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一种用于以平板形式筛选光合微生物的自动化高通量照明系统。

An automated high-throughput lighting system for screening photosynthetic microorganisms in plate-based formats.

作者信息

Noonan Avery J C, Cameron Paula M N, Dofher Kalen, Sukkasam Nannaphat, Liu Tony, Rönn Lucas, Monshupanee Tanakarn, Hallam Steven J

机构信息

Genome Science and Technology Program, University of British Columbia, Vancouver, BC, Canada.

Life Sciences Institute, University of British Columbia, Vancouver, BC, Canada.

出版信息

Commun Biol. 2025 Mar 14;8(1):438. doi: 10.1038/s42003-025-07853-y.

Abstract

The capacity of photosynthetic microorganisms to fix carbon dioxide into biomass positions them as promising cell factories for sustainable biomanufacturing. However, limitations in screening throughput hinder the identification of enzymes, strains, and growth conditions needed to realize this potential. Here we present a microplate-based high-throughput cultivation system that can be integrated into existing automation infrastructure and supports growth of both prokaryotic and eukaryotic photosynthetic microorganisms. We validate this system by optimizing BG-11 medium compositions for Synechococcus elongatus UTEX 2973, Chlamydomonas reinhardtii UTEX 90 and Nostoc hatei CUBC1040, resulting in growth rates increases of 38.4% to 61.6%. We also identify small molecules that influence growth rates in Synechococcus elongatus UTEX 2973, including candidate compounds for growth rate increase and dozens that prevent growth. The sensitivity, throughput, and extensibility of this system support screening, strain isolation, and growth optimization needed for the development of photosynthetic microbial cell factories.

摘要

光合微生物将二氧化碳固定为生物质的能力使其成为可持续生物制造中有前景的细胞工厂。然而,筛选通量的限制阻碍了实现这一潜力所需的酶、菌株和生长条件的鉴定。在此,我们展示了一种基于微孔板的高通量培养系统,该系统可集成到现有的自动化基础设施中,并支持原核和真核光合微生物的生长。我们通过优化聚球藻UTEX 2973、莱茵衣藻UTEX 90和哈氏念珠藻CUBC1040的BG-11培养基成分来验证该系统,从而使生长速率提高了38.4%至61.6%。我们还鉴定了影响聚球藻UTEX 2973生长速率的小分子,包括生长速率增加的候选化合物以及数十种抑制生长的化合物。该系统的灵敏度、通量和可扩展性支持光合微生物细胞工厂开发所需的筛选、菌株分离和生长优化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0181/11909208/4785f5b5608e/42003_2025_7853_Fig1_HTML.jpg

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