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通过流式细胞术评估野生型和突变型菌株的乙醇耐受性。

Evaluation of the ethanol tolerance for wild and mutant strains by flow cytometry.

作者信息

Lopes da Silva Teresa, Passarinho Paula C, Galriça Ricardo, Zenóglio Afonso, Armshaw Patricia, Pembroke J Tony, Sheahan Con, Reis Alberto, Gírio Francisco

机构信息

Laboratório Nacional de Energia e Geologia, I.P., Unidade de Bioenergia, Estrada do Paço do Lumiar 22, 1649-038, Lisbon, Portugal.

Bernal Institute, Department of Chemical Sciences, School of Natural Sciences University of Limerick, Ireland.

出版信息

Biotechnol Rep (Amst). 2018 Feb 15;17:137-147. doi: 10.1016/j.btre.2018.02.005. eCollection 2018 Mar.

Abstract

Flow cytometry was used to evaluate the effect of initial ethanol concentrations on cyanobacterial strains of PCC 6803 [wild-type (WT), and ethanol producing recombinants (UL 004 and UL 030)] in batch cultures. Ethanol recombinants, containing one or two metabolically engineered cassettes, were designed towards the development of an economically competitive process for the direct production of bioethanol from microalgae through an exclusive autotrophic route. It can be concluded that the recombinant UL 030 containing two copies of the genes per genome was the most tolerant to ethanol. Nevertheless, to implement a production process using recombinant strains, the bioethanol produced will be required to be continuously extracted from the culture media via a membrane-based technological process for example to prevent detrimental effects on the biomass. The results presented here are of significance in defining the maximum threshold for bulk ethanol concentration in production media.

摘要

采用流式细胞术评估了初始乙醇浓度对集胞藻PCC 6803[野生型(WT)和产乙醇重组体(UL 004和UL 030)]分批培养菌株的影响。含一个或两个代谢工程盒的乙醇重组体旨在开发一种经济上有竞争力的工艺,通过独特的自养途径直接从微藻生产生物乙醇。可以得出结论,每个基因组含有两个基因拷贝的重组体UL 030对乙醇的耐受性最强。然而,要使用重组菌株实施生产过程,例如需要通过基于膜的技术工艺从培养基中连续提取产生的生物乙醇,以防止对生物质产生有害影响。此处给出的结果对于确定生产培养基中大量乙醇浓度的最大阈值具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9633/5856660/39c681f0d1f3/gr1.jpg

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