Metabolic Adaptation of a Globally Important Diatom following 700 Generations of Selection under a Warmer Temperature

硅藻 浮游植物 柠檬酸循环 全球变暖对海洋的影响 固碳 海链藻 光合作用 生物 分解代谢 新陈代谢 氮气 适应(眼睛) 化学 生态学 植物 全球变暖 营养物 生物化学 气候变化 有机化学 神经科学
作者
Lu-Man Cheng,Shufeng Zhang,Zhang-Xian Xie,Dongxu Li,Lin Lin,Minghua Wang,Da‐Zhi Wang
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:56 (8): 5247-5255 被引量:31
标识
DOI:10.1021/acs.est.1c08584
摘要

Diatoms, accounting for 40% of the marine primary production and 20% of global carbon dioxide fixation, are threatened by the ongoing ocean warming (OW). However, whether and how these ecologically important phytoplankton adapt to OW remains poorly unknown. Here, we experimentally examined the metabolic adaptation of a globally important diatom species Skeletonema dohrnii (S. dohrnii) to OW at two elevated temperatures (24 and 28 °C compared with 20 °C) under short-term (∼300 generations) and long-term (∼700 generations) selection. Both warming levels significantly increased the cell growth rate but decreased the chlorophyll a content. The contents of particulate organic carbon (POC) and particulate organic nitrogen (PON) decreased significantly initially (i.e., until 300 generations) at two temperature treatments but completely recovered after 700 generations of selection, suggesting that S. dohrnii ultimately developed thermal adaptation. Proteomic analysis demonstrated that elevated temperatures upregulated energy metabolism via glycolysis, tricarboxylic acid cycle, and fatty acid oxidation as well as nitrogen acquisition and utilization, which in turn reduced substance storage because of trade-off in the 300th generation, thus decreasing POC and PON. Interestingly, populations at both elevated temperatures exhibited significant proteome plasticity in the 700th generation, as primarily demonstrated by the increased lipid catabolism and glucose accumulation, accounting for the recovery of POC and PON. Changes occurring in cells at the 300th and 700th generations demonstrate that S. dohrnii can adapt to the projected OW, and readjusting the energy metabolism is an important adaptive strategy.
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