SxtA localizes to chloroplasts and changes to its 3′UTR may reduce toxin biosynthesis in non-toxic Alexandrium catenella (Group I)✰
Author:
Funder
Japan Society for the Promotion of Science
Publisher
Elsevier BV
Subject
Plant Science,Aquatic Science
Reference67 articles.
1. Biosynthesis of saxitoxin in marine dinoflagellates : an omics perspective;Akbar;Mar. Drugs,2020
2. Evaluation of toxicity equivalent factors of paralytic shellfish poisoning toxins in seven human sodium channels types by an automated high throughput electrophysiology system;Alonso;Arch. Toxicol.,2016
3. The globally distributed genus Alexandrium: Multifaceted roles in marine ecosystems and impacts on human health;Anderson;Harmful Algae,2012
4. Subcellular localization of aphidicolin biosynthetic enzymes heterologously expressed in Aspergillus oryzae;Ban;Biosci. Biotechnol. Biochem.,2018
5. Paralytic shellfish toxins in bivalve molluscs: occurrence, transfer kinetics, and biotransformation;Bricelj;Rev. Fish. Sci.,1998
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1. Intracellular abundance, localization, and enzymatic activity of a saxitoxin biosynthesis enzyme, SxtG, in two sister subclones of the dinoflagellate Alexandrium catenella with extremely different levels of paralytic shellfish toxins;Harmful Algae;2024-09
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3. Development of saxitoxin biosynthesis gene sxtB-targeted qPCR assay for the quantification of toxic dinoflagellates Alexandrium catenella (group I) and A. pacificum (group IV) occurring in the Korean coast;Harmful Algae;2024-04
4. Promoter regions of sxtA and sxtG reveal relationship between saxitoxin biosynthesis and photosynthesis in toxic Alexandrium catenella;Journal of Applied Phycology;2024-01-08
5. Adaptive responses of geographically distinct strains of the benthic dinoflagellate, Prorocentrum lima (Dinophyceae), to varying light intensity and photoperiod;Harmful Algae;2023-08
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