耐盐产电菌Shewanella algae的代谢工程改造及产电条件优化OA
Metabolic Engineering Modification and Electricity Production Condition Optimization of Salt-Tolerant Electricigen Shewanella Algae
产电菌是一类具有胞外电子转移能力的微生物,能够通过自身代谢将有机物中储存的化学能转化为电能.已有研究表明可将产电菌作为催化剂构造微生物燃料电池.然而,微生物燃料电池产电性能不佳仍是当前面临的关键瓶颈.本研究基于一种耐盐产电菌Shewanella algae,通过CRISPRa 技术调控产电菌胞外电子代谢途径中 pflb 和 mdh 基因的表达,增加产电菌产电强度.同时优化产电环境,在燃料电池的双极室中添加表面活性剂或电子中介体,从而增强电子传递.结果表明,pflb 和 mdh 基因的过表达分别使电流密度增加了3.51%和14.17%.而使用 Tween-80 等表面活性剂使电流密度增加约 20%~40%.这些结果表明电子转移的增加或者电子代谢的增加都可增加产电强度,为进一步优化改造耐盐产电菌 Shewanella algae提供了依据.
Electricigens are a type of microorganism with extracellular electron transfer ability,which can convert stored chemical energy in organic matter into electrical energy through their own metabolism.Previous studies have shown that electricigens can be used as catalysts to construct microbial fuel cells(MFCs).However,low electricity production remains the most urgent issue for electricigens.This study is based on a salt-tolerant electricigen,Shewanella algae,and uses CRISPRa technology to regulate the expression of pflb and mdh genes in the extracellular electron metabolism pathway,thereby enhancing the ability to produce electricity.Simultaneously,we aim to optimize power generation conditions of Shewanella algae by adding surfactants or electron mediators in the bipolar chamber of fuel cells to enhance electron transfer.The results show that overexpression of pflb and mdh genes increases the current density by 3.51%and 14.17%,respectively.The use of surfactants such as Tween-80 increases the current density by approximately 20%-40%.These results indicate that an increase in extracellular electron transfer or electron metabolism can increase power generation,providing a basis for further optimization and transformation of salt-tolerant electricigen Shewanella algae.
刘思涵;曹家宝;肖与和;闻楚函;徐志杰;张云龙
东华大学 生物与医学工程学院,上海 201620东华大学 生物与医学工程学院,上海 201620东华大学 生物与医学工程学院,上海 201620东华大学 生物与医学工程学院,上海 201620东华大学 生物与医学工程学院,上海 201620东华大学 生物与医学工程学院,上海 201620
生物科学
Shewanella algae代谢工程微生物燃料电池表面活性剂电子中介体
Shewanella algaemetabolic engineeringmicrobial fuel cell(MFC)surfactantelectron mediator
《东华大学学报(英文版)》 2026 (3)
142-150,9
Innovation and Entrepreneurship Training Program for College Students,China(Nos.202210255065 and 117-03-0178012/017)
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