碳酸酐酶
化学
细胞外
极地的
鲁比斯科
二氧化碳
生物物理学
生物化学
环境化学
酶
生物
有机化学
物理
天文
标识
DOI:10.1101/2022.09.08.507187
摘要
Abstract Diatoms, including Fragilariopsis cylindrus ( Fcyl ), are the major primary producers in productive polar oceans. Little is known about carbon concentrating mechanisms (CCMs) in polar diatoms and their sensitivity to ocean warming and acidification. Here we characterized the CCM response to temperature in Fcyl using Membrane Inlet Mass Spectrometry. Fcyl increases RuBisCO expression at lower temperatures to compensate slower catalytic rates but maintains a reliance on HCO 3 − uptake across different temperatures (−2 °C to 9 °C) despite higher CO 2 solubility at colder temperatures. However, when external carbonic anhydrase (eCA) is inhibited, inorganic carbon usage switches from HCO 3 − uptake to a dependency on CO 2 diffusion. Incorporating these measurements with modeling, we propose that relying on eCA supported HCO 3 − uptake is an adaptive strategy to the highly dynamic polar ocean environment which experience large fluctuations in [CO 2 ] but where HCO 3 − is constantly available.
科研通智能强力驱动
Strongly Powered by AbleSci AI