ArticleFunctional & integrative genomics2023
Unraveling the functional characterization of a jasmonate-induced flavonoid biosynthetic CYP45082G24 gene in Carthamus tinctorius.
Article in Functional & integrative genomics, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 12 papers.
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12 citing papers in PubMed, 14 citations in OpenAlex.
- Comprehensive characterization of safflower cytochrome P450 family and the role of CtCYP41 in flavonoid biosynthesis and drought response.BMC plant biology · 2026Article
- MeJA-Induced Plant Disease Resistance: A Review.Plants (Basel, Switzerland) · 2026Review
- Genome-wide identification and expression profile ofFrontiers in plant science · 2026Article
- The Phenylpropanoid Gatekeeper CtPAL1 Coordinates ABA-Induced Flavonoid Biosynthesis and Oxidative Stress Tolerance in Safflower (Plants (Basel, Switzerland) · 2025Article
- Co-Analysis of Transcriptome and Metabolome Reveals Flavonoid Biosynthesis inFoods (Basel, Switzerland) · 2025Article
- Integrated Transcriptomic and Metabolomic Analysis of Color Changes in Maize Root Systems Treated with Methyl Jasmonate.Biology · 2025Article
- Genome-wide identification and expression analysis ofPhysiology and molecular biology of plants : an international journal of functional plant biology · 2025Article
- Genome-wide screen and multi-omics analysis revealHorticulture research · 2024Article
- Integrated Transcriptomic and Metabolomic Analysis Revealed Abscisic Acid-Induced Regulation of Monoterpene Biosynthesis in Grape Berries.Plants (Basel, Switzerland) · 2024Article
- Genome-wide characterisation of HD-Zip transcription factors and functional analysis of PbHB24 during stone cell formation in Chinese white pear (Pyrus bretschneideri).BMC plant biology · 2024Article
- Flavonoids: a review on biosynthesis and transportation mechanism in plants.Functional & integrative genomics · 2023Review
- Combined analysis of metagenome and transcriptome revealed the adaptive mechanism of different golden Camellia species in karst regions.Frontiers in plant science · 2023Article
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10 authors at 4 institutions in 1 country.
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Abstract
The cytochrome P450 superfamily of monooxygenases plays a major role in the evolution and diversification of plant natural products. The function of cytochrome P450s in physiological adaptability, secondary metabolism, and xenobiotic detoxification has been studied extensively in numerous plant species. However, their underlying regulatory mechanism in safflower still remained unclear. In this study, we aimed to elucidate the functional role of a putative CtCYP82G24-encoding gene in safflower, which suggests crucial insights into the regulation of methyl jasmonate-induced flavonoid accumulation in transgenic plants. The results showed that methyl jasmonate (MeJA) was associated with a progressive upregulation of CtCYP82G24 expression in safflower among other treatment conditions including light, dark, and polyethylene glycol (PEG). In addition, transgenic plants overexpressing CtCYP82G24 demonstrated increased expression level of other key flavonoid biosynthetic genes, such as AtDFR, AtANS, and AtFLS, and higher content of flavonoid and anthocyanin accumulation when compared with wild-type and mutant plants. Under exogenous MeJA treatment, the CtCYP82G24 transgenic overexpressed lines showed a significant spike in flavonoid and anthocyanin content compared with wild-type and mutant plants. Moreover, the virus-induced gene silencing (VIGS) assay of CtCYP82G24 in safflower leaves exhibited decreased flavonoid and anthocyanin accumulation and reduced expression of key flavonoid biosynthetic genes, suggesting a possible coordination between transcriptional regulation of CtCYP82G24 and flavonoid accumulation. Together, our findings confirmed the likely role of CtCYP82G24 during MeJA-induced flavonoid accumulation in safflower.
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