Rapid Commun Mass Spectrom. 2026 Sep 15. 40(17):
e70108
INTRODUCTION: Lipids are a fundamental class of biomolecules essential for membrane structure, energy storage, and cellular signaling, whereas lipidomics is an advanced dedicated way to understand the lipids, including biological lipids.
OBJECTIVE: Keeping in mind the importance of lipid makeup, the current study was focused to understand the lipid diversity present within Picrorhiza kurroa (leaves, rhizomes, and roots) at three different localities of Himachal Pradesh, India: Bhatori (Pangi), Bharmaur (Chamba), and Gumna (Shimla).
METHOD: UHPLC-QTOF-IMS was used for lipid profiling of P. kurroa locational samples. The data were analyzed for each extraction parameter. Moreover, targeted specialized metabolites were also analyzed using UPLC-PDA. Further, multivariate analysis including supervised orthogonal projections to latent structures discriminant analysis and unsupervised principal component analysis were employed to understand the lipid makeup, its dissemination, and similarity traits among the samples.
RESULTS: Q-TOF/MS revealed the comprehensive lipidome of P. kurroa that includes the important presence of Cer, FA, (L) PE, TG, PA, PI, PS, MGDG, and DGDG. Leaves of P. kurroa collected from the Pangi region showed higher lipid content than other targeted parts and localities, whereas targeted metabolites including picrosides were present higher in the rhizomes of the Pangi region. Further, statistical analysis showed clear dissemination and similarity traits among the samples. The current study suggested variability among the chemo-profile of different locational samples.
CONCLUSION: We concluded that leaves of P. kurroa collected from the Pangi region constitute higher lipid content than other parts and P. kurroa plants collected from another area. Also, the findings revealed that the plant P. kurroa contains Cer, FA, (L)PE, TG, DG, PG, PA, PI, PS, MGDG, and DGDG. The variation in picroside contents was also observed through UPLC-DAD analysis; rhizomes collected from the Bhatori (Pangi) region exhibited the highest picroside content.
Keywords:
Picrorhiza kurroa
; Lipidomics; Picrosides; ultraperformance liquid chromatography coupled with ESI Q‐TOF MS