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1.
Molecules ; 29(13)2024 Jul 02.
Article in English | MEDLINE | ID: mdl-38999097

ABSTRACT

This study delves into the chemical and genetic determinants of petal color and fragrance in Rosa canina L., a wild rose species prized for its pharmacological and cosmetic uses. Comparative analysis of white and dark pink R. canina flowers revealed that the former harbors significantly higher levels of total phenolics (TPC) and flavonoids (TFC), while the latter is distinguished by elevated total anthocyanins (TAC). Essential oils in the petals were predominantly composed of aliphatic hydrocarbons, with phenolic content chiefly constituted by flavonols and anthocyanins. Notably, gene expression analysis showed an upregulation in most genes associated with petal color and scent biosynthesis in white buds compared to dark pink open flowers. However, anthocyanin synthase (ANS) and its regulatory gene RhMYB1 exhibited comparable expression levels across both flower hues. LC-MS profiling identified Rutin, kaempferol, quercetin, and their derivatives as key flavonoid constituents, alongside cyanidin and delphinidin as the primary anthocyanin compounds. The findings suggest a potential feedback inhibition of anthocyanin biosynthesis in white flowers. These insights pave the way for the targeted enhancement of R. canina floral traits through metabolic and genetic engineering strategies.


Subject(s)
Anthocyanins , Flavonoids , Flowers , Gene Expression Regulation, Plant , Phytochemicals , Rosa , Rosa/chemistry , Rosa/genetics , Rosa/metabolism , Flowers/chemistry , Flowers/metabolism , Flowers/genetics , Phytochemicals/chemistry , Flavonoids/analysis , Flavonoids/metabolism , Flavonoids/chemistry , Oils, Volatile/chemistry , Oils, Volatile/metabolism , Pigmentation , Plant Proteins/genetics , Plant Proteins/metabolism , Phenols/metabolism , Phenols/analysis , Phenols/chemistry , Odorants/analysis
2.
Int J Biol Macromol ; 276(Pt 2): 133937, 2024 Sep.
Article in English | MEDLINE | ID: mdl-39029843

ABSTRACT

This study investigates the transition of Rosa canina L. petals from pink to white, driven by genetic and biochemical factors. It characterizes the expression of ten key genes involved in anthocyanin and flavonoid biosynthesis across five developmental stages, correlating gene expression with flavonoid and anthocyanin concentrations and colorimetric changes. Initially, the petals exhibit a rich flavonoid profile, dominated by Rutin and Kaempferol derivatives. The peak anthocyanin concentration, corresponding to the deepest color saturation, occurs in the subsequent stage. Advanced chromatographic analyses identify key flavonoids persisting into the final white petal stage. Notably, the ANS gene shows a dramatic 137.82-fold increase in expression at the final stage, indicating its crucial role in petal color maturation despite the absence of visible pigmentation. The study provides a comprehensive characterization of the genetic and biochemical mechanisms underlying petal pigmentation, suggesting that reduced anthocyanin synthesis and increased flavonol concentration led to white petals. It also highlights the roles of other genes such as PAL, CCD1, FLS, CHI, CHS, UFGT, F3H, DFR, and RhMYB1, indicating that post-translational modifications and other regulatory mechanisms may influence anthocyanin stability and degradation.


Subject(s)
Anthocyanins , Flavonoids , Flowers , Gene Expression Regulation, Plant , Rosa , Rosa/genetics , Rosa/metabolism , Rosa/growth & development , Anthocyanins/biosynthesis , Flowers/genetics , Flowers/growth & development , Flowers/metabolism , Flavonoids/biosynthesis , Flavonoids/metabolism , Pigmentation/genetics , Plant Proteins/genetics , Plant Proteins/metabolism , Genes, Plant , Biosynthetic Pathways/genetics
3.
Antioxidants (Basel) ; 8(11)2019 Nov 13.
Article in English | MEDLINE | ID: mdl-31766277

ABSTRACT

The aim of this study was to evaluate changes in the chemical profile of essential oils and antioxidant enzymes activity (catalase CAT, superoxide dismutase SOD, Glutathione S-transferases GST, and Peroxidase POX) in Mentha × piperita L. (Mitcham variety) and Mentha arvensis L. (var. piperascens), in response to heat stress. In addition, we used salicylic acid (SA) and melatonin (M), two brassinosteroids that play an important role in regulating physiological processes, to assess their potential to mitigate heat stress. In both species, the heat stress caused a variation in the composition of the essential oils and in the antioxidant enzymatic activity. Furthermore both Salicylic acid (SA) and melatonin (M) alleviated the effect of heat stress.

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