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Microbial interactions and ecology within blooms of the toxic dinoflagellate Karenia brevis on the West Florida Shelf.

机译:西佛罗里达州架子上有毒的鞭毛藻短小花藻中的微生物相互作用和生态。

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摘要

The dinoflagellate Karenia brevis is capable of significant ecological and economic impacts in Florida waters where blooms typically occur. Blooms and cultures of K. brevis were sampled to determine the composition, production, and possible ecological function of bacteria and virus communities associated with K. brevis. Bacterial communities on the West Florida Shelf (WFS) were similar inside and outside K. brevis blooms, but primary and secondary (bacterial) production and bacteria and virus abundances were different depending on bloom stage. Bloom stages need to be identified so that discrete sampling events can be combined to characterize an entire bloom event. Within an initiating bloom bacterial production and mortality was high and viral abundance was low, suggesting that viral genomes were either within host cells or bacterial mortality was due to mixotrophic grazing by K. brevis or heterotrophic nanoflagellates. In a maintenance phase bloom the bacterial community was metabolically stressed, subject to increased viral infection, and most likely not being subjected to mixotrophic grazing. Bacterial communities associated with healthy K. brevis were dominated by the Cytophaga-Flavobacterium-Bacteroides (CFB) complex. As K. brevis shifted to stationary or senescing growth communities had higher proportions of Alphaproteobacteria. The SAR406 group, typically found in deep waters, was present in the surface waters of the WFS which supports existing K. brevis bloom formation hypotheses involving upwelling of deep waters from the mid to outer shelf. The CFB complex of bacteria also need to be further investigated as the consistent presence of CFB bacteria in both blooms and cultures of K. brevis suggest CFB bacteria are capable of numerous interactions with K. brevis. Furthermore, such interactions may be a vector of bloom control through viral infection; a high proportion of CFB bacteria would be ideal for density-dependent viral infection which could disrupt interactions between bacteria and K. brevis. Inoculating cultures of K. brevis, which included associated bacteria, with viral concentrates from the WFS showed differences in bacterial production and growth which indicate viruses are acting upon the bacterial community and not the dinoflagellates. Interactions between bacteria and K. brevis need to be further elucidated and explored for a better understanding of the role of each in dynamics of this harmful algal species. There may be a natural community succession amongst bacteria during blooms: utilizing certain indicator species to indicate bloom stage and transition between stages may aid in bloom forecasting and detection efforts.
机译:鞭毛短鞭毛藻能够在通常发生水华的佛罗里达水域产生重大的生态和经济影响。采样了K. brevis的花朵和培养物,以确定与K. brevis相关的细菌和病毒群落的组成,产量和可能的生态功能。西佛罗里达架(WFS)上的细菌群落在短小K. brevis花朵的内部和外部相似,但是主要和次要(细菌)生产以及细菌和病毒的丰度根据开花阶段而不同。需要确定起霜阶段,以便可以组合离散采样事件来表征整个起霜事件。在开始的开花过程中,细菌的产生和死亡率很高,而病毒的丰度却很低,这表明病毒基因组要么在宿主细胞内,要么细菌的死亡是由于短毛克鲁维酵母的混合营养放牧或异养纳米鞭毛虫造成的。在维持期开花期间,细菌群落在代谢上处于应激状态,易受病毒感染的增加,并且极有可能未经历混合营养性放牧。与健康的短螺旋体相关的细菌群落主要由噬菌丝-黄杆菌-拟杆菌(CFB)复合体主导。随着短K.brevis转移到固定或衰老的生长社区,α-变形杆菌的比例更高。 SAR406组通常存在于深水区,存在于WFS的地表水中,该水区支持现有的K. brevis短芽形成假说,涉及深水从中层到外层的上升。细菌的CFB细菌复合体也需要进一步研究,因为CFB细菌在短毛K.的开花和培养中始终存在,这表明CFB细菌能够与短K. K相互作用。此外,这种相互作用可能是通过病毒感染控制花开的载体。高比例的CFB细菌对于密度依赖性病毒感染可能是理想的选择,因为这种感染可能会破坏细菌与短螺旋体之间的相互作用。用来自世界粮食首脑会议的病毒浓缩液接种含有相关细菌的短毛K.菌培养物表明细菌产生和生长的差异,这表明病毒作用于细菌群落而不是鞭毛藻。需要进一步阐明和探索细菌与短毛K. brevis之间的相互作用,以更好地了解每种细菌在这种有害藻类动力学中的作用。花期期间细菌之间可能会有自然的群落演替:利用某些指示剂种类指示花期,各阶段之间的过渡可能有助于花期的预测和发现。

著录项

  • 作者

    Meyer, Kevin Anthony.;

  • 作者单位

    University of Maryland, College Park.;

  • 授予单位 University of Maryland, College Park.;
  • 学科 Biology Oceanography.;Environmental Sciences.;Biology Ecology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 333 p.
  • 总页数 333
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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