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光照强度对高浓度二氧化碳培养下的各种微藻生长及生化成分的影响

Effects of Light Intensity on the Growth and Biochemical Composition in Various Microalgae Grown at High CO Concentrations.

作者信息

Chunzhuk Elizaveta A, Grigorenko Anatoly V, Kiseleva Sophia V, Chernova Nadezhda I, Vlaskin Mikhail S, Ryndin Kirill G, Butyrin Aleksey V, Ambaryan Grayr N, Dudoladov Aleksandr O

机构信息

Joint Institute for High Temperatures of the Russian Academy of Sciences, 125412 Moscow, Russia.

Faculty of Geography, Lomonosov Moscow State University, 119991 Moscow, Russia.

出版信息

Plants (Basel). 2023 Nov 16;12(22):3876. doi: 10.3390/plants12223876.

Abstract

In modern energy, various technologies for absorbing carbon dioxide from the atmosphere are being considered, including photosynthetic microalgae. An important task is to obtain maximum productivity at high concentrations of CO in gas-air mixtures. In this regard, the aim of the investigation is to study the effect of light intensity on the biomass growth and biochemical composition of five different microalgae strains: , , , , and . To assess the viability of microalgae cells, the method of cytochemical staining with methylene blue, which enables identifying dead cells during microscopy, was used. The microalgae were cultivated at 6% CO and five different intensities: 80, 120, 160, 200, and 245 μmol quanta·m·s. The maximum growth rate among all strains was obtained for (0.78 g·L·d) at an illumination intensity of 245 µmol quanta·m·s. For and , similar results (approximately 0.59 and 0.25 g·L·d for each strain) were obtained at an illumination intensity of 160 and 245 µmol quanta·m·s. A decrease in protein content with an increase in illumination was noted for (from 61.0 to 46.6%) and (from 43.8 to 33.6%), and a slight increase in lipid content was shown by (from 17.8 to 21.4%). The possibility of increasing microalgae biomass productivity by increasing illumination has been demonstrated. This result can also be considered as showing potential for enhanced lipid microalgae production for biodiesel applications.

摘要

在现代能源领域,人们正在考虑各种从大气中吸收二氧化碳的技术,包括光合微藻。一项重要任务是在气体 - 空气混合物中高浓度一氧化碳的情况下获得最大生产力。在这方面,本研究的目的是研究光照强度对五种不同微藻菌株(分别为 、 、 、 、 和 )的生物量生长和生化组成的影响。为了评估微藻细胞的活力,使用了亚甲基蓝细胞化学染色法,该方法能够在显微镜检查过程中识别死细胞。微藻在6%的二氧化碳浓度和五种不同光照强度下培养:80、120、160、200和245 μmol光子·m·s。在光照强度为245 µmol光子·m·s时, 菌株(0.78 g·L·d)在所有菌株中获得了最大生长速率。对于 和 ,在光照强度为160和245 µmol光子·m·s时获得了相似的结果(每个菌株约为0.59和0.25 g·L·d)。对于 (从61.0%降至46.6%)和 (从43.8%降至33.6%),发现蛋白质含量随光照增加而降低,而 显示脂质含量略有增加(从17.8%增至21.4%)。已经证明了通过增加光照来提高微藻生物量生产力的可能性。该结果也可被视为显示了在生物柴油应用中提高微藻脂质产量的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/621b/10674991/67ea1ce61968/plants-12-03876-g001.jpg

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