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首页> 外文期刊>Harmful Algae >Response of cylindrospermopsin production and release in Aphanizomenon flos-aquae (Cyanobacteria) to varying light and temperature conditions
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Response of cylindrospermopsin production and release in Aphanizomenon flos-aquae (Cyanobacteria) to varying light and temperature conditions

机译:蓝藻藻蓝藻中蓝藻精胃蛋白酶的产生和释放对变化的光照和温度条件的响应

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The influence of light and temperature on the cylindrospermopsin (CYN) production of two Aphanizomenon flos-aquae strains, isolated from North-eastern German lakes, was investigated with semi-continuously growing cultures. A light gradient from 10 to 60 μE m~(-2) s~(-1) in combination with temperatures of 16, 20, and 25 ℃ was tested.rnCYN concentrations varied by a maximum factor of 2.7 in strain 10E9 with a significant decrease with increasing temperature. Strain 22D11 showed less pronounced changes, i.e. by a factor of 1.6, and without clear relationship to temperature.rnReaction patterns of CYN production to changing light intensities are different at different temperatures. In both strains CYN concentrations increase significantly at 20 ℃ between 10 and 60 μE m~(-2) s~(-1), whereas they decrease significantly at 25 ℃ in the same light gradient. The amount of synthesised CYN is not reflected by growth rates of the strains in a uniform manner. Nonetheless several temperature-light combinations which constitute physiological stress seem to trigger CYN production and particularly CYN release from cells. The lowest growth rate observed at 16 ℃ and 60 μE m~(-2) s~(-1) of strain 22D11 may reflect photoinhibition due to the lower temperature and related limited CO_2-fixation. Under these conditions, extracellular CYN concentrations increased to 58% of total CYN, while the share of extracellular CYN of all other light and temperature regimes was 11-26%. From the results and the experimental design we conclude an active release of the toxin into medium to be more likely than mere leakage from cells.
机译:用半连续生长的培养物研究了光和温度对从德国东北湖中分离出的两种Aphanizomenon flos-aquae菌株的圆柱精藻(CYN)产量的影响。在16、20和25℃的温度下,测试了10至60μEm〜(-2)s〜(-1)的光梯度。菌株10E9中rnCYN浓度变化最大为2.7,显着随着温度升高而降低。菌株22D11显示出不太明显的变化,即1.6倍,并且与温度没有明显的关系。在不同温度下,CYN产生对改变光强度的反应模式是不同的。在两种菌株中,CYN浓度在20℃时在10和60μEm〜(-2)s〜(-1)之间均显着增加,而在相同光梯度下,在25℃时CYN浓度则显着降低。菌株的生长速率不能以均匀的方式反映出CYN的合成量。然而,构成生理应激的几种温度-光组合似乎触发了CYN的产生,尤其是CYN从细胞中的释放。在16℃和60μEm〜(-2)s〜(-1)菌株22D11中观察到的最低生长速率可能反映了较低的温度和相关的有限CO_2固定引起的光抑制。在这些条件下,细胞外CYN浓度增加到总CYN的58%,而在所有其他光照和温度条件下细胞外CYN的份额为11-26%。根据结果​​和实验设计,我们得出结论,毒素主动释放到培养基中的可能性要比仅仅从细胞中泄漏出来的可能性更大。

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