Camalexin has been used in quantification[1] and tolerance assays in Arabidopsis thaliana leaves.[2]
Biochem./physiol. Wirkung
Camalexin is a phytoalexin isolated from cruciferous plants that exhibits antibacterial, antifungal, antiproliferative and cancer chemopreventive activities.
Camalexin is a phytoalexin isolated from cruciferous plants that exhibits antibacterial, antifungal, antiproliferative and cancer chemopreventive activities. Apparently, camalexin increases the ROS levels and is more effective in aggressive prostate cancer cells that express high ROS levels. In Arabidopsisthaliana, camalexin and salicylic acid confer resistance to Phytophthoracapsici.
Leistungsmerkmale und Vorteile
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Frontiers in plant science, 8, 2131-2131 (2018-01-10)
Glucosinolates (GLS) are a group of plant secondary metabolites mainly found in Cruciferous plants, share a core structure consisting of a β-thioglucose moiety and a sulfonated oxime, but differ by a variable side chain derived from one of the several
Camalexin quantification in Arabidopsis thaliana leaves infected with Botrytis cinerea
The association among environmental cues, ethylene response, ABA signaling, and reactive oxygen species (ROS) homeostasis in the process of seed dormancy release is nowadays well-established in many species. Alternating temperatures are recognized as one of the main environmental signals determining
The plant hormones salicylic acid (SA) and jasmonic acid (JA) regulate defense mechanisms capable of overcoming different plant stress conditions and constitute distinct but interconnected signaling pathways. Interestingly, several other molecules are reported to trigger stress-specific defense responses to biotic
Parasitic plants acquire diverse secondary metabolites from their hosts, including defense compounds that target insect herbivores. However, the ecological implications of this phenomenon, including the potential enhancement of parasite defenses, remain largely unexplored. We studied the translocation of glucosinolates from
Apoptosis regulation involves multiple pathways and molecules for cellular homeostasis.
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