Comprehensive Quality Assessment of Brassica napus L. Seeds via HPTLC, LC-QToF, and Anatomical Investigation.
Nazym TileuberdiKumar KatraguntaSebastian John AdamsJennyfer Andrea Aldana MejíaArdak OmarbekovaBharathi AvulaIkhlas A KhanAknur TurgumbayevaSamir Anis RossPublished in: Molecules (Basel, Switzerland) (2024)
The Brassicaceae family, commonly referred to as cruciferous plants, is globally cultivated and consumed, with the Brassica genus being particularly renowned for its functional components. These vegetables are rich sources of nutrients and health-promoting phytochemicals, garnering increased attention in recent years. This study presents a comprehensive microscopic, chromatographic, and spectroscopic characterization of Brassica napus L. seeds from Kazakhstan aimed at elucidating their morphological features and chemical composition. Microscopic analysis revealed distinct localization of flavonoids, total lipids, and alkaloids. High-performance thin-layer chromatography (HPTLC) analysis of seed extracts demonstrated a complex chemical profile with significant quantities of non-polar compounds in the hexane extracts. Additionally, methanolic extracts revealed the presence of diverse chemical compounds, including alkaloids, flavonoids, and glucosinolates. The chemical composition exhibited varietal differences across different Brassica species, with B. napus L. seeds showing higher concentrations of bioactive compounds. Furthermore, liquid chromatography-quadrupole time-of-flight mass spectrometry (LC-QToF-MS) analysis provided insights into the chemical composition, with sinapine isomers, feruloyl, and sinapoyl choline derivatives as major compounds in the seeds. This study contributes to a better understanding of the chemical diversity and quality control methods' approximations of B. napus L. seeds, highlighting their importance in functional food and nutraceutical applications.
Keyphrases
- liquid chromatography
- mass spectrometry
- simultaneous determination
- tandem mass spectrometry
- ms ms
- quality control
- high resolution mass spectrometry
- public health
- genome wide analysis
- genome wide identification
- single cell
- mental health
- arabidopsis thaliana
- molecular docking
- high resolution
- gas chromatography
- working memory
- climate change
- solid phase extraction
- drinking water
- risk assessment
- high speed
- social media
- health information
- molecular dynamics simulations
- health promotion