School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China.
School of Environmental Science and Engineering, Guangzhou University, Guangzhou 510006, China.
Sci Total Environ. 2021 Jun 1;771:145167. doi: 10.1016/j.scitotenv.2021.145167. Epub 2021 Jan 29.
Ocean acidification and warming are recognized as two major anthropogenic perturbations of the modern ocean. However, little is known about the adaptive response of phytoplankton to them. Here we examine the adaptation of a marine diatom Thalassiosira weissflogii to ocean acidification in combination with ocean warming. Our results show that ocean warming have a greater effect than acidification on the growth of T. weissflogii over the long-term selection experiment (~380 generations), as well as many temperature response traits (e.g., optimum temperatures for photosynthesis, maximal net photosynthetic oxygen evolution rates, activation energy) in thermal reaction norm. These results suggest that ocean warming is the main driver for the evolution of the marine diatom T. weissflogii, rather than oceanacidification. However, the evolution resulting from warming can be constrained by ocean acidification, where ocean warming did not impose any effects at high CO level. Furthermore, adaptations to ocean warming alone or to the combination of ocean acidification and warming come with trade-offs by inhibiting photochemical performances. The constrains and trade-offs associated with the adaptation to ocean acidification and warming demonstrated in this study, should be considered for parameterizing evolutionary responses in eco-evolutionary models of phytoplankton dynamics in a future ocean.
海洋酸化和变暖被认为是现代海洋的两个主要人为干扰因素。然而,人们对浮游植物对它们的适应反应知之甚少。在这里,我们研究了海洋硅藻威氏海链藻(Thalassiosira weissflogii)对海洋酸化与变暖相结合的适应能力。我们的结果表明,在长期的选择实验(~380 代)中,海洋变暖对 T. weissflogii 的生长的影响大于酸化,以及在热反应规范中许多温度响应特征(例如,光合作用的最适温度、最大净光合氧气产生速率、活化能)。这些结果表明,海洋变暖是海洋硅藻 T. weissflogii 进化的主要驱动因素,而不是海洋酸化。然而,变暖引起的进化可以受到海洋酸化的限制,在高 CO2 水平下,海洋变暖没有产生任何影响。此外,单独适应变暖或适应酸化和变暖的结合会通过抑制光化学性能带来权衡。本研究中展示的与适应海洋酸化和变暖相关的限制和权衡,应该在未来海洋的浮游植物动态生态进化模型中参数化进化反应时加以考虑。