College of Marine Life and Fisheries, Jiangsu Ocean University, Lianyungang, China.
Co-Innovation Center of Jiangsu Marine Bio-industry Technology, Jiangsu Ocean University, Lianyungang, China.
Photochem Photobiol. 2020 Sep;96(5):1074-1082. doi: 10.1111/php.13268. Epub 2020 May 21.
Diatoms have relatively high biomass in mid- to high-latitude oceans, which is also the most sensitive region to climate change. Photoautotrophs are thus predicted to become exposed to both higher temperatures and increased solar irradiance. In this study, we examined the consequences of such changes for the growth and photo-physiology of two diatoms by mimicking the scenarios that correspond to present day and that predicted for the end of this century. Elevated light induced higher rates of damage to photosystem II (PSII) that significantly reduced photochemical yields of both diatoms. Treatments including UV radiation induced ~ 50% inhibition of PSII under present PAR levels. Generally, warming alleviated UVR inhibition, resulting in higher photochemical yields, and faster recovery during dim light exposure. Therefore, concurrent increase of irradiance and temperature mitigated UV inhibition of PSII by 8-15%. The growth was stimulated by warming under PAR treatment, while less stimulation, or even decreased growth rates were found under the PAR + UVR treatment. Results suggest that ocean warming could fully offset the inhibition of high light on PSII. However, under the latter higher UVR stress scenario, the energetic expenditure required by the diatoms to repair damage could lead to their lower overall growth in future oceans.
硅藻在中高纬度海洋中的生物量相对较高,也是对气候变化最敏感的区域。因此,光自养生物预计将暴露在更高的温度和增加的太阳辐射下。在这项研究中,我们通过模拟与当今情景和本世纪末预测情景相对应的情景,研究了这些变化对两种硅藻生长和光生理的影响。升高的光会导致光系统 II (PSII)受到更高的损伤速率,从而显著降低两种硅藻的光化学产量。包括 UV 辐射在内的处理会在当前 PAR 水平下导致 PSII 抑制约 50%。一般来说,变暖减轻了 UVR 的抑制作用,导致在弱光暴露下光化学产量更高,恢复更快。因此,辐照度和温度的同时增加减轻了 PSII 对 UV 的抑制作用 8-15%。在 PAR 处理下,变暖会刺激生长,而在 PAR+UVR 处理下,刺激作用较小,甚至生长速度下降。结果表明,海洋变暖可以完全抵消高光对 PSII 的抑制作用。然而,在后一种更高的 UVR 胁迫情景下,硅藻修复损伤所需的能量支出可能导致它们在未来海洋中的整体生长速度下降。