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首页> 外文期刊>New Zealand Journal of Marine and Freshwater Research >Short-term and diurnal temperature changes alter the response of harmful algal blooms of Pseudo-nitzschia pungens to solar ultraviolet radiation
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Short-term and diurnal temperature changes alter the response of harmful algal blooms of Pseudo-nitzschia pungens to solar ultraviolet radiation

机译:短期和日间温度变化改变了伪Nitzschia pungens对太阳紫外线辐射的有害藻类绽放的反应

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In this study, we explored the interactive effects of temperature and solar ultraviolet radiation (UVR) on the growth, pigment contents, photochemical efficiency and non-photochemical quenching (NPQ) of Pseudo-nitzschia pungens, which forms harmful algal blooms globally. Cells were first pre-acclimated to temperatures of 20 degrees C, 25 degrees C or 28 degrees C for 10 days. They were then exposed to three different types of solar radiation for 60 min. We then measured the photochemical efficiency of the cells during the 60-min exposure and a 360-min recovery period under dim light (20 mu mol photons m(-2) s(-1)). In addition, we analysed the diural change in photochemical efficiency and NPQ over a 10-h period. We found that P. pungens that were exposed to higher temperatures in the short term (i.e. 20-25 degrees C, 20-28 degrees C and 25-28 degrees C) or long term (i.e. 25-25 degrees C and 28-28 degrees C) exhibited lower levels of photoinhibition and faster recovery rates than samples exposed to a lower temperature (i.e. 20-20 degrees C). This indicated that the deleterious effects of UVR can be minimised by both chronic and acute exposure to higher temperatures within the tolerated temperature range for P. pungens.
机译:在这项研究中,我们探讨了温度和太阳能紫外线辐射(UVR)对伪尼茨基亚泛苯醌的生长,颜料含量,光化学效率和非光化学淬火(NPQ)的互动影响,这在全球范围内形成有害的藻类盛开。首先将细胞预先适应20℃,25℃或28℃的温度10天。然后将它们暴露于三种不同类型的太阳辐射60分钟。然后,我们在60分钟的曝光期间测量细胞的光化学效率和在昏暗的灯光下的360分钟恢复周期(20μmmol光子M(-2)(-1))。此外,我们在10-H期间分析了光化学效率和NPQ的多元变化。我们发现,在短期内暴露于较高温度的P.Pingens(即20-25℃,20-28℃和25-28℃)或长期(即25-25℃和28-28度C)表现出低于暴露于较低温度(即20℃)的样品的较低水平的光抑制和更快的回收率。这表明通过慢性和急性暴露于P.Pungens的耐受温度范围内的慢性和急性暴露,可以最小化UVR的有害效果。

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