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Is photosynthesis a requirement for paralytic shellfish toxin production in the dinoflagellate Alexandrium minutum algal-bacterial consortium

机译:光合作用是鞭毛甲藻亚历山大藻藻-细菌联盟中产生麻痹性贝类毒素的必要条件吗

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摘要

While there is increasing evidence that marine bacteria are involved in the production of paralytic shellfish toxins in algal blooms, the exact roles of the bacteria and microalgae have proved elusive. A novel experimental approach to this problem involved incubating parallel cultures of toxin producing Alexandrium minutum Anokoha A in the dark and in a natural daylight cycle. High-performance liquid chromatography was used to measure paralytic shellfish toxins while bacterial growth was monitored by culture on high- and low-nutrient agar media. After a 22-day incubation period in the dark, A. minutum Anokoha A failed to produce saxitoxin while parallel light-grown cultures produced 1.17 og per 10,000 algal cells. However, both dark- and light-grown cultures showed comparable gonyautoxin production. Copiotrophic and oligotrophic algal-associated bacteria showed similar growth patterns over the incubation period except that a dip in bacterial numbers corresponded to a peak in algal numbers in the light-grown cultures. It appears that inhibition of photosynthesis resulted in changes in the toxin profile of A. minutum Anokoha A. When used with other methods, this approach may help to elucidate the algal-bacterial-toxin connection.
机译:虽然越来越多的证据表明海洋细菌参与藻华中麻痹性贝类毒素的产生,但事实证明,细菌和微藻的确切作用难以捉摸。解决此问题的一种新颖的实验方法涉及在黑暗中和自然日光下孵育平行培养产生毒素的亚历山大藻Anokoha A的平行培养物。高效液相色谱法用于测定麻痹性贝类毒素,同时通过在高营养和低营养琼脂培养基上培养来监测细菌的生长。在黑暗中孵育22天后,A。minutum Anokoha A无法产生沙毒素,而平行的光生培养物每10,000个藻类细胞产生1.17 og。但是,深色和浅色培养物均显示出可比的淋菌毒素产生。伴营养型和寡营养型藻类相关细菌在温育期间显示出相似的生长模式,只是细菌数量的下降对应于在轻生培养物中藻类数量的峰值。似乎光合作用的抑制导致了A. minutum Anokoha A毒素谱的变化。当与其他方法一起使用时,这种方法可能有助于阐明藻-细菌-毒素的联系。

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