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中国滇池有毒微囊藻和微囊藻降解菌的生态动力学。

Ecological dynamics of toxic Microcystis spp. and microcystin-degrading bacteria in Dianchi Lake, China.

机构信息

State Key Laboratory of Freshwater Ecology and Biotechnology, Institute of Hydrobiology, The Chinese Academy of Sciences, Wuhan, People's Republic of China.

出版信息

Appl Environ Microbiol. 2014 Mar;80(6):1874-81. doi: 10.1128/AEM.02972-13. Epub 2014 Jan 10.

Abstract

Toxic cyanobacterial blooms directly threaten both human safety and the ecosystem of surface waters. The widespread occurrence of these organisms, coupled with the tumor-promoting properties of the microcystin toxins that they produce, demands action to mitigate their potential impacts and, thus, a robust understanding of their ecological dynamics. In the present work, the abundance of toxic Microcystis spp. and microcystin (MC)-degrading bacteria in Dianchi Lake, located in Yunnan Province, China, was studied using quantitative PCR. Samples were taken at monthly intervals from June 2010 to December 2011 at three sampling stations within this freshwater lake. Results revealed that variation in the abundance of both total Microcystis spp. and toxic Microcystis spp. exhibited similar trends during the period of the algal bloom, including the reinvasion, pelagic growth, sedimentation, and overwintering periods, and that the proportion of toxic Microcystis was highest during the bloom and lowest in winter. Importantly, we observed that peaks in mlrA gene copy numbers of MC-degrading bacteria occurred in the months following observed peaks in MC concentrations. To understand this phenomenon, we added MCs to the MC-degrading bacteria (designated strains HW and SW in this study) and found that MCs significantly enhanced mlrA gene copy numbers over the number for the control by a factor of 5.2 for the microcystin-RR treatment and a factor of 3.7 for the microcystin-LR treatment. These results indicate that toxic Microcystis and MC-degrading bacteria exert both direct and indirect effects on each other and that MC-degrading bacteria also mediate a shift from toxic to nontoxic populations of Microcystis.

摘要

有毒蓝藻水华直接威胁到人类安全和地表水生态系统。这些生物的广泛存在,加上它们产生的微囊藻毒素的促肿瘤特性,要求采取行动减轻其潜在影响,因此需要对其生态动态有深入的了解。在本工作中,采用定量 PCR 方法研究了中国云南省滇池中有毒微囊藻属和微囊藻毒素(MC)降解细菌的丰度。于 2010 年 6 月至 2011 年 12 月在该淡水湖中三个采样点每月采集一次水样。结果表明,在藻类大量繁殖期间,总微囊藻属和有毒微囊藻属的丰度变化呈现出相似的趋势,包括再入侵、浮游生长、沉淀和越冬期,有毒微囊藻的比例在繁殖高峰期最高,冬季最低。重要的是,我们观察到 MC 降解细菌的 mlrA 基因拷贝数在 MC 浓度的高峰后几个月出现高峰。为了理解这一现象,我们将 MC 添加到 MC 降解细菌(在本研究中指定为 HW 和 SW 菌株)中,发现 MC 处理显著提高了 mlrA 基因拷贝数,微囊藻毒素-RR 处理提高了 5.2 倍,微囊藻毒素-LR 处理提高了 3.7 倍。这些结果表明,有毒微囊藻和 MC 降解细菌相互之间存在直接和间接的影响,MC 降解细菌还介导了微囊藻从有毒种群向无毒种群的转变。

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