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在分散和未分散原油影响下,异帽藻属(Heterocapsa sp.)以及相关附着和自由生活细菌的动态变化。

Dynamics of Heterocapsa sp. and the associated attached and free-living bacteria under the influence of dispersed and undispersed crude oil.

作者信息

Severin T, Bacosa H P, Sato A, Erdner D L

机构信息

Marine Science Institute, The University of Texas at Austin, Port Aransas, TX, USA.

出版信息

Lett Appl Microbiol. 2016 Dec;63(6):419-425. doi: 10.1111/lam.12661. Epub 2016 Nov 3.

Abstract

UNLABELLED

While many studies have examined the impact of oil on phytoplankton or bacteria, very few considered the effects on the biological complex formed by phytoplankton and their associated phytoplankton-attached (PA) and free-living (FL) bacteria. However, associated bacteria can affect the physiology of phytoplankton and influence their stress responses. In this study, we monitored the growth of Heterocapsa sp., an armoured dinoflagellate, exposed to crude oil, Corexit dispersant, or both. Growth of Heterocapsa sp. is unaffected by crude oil up to 25 ppm, a concentration similar to the lower range measured on Florida beaches after the Deepwater Horizon oil spill. The PA bacteria community was resistant to exposure, whereas the FL community shifted towards oil degraders; both responses could contribute to Heterocapsa sp. oil resistance. The growth rate of Heterocapsa sp. decreased significantly only when exposed to dispersed oil at 25 ppm, indicating a synergistic effect of dispersant on oil toxicity in this organism. For the first time, we demonstrated the decoupling of the responses of the PA and FL bacteria communities after exposure to an environmental stress, in this case oil and dispersant. Our findings suggest new directions to explore in the understanding of interactions between unicellular eukaryotes and prokaryotes.

SIGNIFICANCE AND IMPACT OF THE STUDY

In the environment, oil spills have the capacity to modify phytoplankton communities, with important consequences on the food web and the carbon cycle. We are just beginning to understand the oil resistance of phytoplankton species, making it difficult to predict community response. In this study we highlighted the strong resistance of Heterocapsa sp. to oil, which could be associated with its resilient attached bacteria and oil degradation by the free-living bacteria. This finding suggests new directions to explore in the understanding of oil impacts and interactions between eukaryotic and prokaryotic microbes.

摘要

未标注

虽然许多研究考察了石油对浮游植物或细菌的影响,但很少有研究考虑其对浮游植物及其相关的附着于浮游植物的(PA)和自由生活的(FL)细菌所形成的生物复合体的影响。然而,相关细菌会影响浮游植物的生理机能并影响其应激反应。在本研究中,我们监测了一种有甲藻——异帽藻(Heterocapsa sp.)在暴露于原油、Corexit分散剂或两者时的生长情况。高达25 ppm的原油对异帽藻的生长没有影响,这一浓度与“深水地平线”漏油事件后在佛罗里达海滩测得的较低浓度范围相似。PA细菌群落对暴露具有抗性,而FL群落则向石油降解菌转变;这两种反应都可能有助于异帽藻对石油的抗性。仅当异帽藻暴露于25 ppm的分散油时,其生长速率才会显著下降,这表明分散剂对该生物体中石油毒性具有协同作用。我们首次证明了在暴露于环境应激(在本案例中为石油和分散剂)后,PA和FL细菌群落的反应出现了解耦。我们的研究结果为探索单细胞真核生物与原核生物之间的相互作用指明了新方向。

研究的意义和影响

在环境中,石油泄漏有能力改变浮游植物群落,对食物网和碳循环产生重要影响。我们才刚刚开始了解浮游植物物种的抗油性,这使得预测群落反应变得困难。在本研究中,我们强调了异帽藻对石油的强大抗性,这可能与其具有弹性的附着细菌以及自由生活细菌的石油降解作用有关。这一发现为探索石油影响以及真核和原核微生物之间的相互作用指明了新方向。

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