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首页> 外文期刊>Applied Microbiology >Mechanism of Algal Aggregation by Bacillus sp. Strain RP1137
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Mechanism of Algal Aggregation by Bacillus sp. Strain RP1137

机译:芽孢杆菌的藻类聚集机制。菌株RP1137

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Alga-derived biofuels are one of the best alternatives for economically replacing liquid fossil fuels with a fungible renewable energy source. Production of fuel from algae is technically feasible but not yet economically viable. Harvest of dilute algal biomass from the surrounding water remains one of the largest barriers to economic production of algal biofuel. We identified Bacillus sp. strain RP1137 in a previous study and showed that this strain can rapidly aggregate several biofuel-producing algae in a pH- and divalent-cation-dependent manner. In this study, we further characterized the mechanism of algal aggregation by RP1137. We show that aggregation of both algae and bacteria is optimal in the exponential phase of growth and that the density of ionizable residues on the RP1137 cell surface changes with growth stage. Aggregation likely occurs via charge neutralization with calcium ions at the cell surface of both algae and bacteria. We show that charge neutralization occurs at least in part through binding of calcium to negatively charged teichoic acid residues. The addition of calcium also renders both algae and bacteria more able to bind to hydrophobic beads, suggesting that aggregation may occur through hydrophobic interactions. Knowledge of the aggregation mechanism may enable engineering of RP1137 to obtain more efficient algal harvesting.
机译:藻类衍生的生物燃料是用可替代的可再生能源经济替代液态化石燃料的最佳替代品之一。从藻类生产燃料在技术上是可行的,但在经济上尚不可行。从周围水中收获稀藻类生物质仍然是藻类生物燃料经济生产的最大障碍之一。我们鉴定了芽孢杆菌。以前的研究中发现了该菌株RP1137,并表明该菌株可以以pH和二价阳离子依赖性方式快速聚集几种生物燃料生产藻类。在这项研究中,我们进一步表征了RP1137引起的藻类聚集机制。我们显示藻类和细菌的聚集在生长的指数阶段是最佳的,并且RP1137细胞表面上可电离残基的密度随生长阶段而变化。聚集可能通过藻类和细菌的细胞表面上的钙离子中和电荷而发生。我们表明,电荷中和至少部分是通过钙与带负电荷的硫磷酸残基的结合而发生的。钙的添加还使藻类和细菌都更能够结合疏水珠,这表明聚集可通过疏水相互作用发生。聚集机制的知识可以使RP1137的工程设计获得更有效的藻类收获。

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