Induction of Phlorotannins and Gene Expression in the Brown Macroalga Fucus vesiculosus in Response to the Herbivore Littorina littorea

Mechanisms related to the induction of phlorotannin biosynthesis in marine brown algae remain poorly known. Several studies undertaken on fucoid species have shown that phlorotannins accumulate in the algae for several days or weeks after being exposed to grazing, and this is measured by direct quan...

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Veröffentlicht in:Marine drugs 2021-03, Vol.19 (4), p.185
Hauptverfasser: Emeline, Creis Bendelac, Ludovic, Delage, Laurent, Vallet, Catherine, Leblanc, Kruse, Inken, Erwan, Ar Gall, Florian, Weinberger, Philippe, Potin
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Sprache:eng
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Zusammenfassung:Mechanisms related to the induction of phlorotannin biosynthesis in marine brown algae remain poorly known. Several studies undertaken on fucoid species have shown that phlorotannins accumulate in the algae for several days or weeks after being exposed to grazing, and this is measured by direct quantification of soluble phenolic compounds. In order to investigate earlier inducible responses involved in phlorotannin metabolism, was studied between 6 and 72 h of grazing by the sea snail . In this study, the quantification of soluble phenolic compounds was complemented by a Quantitative real-time PCR (qRT-PCR) approach applied on genes that are potentially involved in either the phlorotannin metabolism or stress responses. Soluble phlorotannin levels remained stable during the kinetics and increased significantly only after 12 h in the presence of grazers, compared to the control, before decreasing to the initial steady state for the rest of the kinetics. Under grazing conditions, the expression of , and genes was upregulated, respectively, at 6 h, 12 h and 24 h, and gene was downregulated after 72 h. Interestingly, the gene involved in the synthesis of phloroglucinol was overexpressed under grazing conditions after 24 h and 72 h. This study supports the hypothesis that phlorotannins are able to provide an inducible chemical defense under grazing activity, which is regulated at different stages of the stress response.
ISSN:1660-3397
1660-3397
DOI:10.3390/md19040185