首页> 外文OA文献 >Ocean acidification increases the accumulation of toxic phenolic compounds across trophic levels, supplement to: Jin, Peng; Wang, Tifeng; Liu, Nana; Dupont, Sam; Beardall, John; Boyd, Philip W; Riebesell, Ulf; Gao, Kunshan (2015): Ocean acidification increases the accumulation of toxic phenolic compounds across trophic levels. Nature Communications, 6, 8714
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Ocean acidification increases the accumulation of toxic phenolic compounds across trophic levels, supplement to: Jin, Peng; Wang, Tifeng; Liu, Nana; Dupont, Sam; Beardall, John; Boyd, Philip W; Riebesell, Ulf; Gao, Kunshan (2015): Ocean acidification increases the accumulation of toxic phenolic compounds across trophic levels. Nature Communications, 6, 8714

机译:海洋酸化增加了营养水平上有毒酚类化合物的积累,补充至:Jin,Peng;王提凤刘娜娜杜邦,山姆;约翰·比尔德尔;博伊德(Philip W.乌尔里伯(Riebesell);高昆山(2015):海洋酸化增加了有营养水平的有毒酚类化合物的积累。自然通讯,6,8714

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摘要

Increasing atmospheric CO2 concentrations are causing ocean acidification (OA), altering carbonate chemistry with consequences for marine organisms. Here we show that OA increases by 46-212% the production of phenolic compounds in phytoplankton grown under the elevated CO2 concentrations projected for the end of this century, compared with the ambient CO2 level. At the same time, mitochondrial respiration rate is enhanced under elevated CO2 concentrations by 130-160% in a single species or mixed phytoplankton assemblage. When fed with phytoplankton cells grown under OA, zooplankton assemblages have significantly higher phenolic compound content, by about 28-48%. The functional consequences of the increased accumulation of toxic phenolic compounds in primary and secondary producers have the potential to have profound consequences for marine ecosystem and seafood quality, with the possibility that fishery industries could be influenced as a result of progressive ocean changes.
机译:大气中二氧化碳浓度的增加导致海洋酸化(OA),改变碳酸盐的化学性质,对海洋生物造成后果。在这里,我们表明,与环境中的CO2水平相比,在本世纪末预计的CO2浓度升高的情况下,浮游植物中的酚类化合物的酚含量可增加46-212%。同时,在单一物种或混合浮游植物组合中,CO 2浓度升高时,线粒体呼吸速率提高了130-160%。当饲喂在OA下生长的浮游植物细胞时,浮游动物组合的酚类化合物含量明显更高,约为28-48%。初级和次级生产者中有毒酚类化合物积累增加的功能后果有可能对海洋生态系统和海产品质量产生深远影响,并有可能由于逐步的海洋变化而影响渔业产业。

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