Aug 2026· Journal of Agricultural and Food Chemistry· Vol 74 35, pp.
27865-27878
· 0 citations· 56 references
Medicine
TL;DR
This study characterized theaflavins as potent, JA-inducible defenses with structure-dependent efficacy at a low dose (1.25 μg/g), and identified key peroxidases and laccases involved in their biosynthesis.
Abstract
Flavonoids are key compounds that protect plants from environmental stress and benefit human health. Understanding their metabolism can lead to advances in agriculture and human health. By integrating transcriptomics, metabolomics, proteomics, quantitative analysis and insect behavioral bioassays, this study characterized tea (Camellia sinensis L.) flavonoid profiles and decoded their dynamic reprogramming in response to herbivory and methyl jasmonate (MeJA), which induced 41 and 31 differential metabolites, respectively, dominated by methylated and oxidized flavonoids and proanthocyanidins. Critically, the two treatments activated 22 and 20 flavonoid synthase genes, respectively, sharing 15 common genes. Moreover, this study characterized theaflavins as potent, JA-inducible defenses with structure-dependent efficacy at a low dose (1.25 μg/g), and identified key peroxidases and laccases involved in their biosynthesis. These metabolic markers bridge the gap between insect resistance and quality traits in breeding programs, paving the way for developing plant-derived, eco-friendly biopesticides.
Overall, the available evidence suggests that integrating optimized elicitation strategies with transcriptomics, metabolomics, and metabolic engineering could improve the understanding of secondary metabolite regulation and facilitate the development of sustainable Juniperus tissue culture platforms for producing high-...
A. Orken, D. Tussipkan, S. Manabayeva· Plants· 0 citations
The jasmonate (JA) phytohormone signaling pathway is a key regulator of plant resistance to insect herbivores by mediating the biosynthesis of anti-herbivore metabolites and proteins. However, the JA-mediated regulatory network and its downstream defensive compounds in the monocot crop rice remain largely unknown. Here...
Ya-Ze Kong, Zhi-Xin Wu, Meng-Yu Liu et al.· Plant, Cell and Environment· 0 citations
It is suggested that DMNT plays an important role in mediating tritrophic interactions among cowpea, leafminers, and parasitoid wasps, and the mechanism underlying its herbivory-induced emission is elucidated.
Qiulin Chen, Zheyi Shi, Yang Gao et al.· Journal of Agricultural and...· 0 citations
The resistant mutant achieves rust resistance by strengthening physical defense through cell wall reinforcement and by enhancing chemical defense through the accumulation of antimicrobial metabolites, under the control of AP2/ERF members.
Han-Lu Hu, Cheng-Jie Shu, Xiao-Xia Sun et al.· Biology· 0 citations
SeABI5 is established as a high-value genetic resource that directly couples stress perception with antioxidant production, offering a precise molecular target for breeding crops with enhanced tolerance to heavy metal stress.
Jinchao Zhou, Pengtao Ji, Guang-Li Liu et al.· Journal of Hazardous Materia...· 0 citations