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首页> 外文期刊>Brazilian Journal of Biology >Feeding behavior of the invasive bivalve Limnoperna fortunei (Dunker, 1857) under exposure to toxic cyanobacteria Microcystis aeruginosa
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Feeding behavior of the invasive bivalve Limnoperna fortunei (Dunker, 1857) under exposure to toxic cyanobacteria Microcystis aeruginosa

机译:侵入性双壳类Limnoperna fortunei(Dunker,1857)在有毒蓝藻暴露下的摄食行为

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摘要

The aim of this study was to test the effects of cyanobacteria toxicity on feeding behavior of the golden mussel Limnoperna fortunei. First, it was tested the hypothesis that L. fortunei preferentially graze on non-toxic phytoplankton and reject toxic cyanobacteria. Second, it was tested the hypothesis that toxic cyanobacteria negatively affect feeding and survival of L. fortunei. The present study is the first to evaluate the effects of toxic cyanobacteria on L. fortunei feeding and survival. In the short-term grazing, golden mussel filtration rates were evaluated in the presence of toxic and non-toxic strains of cyanobacteria Microcystis aeruginosa, and non-toxic phytoplankton Nitzschia palea. Highest filtration rates were registered when mussels fed on Nitzschia. Despite that, golden mussel expelled Nitzschia cells in large quantities and preferentially ingested Microcystis cells, both toxic and non-toxic strains. In the long-term grazing, mussels were exposed to toxic and non-toxic strains of Microcystis during 5 days. Filtration rates were not significantly different for toxic and non-toxic Microcystis throughout exposure period. The results have demonstrated cyanobacteria toxicity is not the main factor influencing L. fortunei feeding behavior. Survival of L. fortunei feeding on toxic cyanobacteria shows the potential of this invasive bivalve as a vector to the transference of cyanotoxins to higher trophic levels.
机译:这项研究的目的是测试蓝细菌毒性对金贻贝Limnoperna fortunei摄食行为的影响。首先,检验了假单胞菌优先在无毒浮游植物上吃草并拒绝有毒蓝藻的假设。其次,检验了以下假设:有毒的蓝细菌会负面影响福氏乳杆菌的摄食和存活。本研究是第一个评估有毒蓝细菌对福氏乳杆菌摄食和存活的影响的研究。在短期放牧中,在有毒和无毒的蓝藻铜绿微囊藻和无毒浮游植物尼兹菌的存在下,评估了贻贝的金滤过率。以贻贝为食时,贻贝的过滤率最高。尽管如此,金贻贝仍大量排出了纳兹菌细胞,并优先摄入了有毒和无毒的微囊藻细胞。在长期放牧中,贻贝在5天内暴露于有毒和无毒的微囊藻菌株。在整个暴露期间,有毒和无毒微囊藻的过滤率没有显着差异。结果表明,蓝细菌毒性不是影响福氏乳杆菌摄食行为的主要因素。以有毒的蓝细菌为食的福氏乳酸杆菌的存活显示了这种侵入性双壳类作为将蓝藻毒素转移到更高营养水平的载体的潜力。

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