Fujian Provincial Key Laboratory of Soil Environmental Health and Regulation, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
School of Environmental Science and Engineering, Guangdong University of Technology, Guangzhou, 510006, China.
Biosens Bioelectron. 2019 Dec 15;146:111748. doi: 10.1016/j.bios.2019.111748. Epub 2019 Sep 30.
Flagella are widely expressed in electroactive biofilms; however, their actual role is unknown. To understand the role of flagella, two Geobacter sulfurreducens strains (KN400 and PCA, with and without flagella, respectively) were selected. We restored flagellum expression in trans in strain PCA and prevented flagellum expression in strain KN400. Electrochemical results showed that flagellum restoration in strain PCA promoted current generation, while flagellum deletion in strain KN400 impaired current production. However, the expression of conductive pili and outer surface c-type cytochromes was not affected. Further microscopic analyses demonstrated that flagella promoted the formation of thicker biofilms and served as biofilm matrix scaffolds to accommodate more extracellular cytochromes with an orderly arrangement, which increased the electron diffusion rate within the biofilm. Our findings reveal an unprecedented structural role for flagella in stabilizing electroactive biofilms and highlight the importance of cytochromes in electron transfer across biofilms, which will deepen our understanding of biofilm conductivity.
鞭毛广泛存在于电活性生物膜中,但它们的实际作用尚不清楚。为了了解鞭毛的作用,选择了两种脱硫弧菌(GN400 和 PCA,分别带有和不带有鞭毛)。我们在 PCA 菌株中转基因恢复了鞭毛的表达,并阻止了 KN400 菌株中鞭毛的表达。电化学结果表明,PCA 菌株中鞭毛的恢复促进了电流的产生,而 KN400 菌株中鞭毛的缺失则损害了电流的产生。然而,导电菌毛和外表面 c 型细胞色素的表达不受影响。进一步的微观分析表明,鞭毛促进了更厚的生物膜的形成,并作为生物膜基质支架来容纳更多排列有序的细胞外细胞色素,从而提高了生物膜内的电子扩散速率。我们的发现揭示了鞭毛在稳定电活性生物膜方面的前所未有的结构作用,并强调了细胞色素在生物膜间电子传递中的重要性,这将加深我们对生物膜导电性的理解。