Literature DB >> 29724344

Succession and toxicity of Microcystis and Anabaena (Dolichospermum) blooms are controlled by nutrient-dependent allelopathic interactions.

Mathias A Chia1, Jennifer G Jankowiak2, Benjamin J Kramer2, Jennifer A Goleski2, I-Shuo Huang3, Paul V Zimba3, Maria do Carmo Bittencourt-Oliveira4, Christopher J Gobler5.   

Abstract

Microcystis and Anabaena (Dolichospermum) are among the most toxic cyanobacterial genera and often succeed each other during harmful algal blooms. The role allelopathy plays in the succession of these genera is not fully understood. The allelopathic interactions of six strains of Microcystis and Anabaena under different nutrient conditions in co-culture and in culture-filtrate experiments were investigated. Microcystis strains significantly reduced the growth of Anabaena strains in mixed cultures with direct cell-to-cell contact and high nutrient levels. Cell-free filtrate from Microcystis cultures proved equally potent in suppressing the growth of nutrient replete Anabaena cultures while also significantly reducing anatoxin-a production. Allelopathic interactions between Microcystis and Anabaena were, however, partly dependent on ambient nutrient levels. Anabaena dominated under low N conditions and Microcystis dominated under nutrient replete and low P during which allelochemicals caused the complete suppression of nitrogen fixation by Anabaena and stimulated glutathione S-transferase activity. The microcystin content of Microcystis was lowered with decreasing N and the presence of Anabaena decreased it further under low P and high nutrient conditions. Collectively, these results indicate that strong allelopathic interactions between Microcystis and Anabaena are closely intertwined with the availability of nutrients and that allelopathy may contribute to the succession, nitrogen availability, and toxicity of cyanobacterial blooms.
Copyright © 2018 The Authors. Published by Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Anatoxin; Aquatic ecosystems; Cyanotoxins; Diazotrophs; Glutathione S-transferase; Interspecific competitions; Microcystin; Phytoplankton

Mesh:

Substances:

Year:  2018        PMID: 29724344     DOI: 10.1016/j.hal.2018.03.002

Source DB:  PubMed          Journal:  Harmful Algae        ISSN: 1568-9883            Impact factor:   4.273


  12 in total

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4.  The Individual and Combined Effects of the Cyanotoxins, Anatoxin-a and Microcystin-LR, on the Growth, Toxin Production, and Nitrogen Fixation of Prokaryotic and Eukaryotic Algae.

Authors:  Mathias Ahii Chia; Benjamin J Kramer; Jennifer G Jankowiak; Maria do Carmo Bittencourt-Oliveira; Christopher J Gobler
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5.  Stringent Response Regulates Stress Resistance in Cyanobacterium Microcystis aeruginosa.

Authors:  Hui Jin; Yong Min Lao; Ke Zhen Ying; Jin Zhou; Zhong Hua Cai
Journal:  Front Microbiol       Date:  2020-11-12       Impact factor: 5.640

6.  Diversity Assessment of Toxic Cyanobacterial Blooms during Oxidation.

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8.  Dynamic Responses of Endosymbiotic Microbial Communities Within Microcystis Colonies in North American Lakes to Altered Nitrogen, Phosphorus, and Temperature Levels.

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10.  The Composition and Function of Microbiomes Within Microcystis Colonies Are Significantly Different Than Native Bacterial Assemblages in Two North American Lakes.

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Journal:  Front Microbiol       Date:  2020-05-28       Impact factor: 5.640

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