New Mexico Consortium, 4200 W. Jemez Road, Los Alamos, NM 87544, USA.
Los Alamos National Laboratory, P.O. Box 1663, Los Alamos, NM 87545, USA.
Biotechnol Adv. 2022 Nov;60:108034. doi: 10.1016/j.biotechadv.2022.108034. Epub 2022 Sep 9.
Microalgae are increasingly used to generate a wide range of commercial products, and there is growing evidence that microalgae-based products can be produced sustainably. However, industrial production of microalgal biomass is not as developed as other biomanufacturing platform technologies. In addition, results of bench-scale research often fail to translate to large-scale or mass production systems. This disconnect may result from trait drift and evolution occurring, through time, in response to unique drivers in each environment, such as cultivation regimes, weather, and pests. Moreover, outdoor and indoor cultivation of microalgae has the potential to impose negative selection pressures, which makes the maintenance of desired traits a challenge. In this context, this review sheds the light on our current understanding of trait drift and evolution in microalgae. We delineate the basics of phenotype plasticity and evolution, with a focus on how microalgae respond under various conditions. In addition, we review techniques that exploit phenotypic plasticity and evolution for strain improvement in view of industrial commercial applications, highlighting associated advantages and shortcomings. Finally, we suggest future research directions and recommendations to overcome unwanted trait drift and evolution in microalgae cultivation.
微藻被越来越多地用于生产各种商业产品,越来越多的证据表明,基于微藻的产品可以可持续地生产。然而,微藻生物质的工业生产还不如其他生物制造平台技术发达。此外,实验室规模的研究结果往往无法转化为大规模或大规模生产系统。这种脱节可能是由于随着时间的推移,在每个环境中独特的驱动因素(如培养制度、天气和害虫)的作用下,发生了性状漂移和进化。此外,微藻的室外和室内培养有可能施加负选择压力,这使得保持所需特性成为一项挑战。在这种情况下,本综述阐明了我们目前对微藻中性状漂移和进化的理解。我们阐述了表型可塑性和进化的基础,重点介绍了微藻在各种条件下的反应。此外,我们还回顾了利用表型可塑性和进化来改进工业商业应用菌株的技术,强调了相关的优点和缺点。最后,我们提出了未来的研究方向和建议,以克服微藻培养中不希望的性状漂移和进化。