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Contrasting Responses of Marine and Freshwater Photosynthetic Organisms to UVB Radiation: A Meta-Analysis

机译:海洋和淡水光合生物对UVB辐射的对比响应:荟萃分析

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摘要

Ultraviolet-B (UVB) radiation is a global stressor that has profound impacts on freshwater and marine ecosystems. However, an analysis of the patterns of sensitivity to UVB radiation across aquatic photosynthetic organisms has not yet been published. Here, we performed a meta-analysis on results reported in 214 studies compiled from the published literature to quantify and compare the magnitude of responses of aquatic photosynthetic organisms to changes in UVB radiation. The meta-analysis was conducted on observations of marine (n = 893) and freshwater macroalgae (n = 126) and of marine (n = 1,087) and freshwater (n = 2,889) microalgae (total n = 4,995). Most of these studies (85%) analyzed the performance of organisms exposed to natural solar radiation when UVB was partially or totally reduced compared with the organismal performance under the full solar radiation spectrum, whereas the remaining 15% of the studies examined the responses of organisms to elevated UVB radiation mostly using artificial lamps. We found that marine photosynthetic organisms tend to be more sensitive than freshwater photosynthetic organisms to UVB radiation; responses to either decreased or increased UVB radiation vary among taxa; the mortality rate is the most sensitive of the trait responses to elevated UVB radiation, followed by changes in cellular and molecular traits; the sensitivity of microalgae to UVB radiation is dependent on size, with small-celled microalgae more sensitive than large-celled microalgae to UVB radiation. Thick macroalgae morphotypes were the less sensitive to UVB, but this effect could not be separated from phylogenetic differences. The high sensitivity of marine species, particularly the smallest photosynthetic organisms, to increased UVB radiation suggests that the oligotrophic ocean, a habitat comprising 70% of the world's oceans with high UVB penetration and dominated by picoautotrophs, is extremely vulnerable to changes in UVB radiation.
机译:紫外线B(UVB)辐射是一种全球压力源,对淡水和海洋生态系统产生深远影响。但是,尚未发表对水生光合生物对UVB辐射的敏感性模式的分析。在这里,我们对从已发表的文献中收集的214项研究报告的结果进行了荟萃分析,以量化和比较水生光合生物对UVB辐射变化的响应幅度。荟萃分析是对海洋(n = 893)和淡水大型藻类(n = 126)以及海洋(n = 1,087)和淡水(n = 2,889)微藻类(总计n = 4,995)的观测值进行的。这些研究中的大多数(85%)分析了在紫外线辐射被部分或完全减少时,暴露于自然太阳辐射下的生物的性能,而不是整个太阳辐射光谱下的生物性能,而其余15%的研究则检查了生物的反应UVB辐射升高,主要是使用人造灯。我们发现海洋光合生物比淡水光合生物对UVB辐射更敏感。对UVB辐射减少或增加的反应因类群而异;死亡率是对UVB辐射升高的性状反应最敏感的,其次是细胞和分子性状的变化。微藻对UVB辐射的敏感性取决于大小,小细胞微藻比大细胞微藻对UVB辐射更敏感。厚大的藻类形态对UVB的敏感性较弱,但这种影响无法与系统发育差异区分开。海洋物种,尤其是最小的光合生物对UVB辐射的高度敏感性表明,贫营养化海洋极易受到UVB辐射变化的影响,该贫营养化海洋是世界上70%的UVB渗透率很高且由皮自养生物主导的栖息地。

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