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Viral attack exacerbates the susceptibility of a bloom-forming alga to ocean acidification

机译:病毒攻击加剧了形成大花藻的藻类对海洋酸化的敏感性

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Both ocean acidification and viral infection bring about changes in marine phytoplankton physiological activities and community composition. However, little information is available on how the relationship between phytoplankton and viruses may be affected by ocean acidification and what impacts this might have on photosynthesis-driven marine biological CO2 pump. Here, we show that when the harmful bloom alga Phaeocystis globosa is infected with viruses under future ocean conditions, its photosynthetic performance further decreased and cells became more susceptible to stressful light levels, showing enhanced photoinhibition and reduced carbon fixation, up-regulation of mitochondrial respiration and decreased virus burst size. Our results indicate that ocean acidification exacerbates the impacts of viral attack on P. globosa, which implies that, while ocean acidification directly influences marine primary producers, it may also affect them indirectly by altering their relationship with viruses. Therefore, viruses as a biotic stressor need to be invoked when considering the overall impacts of climate change on marine productivity and carbon sequestration.
机译:海洋酸化和病毒感染都引起海洋浮游植物生理活动和群落组成的变化。但是,关于浮游植物与病毒之间的关系如何受到海洋酸化影响以及这可能对光合作用驱动的海洋生物二氧化碳泵产生什么影响的信息很少。在这里,我们表明,在未来的海洋条件下,当有害的藻类藻类Phaeocystis globosa被病毒感染时,其光合性能会进一步降低,细胞变得更容易受到紧张的光照水平,从而显示出更强的光抑制作用和减少的碳固定作用,线粒体呼吸作用的上调并减少了病毒爆发的大小。我们的结果表明,海洋酸化加剧了病毒对球形假单胞菌的攻击,这意味着,尽管海洋酸化直接影响海洋初级生产者,但也可能通过改变其与病毒的关系而间接影响它们。因此,在考虑气候变化对海洋生产力和碳固存的总体影响时,需要使用病毒作为生物应激源。

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