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研究光质对……大分子组成的影响。 (原句结尾不完整)

Investigating the impact of light quality on macromolecular composition of .

作者信息

Iwasaki Kenji, Szabó Milán, Tamburic Bojan, Evenhuis Christian, Zavafer Alonso, Kuzhiumparambil Unnikrishnan, Ralph Peter

机构信息

Climate Change Cluster (C3), Faculty of Science, University of Technology Sydney, NSW, Australia.

Climate Change Cluster (C3), Faculty of Science, University of Technology Sydney, NSW, Australia; and Institute of Plant Biology, Biological Research Centre, Hungary, Eötvös Loránd Research Network (ELKH), Szeged, Hungary.

出版信息

Funct Plant Biol. 2022 May;49(6):554-564. doi: 10.1071/FP21131.

Abstract

Diatoms (Bacillariophyceae) are important to primary productivity of aquatic ecosystems. This algal group is also a valuable source of high value compounds that are utilised as aquaculture feed. The productivity of diatoms is strongly driven by light and CO2 availability, and macro- and micronutrient concentrations. The light dependency of biomass productivity and metabolite composition is well researched in diatoms, but information on the impact of light quality, particularly the productivity return on energy invested when using different monochromatic light sources, remains scarce. In this work, the productivity return on energy invested of improving growth rate, photosynthetic activity, and metabolite productivity of the diatom Chaetoceros muelleri under defined wavelengths (blue, red, and green) as well as while light is analysed. By adjusting the different light qualities to equal photosynthetically utilisable radiation, it was found that the growth rate and photosynthetic oxygen evolution was unchanged under white, blue, and green light, but it was lower under red light. Blue light improved the productivity return on energy invested for biomass, total protein, total lipid, total carbohydrate, and in fatty acids production, which would suggest that blue light should be used for aquaculture feed production.

摘要

硅藻(硅藻纲)对水生生态系统的初级生产力至关重要。这个藻类群体也是高价值化合物的宝贵来源,这些化合物被用作水产养殖饲料。硅藻的生产力受到光照、二氧化碳可利用性以及大量和微量营养元素浓度的强烈驱动。硅藻中生物量生产力和代谢物组成对光的依赖性已得到充分研究,但关于光质影响的信息,特别是使用不同单色光源时能量投入的生产力回报,仍然稀缺。在这项工作中,分析了在特定波长(蓝色、红色和绿色)以及白光下,提高硅藻牟氏角毛藻的生长速率、光合活性和代谢物生产力时能量投入的生产力回报。通过将不同光质调整到相等的光合有效辐射,发现白色、蓝色和绿色光下生长速率和光合放氧不变,但红色光下较低。蓝光提高了生物量、总蛋白、总脂质、总碳水化合物以及脂肪酸生产中能量投入的生产力回报,这表明蓝光应用于水产养殖饲料生产。

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