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复活实验揭示波罗的海硅藻温度和盐度依赖性的千年演变

Millennia-Long Evolution of Temperature and Salinity Dependence of a Baltic Sea Diatom Revealed by Resurrection Experiments.

作者信息

Bolius Sarah, Hinners Jana, Kaiser Jérôme, Folgmann Silas, Steiner Paula F, Arz Helge W, Kremp Anke

机构信息

Biological Oceanography, Leibniz Institute for Baltic Sea Research Warnemünde, Rostock, Germany.

Helmholtz-Zentrum Hereon, Geesthacht, Germany.

出版信息

Glob Chang Biol. 2025 Aug;31(8):e70408. doi: 10.1111/gcb.70408.

DOI:10.1111/gcb.70408
PMID:40751391
Abstract

Many species have demonstrated persistence through past climate phases, but the recent accelerated anthropogenic climate change severely impacts species composition, altering aquatic biodiversity and phytoplankton communities. Uncovering how species have responded to natural climate variability in the past is of great value for understanding adaptive dynamics and predicting future adaptations. Here, we investigated the Holocene adaptation dynamics of the cosmopolitan diatom species Skeletonema marinoi by reviving dormant phytoplankton cells that have accumulated in the sediment of the Baltic Sea. The Baltic Sea is strongly affected by current climate change and has undergone fundamental environmental changes throughout its Holocene history, including glacial rebound, alternating warmer and cooler periods, and changes in salinity and nutrient availability. Using resurrected temporal cohorts from up to 6800-year-old sediment horizons, we studied past adaptation dynamics by performing growth experiments and morphological measurements under different temperature and salinity conditions. Our results demonstrate that S. marinoi temporal cohorts exhibit differences in their morphological trait values and environmental optima, partially reflecting past ambient environments. Moreover, divergences from expected adaptation patterns demonstrate the complexity of evolution in natural ecosystems. Based on our findings, we expect S. marinoi to cope well with projected environmental changes for the Baltic Sea. These findings highlight the resilience of phytoplankton and emphasize their capacity for phenotypic adaptation to changing conditions. Furthermore, this research underscores the importance of understanding past adaptation processes in predicting phytoplankton responses to future climate change.

摘要

许多物种在过去的气候阶段都表现出了持久性,但近期加速的人为气候变化严重影响了物种组成,改变了水生生物多样性和浮游植物群落。揭示物种在过去如何应对自然气候变异性,对于理解适应性动态和预测未来适应性具有重要价值。在这里,我们通过复苏积聚在波罗的海沉积物中的休眠浮游植物细胞,研究了世界性硅藻物种玛氏骨条藻(Skeletonema marinoi)全新世的适应动态。波罗的海受到当前气候变化的强烈影响,在其全新世历史中经历了根本性的环境变化,包括冰川回弹、冷暖交替时期以及盐度和养分可用性的变化。利用来自距今6800年沉积物层位的复活时间队列,我们通过在不同温度和盐度条件下进行生长实验和形态测量,研究了过去的适应动态。我们的结果表明,玛氏骨条藻时间队列在其形态特征值和环境适宜度方面存在差异,部分反映了过去的环境状况。此外,与预期适应模式的差异表明了自然生态系统中进化的复杂性。基于我们的发现,我们预计玛氏骨条藻能够很好地应对波罗的海预计的环境变化。这些发现突出了浮游植物的恢复力,并强调了它们对变化条件进行表型适应的能力。此外,这项研究强调了理解过去适应过程在预测浮游植物对未来气候变化响应方面的重要性。

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本文引用的文献

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Mol Ecol. 2025 Jul;34(13):e17817. doi: 10.1111/mec.17817. Epub 2025 Jun 10.
2
Resurrection of a diatom after 7000 years from anoxic Baltic Sea sediment.来自缺氧波罗的海沉积物中的硅藻在7000年后复苏。
ISME J. 2025 Jan 2;19(1). doi: 10.1093/ismejo/wrae252.
3
Archives of cyanobacterial traits: insights from resurrected from Baltic Sea sediments reveal a shift in temperature optima.蓝藻特征档案:从波罗的海沉积物中复活的蓝藻带来的见解揭示了最适温度的变化。
ISME Commun. 2024 Nov 13;4(1):ycae140. doi: 10.1093/ismeco/ycae140. eCollection 2024 Jan.
4
The Divergent Responses of Salinity Generalists to Hyposaline Stress Provide Insights Into the Colonisation of Freshwaters by Diatoms.盐度广适性生物对低盐胁迫的分歧响应为硅藻淡水定殖提供了新视角。
Mol Ecol. 2024 Nov;33(22):e17556. doi: 10.1111/mec.17556. Epub 2024 Oct 21.
5
Future climate change and marine heatwaves - Projected impact on key habitats for herring reproduction.未来气候变化和海洋热浪——对鲱鱼繁殖关键生境的预计影响。
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6
Using ancient sedimentary DNA to forecast ecosystem trajectories under climate change.利用古代沉积 DNA 预测气候变化下的生态系统轨迹。
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