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转录组数据的新见解揭示了二氧化碳酸化胁迫对共生甲藻光合作用的不同影响

New Insights From Transcriptomic Data Reveal Differential Effects of CO Acidification Stress on Photosynthesis of an Endosymbiotic Dinoflagellate .

作者信息

Herrera Marcela, Liew Yi Jin, Venn Alexander, Tambutté Eric, Zoccola Didier, Tambutté Sylvie, Cui Guoxin, Aranda Manuel

机构信息

Red Sea Research Center (RSRC), Biological and Environmental Sciences and Engineering Division (BESE), King Abdullah University of Science and Technology (KAUST), Thuwal, Saudi Arabia.

Marine Department, Centre Scientifique de Monaco, Monaco, Monaco.

出版信息

Front Microbiol. 2021 Jul 19;12:666510. doi: 10.3389/fmicb.2021.666510. eCollection 2021.

Abstract

Ocean acidification (OA) has both detrimental as well as beneficial effects on marine life; it negatively affects calcifiers while enhancing the productivity of photosynthetic organisms. To date, many studies have focused on the impacts of OA on calcification in reef-building corals, a process particularly susceptible to acidification. However, little is known about the effects of OA on their photosynthetic algal partners, with some studies suggesting potential benefits for symbiont productivity. Here, we investigated the transcriptomic response of the endosymbiont (CCMP2467) in the Red Sea coral subjected to different long-term (2 years) OA treatments (pH 8.0, 7.8, 7.4, 7.2). Transcriptomic analyses revealed that symbionts from corals under lower pH treatments responded to acidification by increasing the expression of genes related to photosynthesis and carbon-concentrating mechanisms. These processes were mostly up-regulated and associated metabolic pathways were significantly enriched, suggesting an overall positive effect of OA on the expression of photosynthesis-related genes. To test this conclusion on a physiological level, we analyzed the symbiont's photochemical performance across treatments. However, in contrast to the beneficial effects suggested by the observed gene expression changes, we found significant impairment of photosynthesis with increasing CO. Collectively, our data suggest that over-expression of photosynthesis-related genes is not a beneficial effect of OA but rather an acclimation response of the holobiont to different water chemistries. Our study highlights the complex effects of ocean acidification on these symbiotic organisms and the role of the host in determining symbiont productivity and performance.

摘要

海洋酸化(OA)对海洋生物既有有害影响,也有有益影响;它对钙化生物有负面影响,同时提高光合生物的生产力。迄今为止,许多研究都集中在OA对造礁珊瑚钙化的影响上,这一过程特别容易受到酸化的影响。然而,关于OA对其光合藻类共生体的影响却知之甚少,一些研究表明对共生体生产力有潜在益处。在这里,我们研究了红海珊瑚中内共生体(CCMP2467)在不同长期(2年)OA处理(pH 8.0、7.8、7.4、7.2)下的转录组反应。转录组分析表明,较低pH处理下珊瑚中的共生体通过增加与光合作用和碳浓缩机制相关基因的表达来响应酸化。这些过程大多上调,相关代谢途径显著富集,表明OA对光合作用相关基因的表达总体上有积极影响。为了在生理水平上验证这一结论,我们分析了各处理下共生体的光化学性能。然而,与观察到的基因表达变化所暗示的有益影响相反,我们发现随着二氧化碳浓度增加,光合作用受到显著损害。总体而言,我们的数据表明,光合作用相关基因的过度表达不是OA的有益影响,而是共生体对不同水化学环境的适应反应。我们的研究突出了海洋酸化对这些共生生物的复杂影响以及宿主在决定共生体生产力和性能方面的作用。

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