Wu Yaping, Campbell Douglas A, Gao Kunshan
State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen, China.
Biology Department, Mount Allison University, Sackville, New Brunswick, Canada.
Mar Environ Res. 2017 Apr;125:42-48. doi: 10.1016/j.marenvres.2016.12.001. Epub 2016 Dec 14.
Ocean acidification changes seawater chemistry, with increased CO and decreased pH regarded as the most important factors that impact marine organisms. This study employed an unconventional methodology to distinguish the independent effects of pH versus CO. Changes in CO dominated the photochemical responses of the coastal diatom Phaeodactylum tricornutum to short-term ocean acidification. Increased CO lowered non-photochemical quenching of excitation and stimulated the electron transport rates of photosynthesis, with the largest effects on both parameters when CO and pH were altered simultaneously. Changes in pH alone did not show significant effects upon non-photochemical quenching (NPQ) nor upon electron transport rates, but can synergistically amplify CO effects under low light. Maximal induction of NPQ after illumination showed only a limited response to increasing CO under stable pH, across a range of increasing light levels, but maximal induced NPQ declined rapidly with increasing CO under variable pH, when measured under exposure to sub-saturating light, but not under saturating light. These findings show that aqueous CO and pH affect different physiological processes independently or interactively, which should be taken into account in future research for better understanding of responses to ocean acidification at the mechanistic level.
海洋酸化改变了海水化学性质,二氧化碳增加和pH值降低被视为影响海洋生物的最重要因素。本研究采用了一种非常规方法来区分pH值与二氧化碳的独立影响。二氧化碳的变化主导了沿海硅藻三角褐指藻对短期海洋酸化的光化学响应。二氧化碳增加降低了激发的非光化学猝灭,并刺激了光合作用的电子传递速率,当二氧化碳和pH值同时改变时,对这两个参数的影响最大。单独的pH值变化对非光化学猝灭(NPQ)和电子传递速率均未显示出显著影响,但在低光照条件下可协同放大二氧化碳的影响。在稳定的pH值下,光照后NPQ的最大诱导在一系列增加的光照水平下对二氧化碳增加仅表现出有限的响应,但在可变pH值下,当在亚饱和光照下测量时,随着二氧化碳增加,最大诱导NPQ迅速下降,但在饱和光照下测量时并非如此。这些发现表明,水溶液中的二氧化碳和pH值独立或交互地影响不同的生理过程,在未来的研究中应予以考虑,以便在机制层面更好地理解对海洋酸化的响应。