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有害蓝藻微囊藻有毒菌株与无毒菌株之间对光照的竞争。

Competition for light between toxic and nontoxic strains of the harmful cyanobacterium Microcystis.

作者信息

Kardinaal W Edwin A, Tonk Linda, Janse Ingmar, Hol Suzanne, Slot Pieter, Huisman Jef, Visser Petra M

机构信息

Aquatic Microbiology, Institute for Biodiversity and Ecosystem Dynamics, University of Amsterdam, Nieuwe Achtergracht 127, 1018 WS Amsterdam, The Netherlands.

出版信息

Appl Environ Microbiol. 2007 May;73(9):2939-46. doi: 10.1128/AEM.02892-06. Epub 2007 Mar 2.

Abstract

The cyanobacterium Microcystis can produce microcystins, a family of toxins that are of major concern in water management. In several lakes, the average microcystin content per cell gradually declines from high levels at the onset of Microcystis blooms to low levels at the height of the bloom. Such seasonal dynamics might result from a succession of toxic to nontoxic strains. To investigate this hypothesis, we ran competition experiments with two toxic and two nontoxic Microcystis strains using light-limited chemostats. The population dynamics of these closely related strains were monitored by means of characteristic changes in light absorbance spectra and by PCR amplification of the rRNA internal transcribed spacer region in combination with denaturing gradient gel electrophoresis, which allowed identification and semiquantification of the competing strains. In all experiments, the toxic strains lost competition for light from nontoxic strains. As a consequence, the total microcystin concentrations in the competition experiments gradually declined. We did not find evidence for allelopathic interactions, as nontoxic strains became dominant even when toxic strains were given a major initial advantage. These findings show that, in our experiments, nontoxic strains of Microcystis were better competitors for light than toxic strains. The generality of this finding deserves further investigation with other Microcystis strains. The competitive replacement of toxic by nontoxic strains offers a plausible explanation for the gradual decrease in average toxicity per cell during the development of dense Microcystis blooms.

摘要

蓝藻微囊藻能够产生微囊藻毒素,这是一类在水管理中备受关注的毒素。在一些湖泊中,每个细胞的平均微囊藻毒素含量从微囊藻水华开始时的高水平逐渐下降到水华高峰期的低水平。这种季节性动态可能是由有毒菌株向无毒菌株的演替导致的。为了探究这一假设,我们使用光照受限的恒化器对两种有毒和两种无毒的微囊藻菌株进行了竞争实验。通过吸光光谱的特征变化以及结合变性梯度凝胶电泳的rRNA内部转录间隔区的PCR扩增来监测这些密切相关菌株的种群动态,这使得能够识别和半定量竞争菌株。在所有实验中,有毒菌株在与无毒菌株争夺光照时失败。结果,竞争实验中的总微囊藻毒素浓度逐渐下降。我们没有发现化感相互作用的证据,因为即使有毒菌株在初始时具有主要优势,无毒菌株仍会成为优势菌株。这些发现表明,在我们的实验中,微囊藻的无毒菌株在争夺光照方面比有毒菌株更具竞争力。这一发现的普遍性值得用其他微囊藻菌株进一步研究。有毒菌株被无毒菌株竞争性取代,为密集的微囊藻水华发展过程中每个细胞平均毒性逐渐降低提供了一个合理的解释。

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