Samhat Khadija, Kazbar Antoinette, Takache Hosni, Ismail Ali, Pruvost Jeremy
Oniris, CNRS, GEPEA, UMR 6144, Nantes University, 44600, Saint-Nazaire, France.
Platform for Research and Analysis in Environmental Sciences, Doctoral School of Science and Technology, Lebanese University, Rafic Hariri Campus, Beirut, Lebanon.
Bioresour Bioprocess. 2023 Nov 9;10(1):78. doi: 10.1186/s40643-023-00700-0.
Large amounts of astaxanthin (about 4% DW) can be produced under nitrogen starvation of Haematococcus pluvialis in photobioreactors (PBRs) exposed to high light conditions to induce a light stress. However, in PBR, the large biomass concentration usually achieved leads to strong light attenuation conditions, which makes complex the analysis of this "light stress". This study aims to elucidate the role of light transfer in astaxanthin cell content and productivity from the microalga Haematococcus pluvialis during nitrogen starvation. Haematococcus pluvialis was cultivated in a flat-panel PBR in a batch mode with sudden nitrogen starvation conditions and an incident photon flux density (PFD) of 250 µmol m s. Different initial biomass concentrations ( ) were evaluated, 0.21, 0.52, 1.39 and 2.21 kg m. As a result, spectral mass absorption cross-sections of Haematococcus pluvialis were measured at different times during nitrogen starvation, and were used to relate the mean rate of photon absorption (MRPA) to the astaxanthin productivity. A minimum initial MRPA of 7000 ± 500 µmol kg s was found necessary to trigger large accumulation of astaxanthin in Haematococcus pluvialis cells (up to 3.21% DW) during nitrogen starvation conditions. The results also demonstrated the link between the MRPA and the daily astaxanthin productivity of Haematococcus pluvialis cultures, introducing then the MRPA as a physical quantity of interest for a rational optimization of the light culture conditions in PBRs.
在高光条件下,雨生红球藻在光生物反应器(PBR)中处于氮饥饿状态时可产生大量虾青素(约占干重的4%),以诱导光胁迫。然而,在PBR中,通常达到的高生物量浓度会导致强光衰减条件,这使得对这种“光胁迫”的分析变得复杂。本研究旨在阐明在氮饥饿期间,光传递对雨生红球藻虾青素细胞含量和生产力的作用。雨生红球藻在平板PBR中以分批模式培养,施加突然的氮饥饿条件,入射光子通量密度(PFD)为250 μmol·m²·s。评估了不同的初始生物量浓度(),分别为0.21、0.52、1.39和2.21 kg·m³。结果,在氮饥饿期间的不同时间测量了雨生红球藻的光谱质量吸收截面,并用于将平均光子吸收率(MRPA)与虾青素生产力相关联。发现在氮饥饿条件下,雨生红球藻细胞中触发虾青素大量积累(高达干重的3.21%)所需的最小初始MRPA为7000±500 μmol·kg⁻¹·s。结果还证明了MRPA与雨生红球藻培养物的每日虾青素生产力之间的联系,从而将MRPA作为一个重要的物理量,用于合理优化PBR中的光照培养条件。