首页> 外文期刊>Polish Journal of Environmental Studies >Influence of Conditioned Media of Halomonas sp. DH-e on Phycosphere Bacterial Community Dynamics of Prorocentrum donghaiense
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Influence of Conditioned Media of Halomonas sp. DH-e on Phycosphere Bacterial Community Dynamics of Prorocentrum donghaiense

机译:Halomonas SP条件培养基的影响。 DH-E关于Prorocentrum Dongaienstrum的植物晶间细菌群落动态

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Prorocentrum donghaiense has become one of the major algae that cause phytoplankton blooms. A marine bacterium, Halomonas sp. DH-e with high algicidal activity to P. donghaiense was isolated in previous studies. However, the mechanism underlying the algicidal activity of DH-e was unknown. In the present study, the post-culture medium of DH-e was supplemented into the culture of P. donghaiense. Samples of algae cells and phycosphere bacteria were collected at different times. Illumina Miseq sequencing was used to evaluate bacterial community dynamics in the phycosphere of microalgae. Taxonomic analysis identified 3 phyla, including Proteobacteria, Bacteroidetes and Verrucomicrobia, with Proteobacteria dominating and accounting for more than 95% of all bacterial species. Alteromonadaceae increased gradually, while Rhodobacteraceae decreased during the culture with the post- culture medium. Principal component analysis suggested that bacterial community composition was similar during 0-12 h, but changed significantly at 24 h, 36 h and 48 h. Redundancy analysis revealed a close correlation between phycosphere bacterial community composition and pH, chlorophyll a and algae cell mass. In conclusion, the results suggested that algicidal activity of DH-e was mediated via the secretion of unidentified components in the post-culture medium, which induced variation of phycosphere bacterial community and subsequently contributed to the lysis of algae cells.
机译:Prorocentrum dongaiense已成为导致Phytoplankton Blooms的主要藻类之一。海洋细菌,卤代菌。在以前的研究中分离出冬奈塞的高杀虫活性的DH-E。然而,DH-E的杀虫活性的机制未知。在本研究中,DH-E的培养基培养基被补充到P. Dongaiense的培养物中。在不同的时间收集藻类细胞和植晶细菌的样品。 Illumina miseq测序用于评估微藻植物叶片的细菌群落动态。分类学分析确定了3个植物,包括蛋白质细菌,菌株和疣状病症,具有促菌占主导地位,占所有细菌种类的95%以上。 Altomonadaceae逐渐增加,而培养培养基期间的乳酸基氏菌减少。主要成分分析表明,在0-12小时内,细菌群落组合物相似,但在24小时,36小时和48小时内显着变化。冗余分析揭示了植晶体细菌群落组成和pH,叶绿素A和藻类细胞质量之间的紧密相关性。总之,结果表明,通过在培养基后培养基中的未鉴定组分分泌介导的DH-E的抗原活性,该培养基诱导植物间细菌群落的变异,随后导致藻类细胞的裂解。

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