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On the population ecology of the toxigenic marine diatom genus Pseudo-nitzschia: Perspectives from the growth and mortality environments.

机译:关于有毒的海洋硅藻属伪尼兹菌的种群生态学:来自生长和死亡环境的观点。

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摘要

Diatoms in the toxigenic genus Pseudo-nitzschia are ubiquitous in the ocean. Blooms of Pseudo-nitzschia spp. have been seen in coastal and open-ocean ecosystems when other diatoms are restricted. Pseudo-nitzschia's ability to proliferate across such wide-ranging ecosystems suggests that through natural selection intrinsic properties are expressed in these toxic diatoms making them a highly competitive phytoplankter in the world's oceans. Here, the population ecology of Pseudo-nitzschia spp. was studied under multiple agents of selection operating from both the growth and mortality environment in the coastal Pacific Northwest. The goal of this thesis was to understand whether growth advantages or mortality reduction contributes most to Pseudo-nitzschia spp. abundance, distribution and persistence. I present data showing the results of 36 Pseudo-nitzschia-specific growth and microzooplankton grazing experiments. These data showed consistently moderate to high growth rates for Pseudo-nitzschia spp., similar to phytoplankton 5 mum, across wide-ranging environmental conditions. Simultaneously, Pseudo-nitzschia spp. microzooplankton grazing mortality rates, while variable, were always lower than Pseudo-nitzschia spp. growth. Pseudo-nitzschia spp. grazing rates were statistically similar to grazing rates on phytoplankton > 5 mum. In field and laboratory experiments the Pseudo-nitzschia-produced toxin, domoic acid, does not appear to affect microzooplankton grazers in the intracellular or dissolved phase. Laboratory experiments showed that grazing on toxigenic Pseudo-nitzschia spp. was species-specific. When the protist, Protoperidinium pellucidium, was offered both the non-toxic Pseudo-nitzschia pungens and the toxic Pseudo-nitzschia multiseries, it ingested and grew only on the toxic P.multiseries. Protoperidinium excentricum did not ingest either Pseudo-nitzschia spp. Pseudo-nitzschia spp. also appeared to escape intense grazing by the dominant calanoid copepod species from the study region. This was confirmed using electivity indices. Pseudo-nitzschia spp. in natural assemblages were either neutrally or negatively selected for by copepods, and this selection was not related to particulate domoic acid concentration. Copepods grazed heavily on microzooplankton, potentially further liberating Pseudo-nitzschia spp. from microzooplankton grazing. Given that Pseudo-nitzschia spp. growth rates were comparable to, and often higher than that of small phytoplankton, but grazing mortality was similar to large phytoplankton, I conclude that Pseudo-nitzschia spp. possess uniquely combined adaptive strategies, consistent with a continuum of both r- and K-selection.
机译:产假假丝孢菌属的硅藻在海洋中无处不在。拟南芥属物种的花朵。在其他硅藻受到限制的情况下,已经在沿海和开放海洋生态系统中看到这种现象。拟南芥在如此广泛的生态系统中繁殖的能力表明,通过自然选择,这些有毒硅藻表达了内在特性,使其成为世界海洋中极具竞争力的浮游植物。在这里,拟南芥属的种群生态学。在来自西北太平洋沿海地区的生长和死亡环境的多种选择因素下进行了研究。本文的目的是了解生长优势或死亡率降低是否对拟南芥有所贡献。丰富,分布和持久性。我提供的数据显示了36种拟南芥特有的生长和微浮游动物放牧实验的结果。这些数据表明,在广泛的环境条件下,假奈瑟菌属菌种的生长速率一直中等至高,类似于浮游植物<5毫米。同时,假念珠菌属。微浮游动物的放牧死亡率虽然有所变化,但始终低于假性尼兹菌属。增长。拟南芥属。放牧率在统计学上类似于浮游植物> 5微米时的放牧率。在野外和实验室实验中,假性奈瑟菌产生的毒素海藻酸似乎在细胞内或溶解阶段均不会影响微浮游动物放牧者。实验室实验表明,放牧对产假性假丝酵母属。是特定于物种的。当提供无毒的伪装假单胞菌和有毒的伪装假单胞菌两者的原生动物透明小球藻时,它仅在有毒的伪装多菌系列上摄取和生长。前中心外原卟啉没有摄取任何假性尼兹菌属。拟南芥属。似乎也逃脱了研究区域的主要cal足类co足类物种的强烈放牧。这是通过选择指数证实的。拟南芥属。 co足类动物在自然组合中选择中性或否定性,而这种选择与颗粒状二氢氰酸浓度无关。 pe足类动物在微浮游动物上大量放牧,有可能进一步解放拟南芥属。从microzooplankton放牧。鉴于假性尼兹菌属。生长速度与小型浮游植物相当,并且通常高于小型浮游植物,但是放牧死亡率与大型浮游植物相似。具有独特的组合自适应策略,与r和K选择的连续性一致。

著录项

  • 作者

    Olson, Michael Brady.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Biology Oceanography.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 165 p.
  • 总页数 165
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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