Juhel Guillaume, Davenport John, O'Halloran John, Culloty Sarah, Ramsay Ruth, James Kevin, Furey Ambrose, Allis Orla
Department of Zoology, Ecology and Plant Science, and Environmental Research Institute, University College Cork, Lee Maltings, Prospect Row, Cork, Ireland.
J Exp Biol. 2006 Mar;209(Pt 5):810-6. doi: 10.1242/jeb.02081.
Microcystins are produced by bloom-forming cyanobacteria and pose significant health and ecological problems. In this study we show that zebra mussels respond differently to different strains of Microcystis aeruginosa, and that a highly toxic strain causes zebra mussels to produce large quantities of mucous pseudofaeces, 'pseudodiarrhoea', that are periodically expelled hydraulically through the pedal gape by shell valve adductions rather than by the normal ciliary tracts. Analysis of the pseudofaecal ejecta showed that the proportion of Microcystis aeruginosa relative to Asterionella formosa was high in the pseudofaeces and even higher in the 'pseudodiarrhoea' when a mixed diet was given to the mussels. This confirms that very toxic Microcystis aeruginosa were preferentially being rejected by comparison with the non-toxic diatom in the pseudofaeces and even more so in the 'pseudodiarrhoea'. Such selective rejection was not observed with low or non-toxic strains and would therefore tend to enhance the presence of toxic Microcystis aeruginosa in mixed Microcystis aeruginosa cyanobacterial blooms, as well as transferring toxins from the water column to the benthos. The observed acute irritant response to the toxin represents the first demonstration of an adverse sublethal effect of microcystins on invertebrate ecophysiology. Our results also suggest that it could be a specific response to microcystin-LF, a little studied toxin variant.
微囊藻毒素由形成水华的蓝藻产生,会引发严重的健康和生态问题。在本研究中,我们发现斑马贻贝对不同菌株的铜绿微囊藻反应不同,并且一种高毒性菌株会导致斑马贻贝产生大量黏液性假粪便,即“假腹泻”,这些假粪便通过壳瓣内收经足孔以液压方式周期性排出,而非通过正常的纤毛通道。对假粪便排泄物的分析表明,当给贻贝投喂混合食物时,假粪便中铜绿微囊藻相对于美丽星杆藻的比例较高,而在“假腹泻”中该比例更高。这证实了与假粪便中的无毒硅藻相比,高毒性的铜绿微囊藻更易被优先排出,在“假腹泻”中更是如此。对于低毒或无毒菌株未观察到这种选择性排出,因此这可能会增加混合铜绿微囊藻蓝藻水华中有毒铜绿微囊藻的存在,同时将毒素从水柱转移到底栖生物中。观察到的对毒素的急性刺激反应首次证明了微囊藻毒素对无脊椎动物生态生理学有不利的亚致死效应。我们的结果还表明,这可能是对微囊藻毒素-LF(一种研究较少的毒素变体)的特异性反应。