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在不同磷酸盐条件下砷酸盐对微囊藻PCC7806菌株微囊藻毒素含量及泄漏的影响。

Effects of arsenate on microcystin content and leakage of Microcystis strain PCC7806 under various phosphate regimes.

作者信息

Gong Yan, Song Lirong, Wu Xingqiang, Xiao Bangding, Fang Tao, Liu Jiantong

机构信息

Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, People's Republic of China.

出版信息

Environ Toxicol. 2009 Feb;24(1):87-94. doi: 10.1002/tox.20392.

Abstract

Both arsenic pollution and eutrophication are prominent environmental issues when considering the problem of global water pollution. It is important to reveal the effects of arsenic species on cyanobacterial growth and toxin yields to assess ecological risk of arsenic pollution or at least understand naturally occurring blooms. The sensitivity of cyanobacteria to arsenate has often been linked to the structural similarities of arsenate and phosphate. Thus, we approached the effect of arsenate with concentrations from 10(-8) to 10(-4) M on Microcystis strain PCC7806 under various phosphate regimes. The present study showed that Microcystis strain PCC7806 was arsenate tolerant up to 10(-4) M. And such tolerance was without reference to both content of intra- and extra-cellular phosphate. It seems that arsenate involved the regulation of microcystin synthesis and cellular polyphosphate contributed to microcystin production of Microcystis responding to arsenate, since there was a positive linear correlation of the cellular microcystin quota with the exposure concentration of arsenate when the cells were not preconditioned to phosphate starvation. It is presumed that arsenate could help to actively export microcystins from living Microcystis cells when preconditioned to phosphate starvation and incubated with the medium containing 1 microM phosphate. This study firstly provided evidence that microcystin content and/or release of Microcystis might be impacted by arsenate if it exists in harmful algal blooms.

摘要

在考虑全球水污染问题时,砷污染和富营养化都是突出的环境问题。揭示砷形态对蓝藻生长和毒素产量的影响,对于评估砷污染的生态风险或至少了解自然发生的水华现象具有重要意义。蓝藻对砷酸盐的敏感性通常与砷酸盐和磷酸盐的结构相似性有关。因此,我们研究了在不同磷酸盐条件下,浓度为10(-8)至10(-4)M的砷酸盐对微囊藻PCC7806菌株的影响。本研究表明,微囊藻PCC7806菌株对高达10(-4)M的砷酸盐具有耐受性。而且这种耐受性与细胞内和细胞外磷酸盐的含量均无关。似乎砷酸盐参与了微囊藻毒素合成的调节,并且细胞内多磷酸盐有助于微囊藻对砷酸盐作出反应时产生微囊藻毒素,因为当细胞未预先适应磷酸盐饥饿时,细胞微囊藻毒素配额与砷酸盐暴露浓度呈正线性相关。据推测,当预先适应磷酸盐饥饿并与含有1 microM磷酸盐的培养基一起孵育时,砷酸盐可以帮助从活的微囊藻细胞中主动输出微囊藻毒素。本研究首次提供了证据,表明如果砷酸盐存在于有害藻华中,可能会影响微囊藻的微囊藻毒素含量和/或释放。

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