Microcystin-LR, a cyanobacterial toxin affects root development by changing levels of PIN proteins and auxin response in Arabidopsis roots

Microcystin-LR (MCY-LR) is a heptapeptide toxin produced mainly by freshwater cyanobacteria. It strongly inhibits protein phosphatases PP2A and PP1. Functioning of the PIN family of auxin efflux carriers is crucial for plant ontogenesis and their functions depend on their reversible phosphorylation....

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Published inChemosphere (Oxford) Vol. 276; p. 130183
Main Authors Freytag, Csongor, Máthé, Csaba, Rigó, Gábor, Nodzyński, Tomasz, Kónya, Zoltán, Erdődi, Ferenc, Cséplő, Ágnes, Pózer, Erik, Szabados, László, Kelemen, Adrienn, Vasas, Gábor, Garda, Tamás
Format Journal Article
LanguageEnglish
Published Elsevier Ltd 01.08.2021
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Summary:Microcystin-LR (MCY-LR) is a heptapeptide toxin produced mainly by freshwater cyanobacteria. It strongly inhibits protein phosphatases PP2A and PP1. Functioning of the PIN family of auxin efflux carriers is crucial for plant ontogenesis and their functions depend on their reversible phosphorylation. We aimed to reveal the adverse effects of MCY-LR on PIN and auxin distribution in Arabidopsis roots and its consequences for root development. Relatively short-term (24 h) MCY-LR treatments decreased the levels of PIN1, PIN2 and PIN7, but not of PIN3 in tips of primary roots. In contrast, levels of PIN1 and PIN2 increased in emergent lateral roots and their levels depended on the type of PIN in lateral root primordia. DR5:GFP reporter activity showed that the cyanotoxin-induced decrease of auxin levels/responses in tips of main roots in parallel to PIN levels. Those alterations did not affect gravitropic response of roots. However, MCY-LR complemented the altered gravitropic response of crk5-1 mutants, defective in a protein kinase with essential role in the correct membrane localization of PIN2. For MCY-LR treated Col-0 plants, the number of lateral root primordia but not of emergent laterals increased and lateral root primordia showed early development. In conclusion, inhibition of protein phosphatase activities changed PIN and auxin levels, thus altered root development. Previous data on aquatic plants naturally co-occurring with the cyanotoxin showed similar alterations of root development. Thus, our results on the model plant Arabidopsis give a mechanistic explanation of MCY-LR phytotoxicity in aquatic ecosystems. •Microcystin-LR (MCY-LR) is a strongly harmful cyanotoxin for many eukaryotes.•MCY-LR inhibited protein phosphatase activities in Col-0 Arabidopsis roots.•In consequence, PIN protein levels were altered within roots, affecting auxin levels.•MCY-LR altered root development without changing gravitropic bending in Col-0.•We discuss potential effects of such physiological changes in aquatic ecosystems.
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ISSN:0045-6535
1879-1298
DOI:10.1016/j.chemosphere.2021.130183