Allelopathy Journal

  • Year: 2007
  • Volume: 20
  • Issue: 2

Allelopathic interactions between Potamogeton maackianus and Microcystis aeruginosa

  • Author:
  • Z.B. Wu1,, S.H. Zhang1,2, X.H. Wu1, S.P. Cheng1, F. He1
  • Total Page Count: 12
  • DOI:
  • Page Number: 327 to 338

1State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan, 430072, China.

2Graduate School of the Chinese Academy of Sciences, Beijing, 100039, China.

*Correspondence Author: E-mail: wuzb@ihb.ac.cn.

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Abstract

The allelopathic interactions between Potamogeton maackianus and toxic cyanobacteria (Microcystis aeruginosa) were studied. P. maackianus inhibited the growth of M. aeruginosa, both in a coexistence culture system and in exudates experimental culture system. M. aeruginosa also showed effects on the secondary metabolic biosynthesis and secreting behavior of P. maackianus. The main lipophilic components of the hexane extracts and the exudates from the macrophyte were analyzed through GC-MS determination. The lipophilic components of the hexane extracts and the exudates from P. maackianus were influenced by M. aeruginosa or their released chemicals. Comparing the lipophilic constituents of the hexane extracts with those in the exudates, the results showed that weak polar compounds contained in the macrophytes can be secreted into the surrounding water. Many compounds, such as N-phenyl-2-naphthalenamine and isopropyl myristate, were detected both in the hexane extracts and the exudates. The changes of lipophilic components in the hexane extracts would be a response to the stress of toxic cyanobacteria or their released toxins. Those changes of exudates, especially the increased content of N-phenyl-2-naphthalenamine, might also be an induced defensive behavior mediated by the released toxins from M. aeruginosa. The study results about reciprocal allelopathic responses between macrophytes and cyanobacteria can help in the management of eutrophic waters, and is also important information concerning strategies for recovering eutrophic waters.

Keywords

Allelopathic activity, GC-MS, Microcystis aeruginosa, Potamogetonaceae, Potamogeton maackians