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用于未来生物燃料应用的微藻紫外线-C 辐照分离突变体的特性研究。

Characterization of isolated UV-C-irradiated mutants of microalga for future biofuel application.

作者信息

Carino Jessa Dg, Vital Pierangeli G

机构信息

Natural Sciences Research Institute, University of the Philippines Diliman, 1101 Quezon City, Philippines.

出版信息

Environ Dev Sustain. 2023;25(2):1258-1275. doi: 10.1007/s10668-021-02091-8. Epub 2022 Jan 4.

Abstract

Microalgae-based biofuel is considered as one of the most promising sources of alternative energy because it is sustainable and does not pose threats to the environment and food security. However, attempts in improving microalgal strains to attain the ideal characteristics for biofuel application are yet to unravel. In this study, random UV-C mutagenesis was employed to generate starch-deficient mutants of indigenous to enhance its productivity. Out of 872 colonies, two isolated mutants (cvm5 and cvm6) were isolated and showed significant increase in cell concentrations by > 1.47-fold and > 1.04-fold, respectively. However, mutant cells exhibited smaller in size which might contributed to the significant decrease in their biomass. Moreover, gathered data revealed that the total lipid content of cvm5 was enhanced significantly (75%, > 1.3-fold increase). Additionally, triacylglycerol (TAG) content of the said mutant constitutes 48% of the dry cell weight (DCW) while cvm6 consist of 41% of the DCW. These promising and novel findings suggest that the two generated and isolated mutants are good candidates for future commercial biofuel production, especially in the Philippines. In addition, these findings may contribute on the prior knowledge of the usage of UV-C for microalgal strain development.

摘要

基于微藻的生物燃料被认为是最有前途的替代能源之一,因为它具有可持续性,不会对环境和粮食安全构成威胁。然而,为获得生物燃料应用的理想特性而对微藻菌株进行改良的尝试尚未取得成果。在本研究中,采用随机紫外线-C诱变来产生本地淀粉缺陷型突变体,以提高其生产力。在872个菌落中,分离出两个突变体(cvm5和cvm6),其细胞浓度分别显著增加了1.47倍以上和1.04倍以上。然而,突变体细胞尺寸较小,这可能导致其生物量显著下降。此外,收集的数据显示,cvm5的总脂质含量显著提高(75%,增加了1.3倍以上)。此外,该突变体的三酰甘油(TAG)含量占干细胞重量(DCW)的48%,而cvm6占DCW的41%。这些有前景的新发现表明,这两个产生并分离出的突变体是未来商业生物燃料生产的良好候选者,尤其是在菲律宾。此外,这些发现可能有助于丰富紫外线-C用于微藻菌株开发的现有知识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cd95/8723916/55b1401d73ff/10668_2021_2091_Fig1_HTML.jpg

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