School of Environment and Energy, South China University of Technology, Guangzhou, 510006, China.
School of Environmental Science and Engineering, Guangzhou University, Guangzhou, 510006, People's Republic of China.
Environ Sci Pollut Res Int. 2019 Jun;26(16):16388-16395. doi: 10.1007/s11356-019-05101-5. Epub 2019 Apr 13.
Diatoms are experiencing striking fluctuations in seawater carbonate chemistry in the natural marine environment, especially in coastal seawaters. Here, we show that the diatoms Thalassiosira weissflogii and Phaeodactylum tricornutum, which utilize different carbon acquisition mechanisms, respond differently to short-term changes in seawater carbonate chemistry. Our results showed that T. weissflogii showed significantly higher photosynthetic oxygen evolution rates than that of P. tricornutum at low levels of CO or HCO. This suggests that T. weissflogii had higher affinities for CO or HCO when their concentrations were not sufficient to support saturated growth and photosynthesis. While the activity of Rubisco in P. tricornutum positively correlated with carbonic anhydrases (CA), we observed negative relationship between Rubisco and CA activity in the diatom T. weissflogii. These contrasting physiological responses of diatoms with varied carbon acquisition mechanisms indicate different abilities to cope up with abrupt changes in seawater carbonate chemistry. We propose that the ability to respond to varying carbonate chemistry may act as one determinant of the diatom distributions and phytoplankton community structures.
在自然海洋环境中,特别是在沿海海水中,硅藻正经历着海水碳酸盐化学的显著波动。在这里,我们表明,利用不同碳获取机制的硅藻塔玛亚历山大藻和三角褐指藻对海水碳酸盐化学的短期变化有不同的反应。我们的结果表明,在 CO 或 HCO 水平较低时,塔玛亚历山大藻的光合氧气释放率明显高于三角褐指藻。这表明,当 CO 或 HCO 的浓度不足以支持饱和生长和光合作用时,塔玛亚历山大藻对 CO 或 HCO 的亲和力更高。虽然三角褐指藻的 Rubisco 活性与碳酸酐酶(CA)呈正相关,但我们观察到硅藻塔玛亚历山大藻中 Rubisco 与 CA 活性之间呈负相关关系。这些具有不同碳获取机制的硅藻的生理反应截然不同,表明它们应对海水碳酸盐化学突然变化的能力不同。我们提出,对变化的碳酸盐化学的响应能力可能是硅藻分布和浮游植物群落结构的一个决定因素。