College of Marine Science and Technology, China University of Geosciences (Wuhan), Wuhan, Hubei, 430074, China.
Environ Microbiol. 2021 Feb;23(2):980-995. doi: 10.1111/1462-2920.15248. Epub 2020 Oct 7.
Under ocean warming and acidification, diatoms use a unique acclimation and adaptation strategy by saving energy and utilizing it for other cellular processes. However, the molecular mechanisms that underlie this reprogramming of energy utilization are currently unknown. Here, we investigate the metabolic reprogramming of the ecologically important diatom Skeletonema dohrnii grown under two different temperature (21°C and 25°C) and pCO (400 and 1000 ppm) levels, utilizing global transcriptomic analysis. We find that evolutionary changes in the baseline gene expression, which we termed transcriptional up- and downregulation, is the primary mechanism used by diatoms to acclimate to the combined conditions of ocean warming and acidification. This transcriptional regulation shows that under higher temperature and pCO conditions, photosynthesis, electron transport and carboxylation were modified with increasing abundances of genes encoding ATP, NADPH and carbon gaining for the carbon-dioxide-concentrating mechanisms (CCMs). Our results also indicate that changes in the transcriptional regulation of CCMs led to a decrease in the metabolic cost to save energy by promoting amino acid synthesis and nitrogen assimilation for the active protein processing machinery to adapt to warming and ocean acidification. This study generated unique metabolic insights into diatoms and suggests that future climate change conditions will cause evolutionary changes in oceanic diatoms that will facilitate their acclimation strategy.
在海洋变暖酸化的情况下,硅藻通过节约能量并将其用于其他细胞过程来采用独特的适应和适应策略。然而,这种能量利用重新编程的分子机制目前尚不清楚。在这里,我们利用全球转录组分析研究了在两种不同温度(21°C 和 25°C)和 pCO(400 和 1000 ppm)水平下生长的生态重要硅藻 Skeletonema dohrnii 的代谢重编程。我们发现,基线基因表达的进化变化,我们称之为转录上调和下调,是硅藻适应海洋变暖酸化综合条件的主要机制。这种转录调控表明,在较高的温度和 pCO 条件下,光合作用、电子传递和羧化作用被修饰,增加了编码 ATP、NADPH 和用于二氧化碳浓缩机制(CCMs)的碳增益的基因的丰度。我们的研究结果还表明,CCMs 的转录调控变化导致通过促进氨基酸合成和氮同化来节约能量的代谢成本降低,从而使主动蛋白加工机制适应变暖和海洋酸化。这项研究为硅藻提供了独特的代谢见解,并表明未来的气候变化条件将导致海洋硅藻发生进化变化,从而促进其适应策略。