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February 11, 2026Physiologia Plantarum0 citationsOpen Access

Metabolome and Transcriptome Profiling of Chicory Roots Provide Insights Into Laticifer Development and Specialized Metabolism

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KVKhabat VahabiGBGerd Ulrich BalckeJHJohanna C. Hakkert

Key Points

  • To explore the metabolism of chicory roots and the development of laticifers through metabolome and transcriptome analysis.
  • Conducted metabolomics and transcriptomics profiling of chicory root tissues.
  • Utilized gas chromatography-mass spectrometry (GC-MS) and liquid chromatography-mass spectrometry (LC-MS).
  • Analyzed gene expression of sesquiterpene lactone (STL) pathway genes and measured phytohormones.
  • Identified 21,437 features in chicory roots, with 135 showing differential abundance between cell types.
  • Major STL accumulation located primarily in laticifers, with significant gene expression indicating compartmentalized biosynthesis.
  • Inulin predominantly accumulates outside laticifers, with complex trafficking of inulin precursors across root compartments.

Abstract

ABSTRACT Chicory roots produce inulin, a dietary fiber, as well as large quantities of bitter sesquiterpene lactones (STLs), which have valuable biological activities. In an effort to understand the compartmentalization of metabolism within chicory roots and the molecular basis of the development of laticifers that produce the chicory latex, we performed metabolomics and transcriptomics profiling of different tissues of chicory roots. Gas chromatography coupled to mass spectrometry (GC–MS) and liquid chromatography coupled to mass spectrometry (LC–MS) identified a total of 21,437 features, of which 135 were differentially abundant between cell types. Further analysis indicated that the major STLs accumulated primarily in the latex. Gene expression of known STL pathway genes indicates a compartmentalization of the biosynthesis across multiple tissues, with implications regarding the trafficking of pathway intermediates. Phytohormone measurements and gene expression analysis point to a major role for jasmonate signaling in the development and differentiation of laticifers. Furthermore, inulin accumulates mostly outside the laticifers, but expression of inulin metabolic genes also points to a complex distribution and trafficking of inulin or inulin precursors across different root compartments. Altogether, the data presented here constitute a unique resource to investigate several biological processes in chicory roots, including laticifer development, STL biosynthesis and transport, and inulin biosynthesis regulation.

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Cite This Study

Vahabi et al. (2026) studied this question.

synapsesocial.com/papers/698c1bef267fb587c655dfechttps://doi.org/10.1111/ppl.70778
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