bGlc17 reduces TA-G toxicity. Furthermore, Mm_bGlc17 is required for the preference of M. melolontha larvae for TA-G deficient plants. Thus, herbivore metabolism modulates both the toxicity and deterrence of a plant defense metabolite. Our work illustrates the multifacteted roles of insect digestive enzymes as mediators of plant-herbivore interactions.

Publisher

Cold Spring Harbor Laboratory

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