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能源微藻莱茵衣藻对氮磷胁迫的响应。

Response of energy microalgae Chlamydomonas reinhardtii to nitrogen and phosphorus stress.

机构信息

College of Architecture and Environment, Sichuan University, Chengdu, 610065, Sichuan, People's Republic of China.

Institute of New Energy and Low Carbon Technology, Sichuan University, Chengdu, 610065, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2018 Feb;25(6):5762-5770. doi: 10.1007/s11356-017-0931-0. Epub 2017 Dec 12.

Abstract

Microalgae can effectively absorb nitrogen (N) and phosphorus (P) in wastewater, while growth characteristics can be affected by such nutrients. The influences of the N and P concentration on growth, biomass yield, protein yield, and cell ultrastructure of Chlamydomonas reinhardtii (C. reinhardtii) were investigated in this study. The results showed that, in the optimum conditions (24-72 mg/L for N and 4.5-13.5 mg/L for P), the final biomass and protein content of C. reinhardtii could reach maximum value, and the cell organelles (chloroplast, mitochondria,etc.) showed good structures with larger chloroplasts, and more and neater thylakoids. However, if the concentration of nutrients was much higher or lower than the optimal value, it would cause adverse effects on the growth of C. reinhardtii, especially in high nitrogen (1000 mg/L) and low phosphorus (0.5 mg/L) conditions. Under these extreme conditions, the ultrastructure of the cells was also damaged significantly as follows: the majority of the organelles were deformed, the chloroplast membrane became shrunken, and the mitochondria became swollen, even partial disintegrated (differing slightly under high-N and low-P conditions); furthermore, it is found that C. reinhardtii was more sensitive to low-P stress. On the basis of these results, our findings have general implications in the application of wastewater treatment.

摘要

微藻可以有效地吸收废水中的氮(N)和磷(P),而其生长特性会受到这些营养物质的影响。本研究探讨了氮和磷浓度对莱茵衣藻(C. reinhardtii)生长、生物量产量、蛋白质产量和细胞超微结构的影响。结果表明,在最佳条件(N 为 24-72mg/L,P 为 4.5-13.5mg/L)下,C. reinhardtii 的最终生物量和蛋白质含量可达到最大值,细胞细胞器(叶绿体、线粒体等)结构良好,叶绿体较大,类囊体较多且整齐。然而,如果营养物质的浓度远高于或低于最佳值,会对 C. reinhardtii 的生长产生不利影响,特别是在高氮(1000mg/L)和低磷(0.5mg/L)条件下。在这些极端条件下,细胞的超微结构也受到明显破坏,大多数细胞器变形,叶绿体膜皱缩,线粒体肿胀,甚至部分解体(在高氮和低磷条件下略有不同);此外,还发现 C. reinhardtii 对低磷胁迫更为敏感。基于这些结果,我们的发现对废水处理的应用具有普遍意义。

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