Glucosinolate structural diversity, identification, chemical synthesis and metabolism in plants
2019/11/23 by Ivica Blažević, Sabine Montaut, Franko Burčul +4 · 552 citations
Agricultural and Biological Sciences · Biochemistry, Genetics and Molecular Biology · Chemistry · #Biochemistry #Biology #Biosynthesis #Botany #Brassica #Chemistry #Diversity (politics) #Enzyme #Free Radicals and Antioxidants #Genomics, phytochemicals, and oxidative stress #Glucosinolate #Identification (biology) #Metabolism #Moringa oleifera research and applications #Plant metabolism #Secondary metabolism
paper · pdf · doi:10.1016/j.phytochem.2019.112100
published in Phytochemistry 169, 112100 (Elsevier BV)
openalex publication_date 2019/11/23 · openalex created_date 2025/10/10 · openalex updated_date 2026/08/04
Abstract
The glucosinolates (GSLs) is a well-defined group of plant metabolites characterized by having an S-β-d-glucopyrano unit anomerically connected to an O-sulfated (Z)-thiohydroximate function. After enzymatic hydrolysis, the sulfated aglucone can undergo rearrangement to an isothiocyanate, or form a nitrile or other products. The number of GSLs known from plants, satisfactorily characterized by modern spectroscopic methods (NMR and MS) by mid-2018, is 88. In addition, a group of partially characterized structures with highly variable evidence counts for approximately a further 49. This means that the total number of characterized GSLs from plants is somewhere between 88 and 137. The diversity of GSLs in plants is critically reviewed here, resulting in significant discrepancies with previous reviews. In general, the well-characterized GSLs show resemblance to C-skeletons of the amino acids Ala, Val, Leu, Trp, Ile, Phe/Tyr and Met, or to homologs of Ile, Phe/Tyr or Met. Insufficiently characterized, still hypothetic GSLs include straight-chain alkyl GSLs and chain-elongated GSLs derived from Leu. Additional reports (since 2011) of insufficiently characterized GSLs are reviewed. Usually the crucial missing information is correctly interpreted NMR, which is the most effective tool for GSL identification. Hence, modern use of NMR for GSL identification is also reviewed and exemplified. Apart from isolation, GSLs may be obtained by organic synthesis, allowing isotopically labeled GSLs and any kind of side chain. Enzymatic turnover of GSLs in plants depends on a considerable number of enzymes and other protein factors and furthermore depends on GSL structure. Identification of GSLs must be presented transparently and live up to standard requirements in natural product chemistry. Unfortunately, many recent reports fail in these respects, including reports based on chromatography hyphenated to MS. In particular, the possibility of isomers and isobaric structures is frequently ignored. Recent reports are re-evaluated and interpreted as evidence of the existence of "isoGSLs", i.e. non-GSL isomers of GSLs in plants. For GSL analysis, also with MS-detection, we stress the importance of using authentic standards.
Citations
Cited by
- Convergence and constraint in glucosinolate evolution across the Brassicaceae
- Quantifying direct and indirect effects of early‐season herbivory on reproduction across four brassicaceous plant species
- Light intensity and sulfur deficiency modulate growth and water dynamics in broccoli plants via aquaporin regulation
- Dynamic environmental interactions shaped by vegetative plant volatiles
- Convergence and constraint in glucosinolate evolution across the Brassicaceae
- Aliphatic and benzenic glucosinolates in phylogenetically distinct Tropaeolum peregrinum, detection of ethylglucosinolate but lack of chain-elongated glucosinolates, and effects of a methyl group for detoxification by Pieris caterpillars
- Coordination of Glucosinolate Biosynthesis and Turnover Under Different Nutrient Conditions. [europepmc]
- Characterization of Arabidopsis CYP79C1 and CYP79C2 by Glucosinolate Pathway Engineering in Nicotiana benthamiana Shows Substrate Specificity Toward a Range of Aliphatic and Aromatic Amino Acids. [europepmc]
- Human, Animal and Plant Health Benefits of Glucosinolates and Strategies for Enhanced Bioactivity: A Systematic Review. [europepmc]
- Health Benefits of Plant-Derived Sulfur Compounds, Glucosinolates, and Organosulfur Compounds. [europepmc]
- Phylogeny and multiple independent whole-genome duplication events in the Brassicales. [europepmc]
- Glucosinolates: Natural Occurrence, Biosynthesis, Accessibility, Isolation, Structures, and Biological Activities. [europepmc]
- Seed Meals from Brassica nigra and Eruca sativa Control Artificial Nosema ceranae Infections in Apis mellifera . [europepmc]
- Aldoximes are precursors of auxins in Arabidopsis and maize. [europepmc]
- Retrograde sulfur flow from glucosinolates to cysteine in Arabidopsis thaliana . [europepmc]
- Sinapic Acid and Sinapate Esters in Brassica : Innate Accumulation, Biosynthesis, Accessibility via Chemical Synthesis or Recovery From Biomass, and Biological Activities. [europepmc]
- Important Odorants of Four Brassicaceae Species, and Discrepancies between Glucosinolate Profiles and Observed Hydrolysis Products. [europepmc]
- The Roles of Cruciferae Glucosinolates in Disease and Pest Resistance. [europepmc]
- Exploring the genic resources underlying metabolites through mGWAS and mQTL in wheat: From large-scale gene identification and pathway elucidation to crop improvement. [europepmc]
- Genome- and transcriptome-wide association studies reveal the genetic basis and the breeding history of seed glucosinolate content in Brassica napus. [europepmc]
- Glucosinolates From Cruciferous Vegetables and Their Potential Role in Chronic Disease: Investigating the Preclinical and Clinical Evidence. [europepmc]
- Engineering Considerations to Produce Bioactive Compounds from Plant Cell Suspension Culture in Bioreactors. [europepmc]
- The Cellular and Subcellular Organization of the Glucosinolate-Myrosinase System against Herbivores and Pathogens. [europepmc]
- Beneficial Health Effects of Glucosinolates-Derived Isothiocyanates on Cardiovascular and Neurodegenerative Diseases. [europepmc]
- The Role of Bioactive Compounds in Natural Products Extracted from Plants in Cancer Treatment and Their Mechanisms Related to Anticancer Effects. [europepmc]
- Dynamic environmental interactions shaped by vegetative plant volatiles. [europepmc]
- Ricca's factors as mobile proteinaceous effectors of electrical signaling. [europepmc]
- Systematic Review on the Metabolic Interest of Glucosinolates and Their Bioactive Derivatives for Human Health. [europepmc]
- Glucosinolates, a natural chemical arsenal: More to tell than the myrosinase story. [europepmc]
- Stressing the importance of plant specialized metabolites: omics-based approaches for discovering specialized metabolism in plant stress responses. [europepmc]
- Glucosinolate structural diversity shapes recruitment of a metabolic network of leaf-associated bacteria. [europepmc]
Related