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Combined Effects of Ocean Warming and Acidification on Copepod Abundance Body Size and Fatty Acid Content

机译:海洋变暖和酸化对Co足类的丰度体型和脂肪酸含量的综合影响

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摘要

Concerns about increasing atmospheric CO2 concentrations and global warming have initiated studies on the consequences of multiple-stressor interactions on marine organisms and ecosystems. We present a fully-crossed factorial mesocosm study and assess how warming and acidification affect the abundance, body size, and fatty acid composition of copepods as a measure of nutritional quality. The experimental set-up allowed us to determine whether the effects of warming and acidification act additively, synergistically, or antagonistically on the abundance, body size, and fatty acid content of copepods, a major group of lower level consumers in marine food webs. Copepodite (developmental stages 1–5) and nauplii abundance were antagonistically affected by warming and acidification. Higher temperature decreased copepodite and nauplii abundance, while acidification partially compensated for the temperature effect. The abundance of adult copepods was negatively affected by warming. The prosome length of copepods was significantly reduced by warming, and the interaction of warming and CO2 antagonistically affected prosome length. Fatty acid composition was also significantly affected by warming. The content of saturated fatty acids increased, and the ratios of the polyunsaturated essential fatty acids docosahexaenoic- (DHA) and arachidonic acid (ARA) to total fatty acid content increased with higher temperatures. Additionally, here was a significant additive interaction effect of both parameters on arachidonic acid. Our results indicate that in a future ocean scenario, acidification might partially counteract some observed effects of increased temperature on zooplankton, while adding to others. These may be results of a fertilizing effect on phytoplankton as a copepod food source. In summary, copepod populations will be more strongly affected by warming rather than by acidifying oceans, but ocean acidification effects can modify some temperature impacts.
机译:关于大气中二氧化碳浓度增加和全球变暖的担忧已经开始研究多重压力相互作用对海洋生物和生态系统的影响。我们提出了一项跨因子分解的介观研究,并评估了变暖和酸化如何影响co足类的丰度,体型和脂肪酸组成,以此来衡量营养质量。实验设置使我们能够确定变暖和酸化的作用对whether足类的丰富度,体型和脂肪酸含量是否是相加,协同或拮抗作用,co足类是海洋食物网中的主要低水平消费者群体。变白粉岩(发育阶段1-5)和无节幼体的丰度受到变暖和酸化的不利影响。较高的温度降低了钴铁矿和无节幼体的丰度,而酸化部分补偿了温度效应。成年co足类的丰富度受到变暖的不利影响。 warm足动物的前体长度通过变暖而显着减​​少,并且变暖和CO2的相互作用拮抗了前体长度。脂肪酸组成也受升温的影响很大。随着温度的升高,饱和脂肪酸的含量增加,多不饱和必需脂肪酸二十二碳六烯酸(DHA)和花生四烯酸(ARA)与总脂肪酸含量的比率增加。此外,这两个参数对花生四烯酸具有显着的加性相互作用作用。我们的研究结果表明,在未来的海洋环境中,酸化可能会部分抵消某些观察到的温度升高对浮游动物的影响,同时还会增加其他影响。这些可能是作为浮足类食物来源的浮游植物受精作用的结果。总之,变暖而不是酸化海洋将对rather足类种群产生更大的影响,但是海洋酸化作用可以改变一些温度影响。

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