Cawthron Institute, Private Bag 2, Nelson, 7001, New Zealand.
AMB Express. 2011 Jul 18;1(1):19. doi: 10.1186/2191-0855-1-19.
Benthic species of algae and cyanobacteria (i.e., those that grow on surfaces), may provide potential advantages over planktonic species for some commercial-scale biotechnological applications. A multitude of different designs of photobioreactor (PBR) are available for growing planktonic species but to date there has been little research on PBR for benthic algae or cyanobacteria. One notable advantage of some benthic cyanobacterial species is that during their growth cycle they become positively buoyant, detach from the growth surface and form floating mats. This 'self-harvesting' capability could be advantageous in commercial PBRs as it would greatly reduce dewatering costs. In this study we compared the growth rates and efficiency of 'self-harvesting' among three species of benthic cyanobacteria; Phormidium autumnale; Phormidium murrayi and Planktothrix sp.. Phormidium autumnale produced the greatest biomass and formed cohesive mats once detached. Using this strain and an optimised MLA media, a variety of geometries of benthic PBRs (bPBRs) were trialed. The geometry and composition of growth surface had a marked effect on cyanobacterial growth. The highest biomass was achieved in a bPBR comprising of a vertical polyethylene bag with loops of silicone tubing to provide additional growth surfaces. The productivity achieved in this bPBR was a similar order of magnitude as planktonic species, with the additional advantage that towards the end of the exponential phase the bulk of the biomass detached forming a dense mat at the surface of the medium.
底栖藻类和蓝细菌(即生长在表面的物种)可能为一些商业规模的生物技术应用提供比浮游物种更有潜力的优势。有多种不同设计的光生物反应器(PBR)可用于培养浮游物种,但迄今为止,对于底栖藻类或蓝细菌的 PBR 研究甚少。一些底栖蓝细菌物种的一个显著优势是,在它们的生长周期中,它们变得具有正浮力,从生长表面脱离并形成漂浮垫。这种“自我收获”能力在商业 PBR 中可能是有利的,因为它将大大降低脱水成本。在这项研究中,我们比较了三种底栖蓝细菌——秋 Phormidium 、 Murrayi Phormidium 和 Planktothrix sp.——的生长速度和自我收获效率。秋 Phormidium 产生的生物量最大,一旦脱离就会形成有凝聚力的垫。使用这种菌株和优化的 MLA 培养基,我们尝试了各种底栖 PBR(bPBR)的几何形状。生长表面的几何形状和组成对蓝细菌的生长有显著影响。在一个由垂直聚乙烯袋和硅酮管环组成的 bPBR 中,获得了最高的生物量。在这个 bPBR 中实现的生产力与浮游物种相当,其额外的优势在于指数期结束时,大部分生物量脱离形成密集的垫,位于介质表面。