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Cyanobacteria can allelopathically inhibit submerged macrophytes: effects of Microcystis aeruginosa extracts and exudates on Potamogeton malaianus.

机译:蓝细菌可以化感作用抑制淹没的大型植物:铜绿微囊藻提取物和渗出物对褐藻Potamogeton malaianus的影响。

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摘要

Submerged macrophytes are known for their positive effects on water clarity, especially in shallow lake ecosystems. Eutrophication of these systems, however, has often resulted in a decline of submerged vegetation and a dominance of cyanobacteria, producing and releasing allelopathically active substances. Whether and how these allelochemicals affect submerged macrophytes is, however, largely unknown. We tested the effect of exudates and extracts of one of the most common cyanobacteria species, Microcystis aeruginosa, on seed germination and seedling growth and photosynthesis of the submerged macrophyte Potamogeton malaianus, a common species in Chinese shallow lakes. We found that: (1) low and high exudate concentrations significantly promoted or inhibited P. malaianus seed germination, respectively, while extracts had no effect; (2) low exudate and medium extract concentrations significantly increased, whereas high concentrations decreased the biomass of P. malaianus seedlings; (3) chlorophyll content and maximum quantum yield of PS II (Fv/Fm) of the seedlings were decreased by all levels of exudates; (4) of the various responses tested, seedling leaf Fv/Fm showed the greatest sensitivity to M. aeruginosa allelochemicals; (5) the allelopathic effects of M. aeruginosa exudates were stronger than those of extracts. Our results indicate that cyanobacteria exudates can allelopathically inhibit submerged macrophytes. The early growth of seedlings rather than seed germination seems to be a sensitive phase for the impact of cyanobacterial allelochemicals.
机译:沉水植物以其对水质的积极作用而闻名,尤其是在浅湖生态系统中。然而,这些系统的富营养化常常导致淹没的植被减少和蓝细菌的优势,从而产生和释放化感活性物质。这些化学物质是否以及如何影响沉水植物尚不清楚。我们测试了最常见的蓝细菌物种之一的铜绿微囊藻的分泌物和提取物,对中国浅水湖泊中常见的沉水植物Potamogeton malaianus种子的萌发,幼苗生长和光合作用的影响。我们发现:(1)低和高浓度的渗出液分别显着促进或抑制了疟原虫种子的萌发,而提取物则没有作用; (2)低渗液和中等提取物浓度显着增加,而高浓度则降低了疟原虫幼苗的生物量; (3)所有渗出液水平均降低了幼苗的叶绿素含量和PS II的最大量子产量(F v / F m ); (4)在测试的各种响应中,幼苗叶片F v / F m 对铜绿假单胞菌化感物质的敏感性最高。 (5)铜绿假单胞菌渗出物的化感作用强于提取物。我们的结果表明,蓝细菌渗出液可以化感抑制沉水植物。幼苗的早期生长而不是种子发芽似乎是对蓝藻化感物质影响的敏感阶段。

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