首页> 美国卫生研究院文献>Marine Drugs >Link between Domoic Acid Production and Cell Physiology after Exchange of Bacterial Communities between Toxic Pseudo-nitzschia multiseries and Non-Toxic Pseudo-nitzschia delicatissima
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Link between Domoic Acid Production and Cell Physiology after Exchange of Bacterial Communities between Toxic Pseudo-nitzschia multiseries and Non-Toxic Pseudo-nitzschia delicatissima

机译:有毒假单胞菌多菌种和无毒假单胞菌变种之间的细菌群落交换后海藻酸的产生与细胞生理之间的联系

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摘要

Bacteria are known to influence domoic acid (DA) production by Pseudo-nitzschia spp., but the link between DA production and physiology of diatoms requires more investigation. We compared a toxic P. multiseries to a non-toxic P. delicatissima, investigating links between DA production, physiological parameters, and co-occurring bacteria. Bacterial communities in cultures of both species were reduced by antibiotic treatment, and each of the diatoms was inoculated with the bacterial community of the other species. The physiology of P. delicatissima was minimally affected by the absence of bacteria or the presence of alien bacteria, and no DA was detected. P. multiseries grew faster without bacteria, did not produce a significant amount of DA, and exhibited physiological characteristics of healthy cells. When grown with alien bacteria, P. multiseries did not grow and produced more DA; the physiology of these cells was affected, with decreases in chlorophyll content and photosynthetic efficiency, an increase in esterase activity, and almost 50% mortality of the cells. The alien bacterial community had morphological and cellular characteristics very different from the original bacteria, and the number of free-living bacteria per algal cell was much higher, suggesting the involvement of bacteria in DA production.
机译:已知细菌会影响假单胞菌属(Pseudo-Nitzschia spp。)的二氢氰酸(DA)的产生,但是DA的产生与硅藻的生理之间的联系需要更多的研究。我们比较了有毒的体育假单胞菌和无毒的体育假单胞菌,研究了DA生产,生理参数和共生细菌之间的联系。通过抗生素处理,两个物种的培养物中的细菌群落都减少了,并且每个硅藻都接种了其他物种的细菌群落。不存在细菌或存在外来细菌的情况下,对P. delicatissima的生理影响最小,并且未检测到DA。无细菌的多系体育系列生长较快,没有产生大量的DA,并显示出健康细胞的生理特征。当与外来细菌一起生长时,多系列疟原虫不生长并产生更多的DA。这些细胞的生理受到影响,叶绿素含量和光合作用效率降低,酯酶活性增加,细胞死亡率几乎降低了50%。外来细菌群落具有与原始细菌非常不同的形态和细胞特征,并且每个藻细胞的自由生存细菌的数量更高,这表明细菌参与了DA的生产。

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