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Photocalorespirometry (Photo-CR): A Novel Method for Access to Photosynthetic Energy Conversion Efficiency

机译:光量肺活量测定法(Photo-CR):一种获取光合能量转化效率的新方法

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摘要

One key parameter for assessing the CO2 fixation in aquatic ecosystems but also for the productivity of photobioreactors is the energy conversion efficiency (PE) by the photosynthetic apparatus. PE strictly depends on a range of different fluctuating environmental conditions and is therefore highly variable. PE is the result of complex metabolic control. At the moment PE can only be determined indirectly. Furthermore, the currently available techniques either capture only short time processes, thus reflecting only parts of the photosynthetic engine, or quantify the total process but only with limited time resolution. To close this gap, we suggest for the first time the direct measurement of the fixed energy combined with respirometry, called photocalorespirometry (Photo-CR). The proof of the principle of Photo-CR was established with the microalga Chlamydomonas reinhardtii. The simultaneous measurement of oxygen production and energy fixation provides an calorespirometric ratio of −(437.9 ± 0.7) kJ mol−1 under low light conditions. The elevated calorespirometric ratio under high light conditions provides an indication of photo-protective mechanisms. The Photo-CR delivers the PE in real time, depending on the light intensity. Energetic differences less than 0.14% at radiation densities of up to 800 μE m−2 s−1 can be quantified. Other photosynthetic growth parameters (e.g. the specific growth rate of 0.071 h−1, the cell specific energy conservation of 30.9 ± 1.3 pW cell−1 at 150 µE m−2 s−1 and the number of photons (86.8) required to fix one molecule of CO2) can easily be derived from the Photo-CR data.
机译:评估水生生态系统中CO2固定性以及光生物反应器生产率的一个关键参数是光合作用设备的能量转换效率(PE)。 PE严格取决于一系列不同的波动环境条件,因此变化很大。 PE是复杂的代谢控制的结果。目前,只能间接确定PE。此外,当前可用的技术要么仅捕获短时过程,从而仅反映光合作用引擎的一部分,要么对整个过程进行量化,但仅具有有限的时间分辨率。为了缩小这一差距,我们建议首次将固定能量与呼吸测定法结合起来进行直接测量,称为光热量肺量测定法(Photo-CR)。 Photo-CR原理的证明是通过微藻莱茵衣藻(Chlamydomonas reinhardtii)建立的。氧气产生和能量固定的同时测量提供了在弱光条件下的-(437.9±0.7)kJ mol -1 的量热比。在强光条件下升高的量热呼吸比提供了光保护机制的指示。 Photo-CR根据光强度实时传送PE。可以量化在辐射密度高达800μEm -2 s -1 时小于0.14%的能量差。其他光合作用的生长参数(例如,比生长率为0.071 -1 ,在150 µE m 下细胞比能量守恒为30.9±1.3 pW cell -1 可以很容易地从Photo-CR数据中得出-2 s -1 和固定一分子CO2所需的光子数(86.8)。

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