Genetics, chemistry and ecology of a qualitative glucosinolate polymorphism in Barbarea vulgaris
Explore this paper's citation graph
Summary
The ability to produce glucobarbarin is heritable and regulated by a dominant gene, and some candidate genes are identified, which are needed to determine whether one of these candidate genes is indeed responsible for the difference between the chemotypes.
- Type
- dissertation
- Published
- 2008-01-01
- Cited by
- 5
- References
- 231
- Access
- Open access
- OpenAlex
- https://openalex.org/W7512406
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:81153763
Keywords
Glucosinolate, Myrosinase, Herbivore, Biology, Brassicaceae
References
- Gene-to-metabolite networks for terpenoid indole alkaloid biosynthesis in Catharanthus roseus cells.
- Larval Exposure to Oviposition Deterrents Alters Subsequent Oviposition Behavior in Generalist, Trichoplusia ni and Specialist, Plutella xylostella Moths
- Glucosinolates – biochemistry, genetics and biological activity
- Biosynthesis and metabolic engineering of glucosinolates
- Optimal defence, kin conflict and the distribution of furanocoumarins among offspring of wild parsnip
- De nematoden van Nederland.
- Are roots special? Nematodes have their say
- Polymorphism in Plant Defense Against Herbivory: Constitutive and Induced Resistance in Cucumis sativus
- A Role for Isothiocyanates in Plant Resistance Against the Specialist Herbivore Pieris rapae
- In planta side-chain glucosinolate modification in Arabidopsis by introduction of dioxygenase Brassica homolog BoGSL-ALK
- A Saponin Correlated with Variable Resistance of Barbarea vulgaris to the Diamondback Moth Plutella xylostella
- Identification of a Triterpenoid Saponin from a Crucifer, Barbarea vulgaris, as a Feeding Deterrent to the Diamondback Moth, Plutella xylostella
- Distribution, biosynthesis and turnover of pyrrolizidine alkaloids in Cynoglossum officinale
- Determination of amino acids in cell culture and fermentation broth media using anion-exchange chromatography with integrated pulsed amperometric detection.
- Sequestration of Host Plant Glucosinolates in the Defensive Hemolymph of the Sawfly Athalia rosae
- Genetic Variation and Relationships of Constitutive and Herbivore-Induced Glucosinolates, Trypsin Inhibitors, and Herbivore Resistance in Brassica rapa
- Rhizopus and Fusarium are Selected as Dominant Fungal Genera in Rhizospheres of Brassicaceae
- Costs of plant resistance to herbivory.
- Metabolomics – the link between genotypes and phenotypes
- Suppressive Impact of Glucosinolates in Brassica Vegetative Tissues on Root Lesion Nematode Pratylenchus neglectus
Cited by
- Reciprocal interactions between the cabbage root fly (Delia radicum) and two glucosinolate phenotypes of Barbarea vulgaris
- Barbarea vulgaris linkage map and quantitative trait loci for saponins, glucosinolates, hairiness and resistance to the herbivore Phyllotreta nemorum.
- Root and shoot glucosinolates: a comparison of their diversity, function and interactions in natural and managed ecosystems
- The Role of the Glucosinolate-Myrosinase System in Mediating Greater Resistance of Barbarea verna than B. vulgaris to Mamestra brassicae Larvae
- Biological Characterization and Glucosinolate Degradation Mechanisms of Bacillus subtilis BSY82 in Rapeseed Meal
Related papers
- Overcoming Glucosinolate-Myrosinase-Isothiocyanate Defense System by Plant Pathogenic Fungi
- Effects of abscisic acid on glucosinolate content, isothiocyanate formation and myrosinase activity in cabbage sprouts
- Crambe tataria: The Glucosinolate/Myrosinase System in vivo and in vitro
- Reaction of glucosinolate-myrosinase defence system in Brassica plants to pathogenicity factor of Sclerotinia sclerotiorum
- In vitro activity of glucosinolates and their products against Leptosphaeria maculans
- Hijacking the Mustard-Oil Bomb: How a Glucosinolate-Sequestering Flea Beetle Copes With Plant Myrosinases
- Comparative investigations of the glucosinolate-myrosinase system in Arabidopsis suspension cells and hypocotyls.
- The major glucosinolate hydrolysis product in rocket (Eruca sativa L.), sativin, is 1,3-thiazepane-2-thione: Elucidation of structure, bioactivity, and stability compared to other rocket isothiocyanates.