Darwin Bioprospecting Excellence S.L., Calle Catedrático Agustín Escardino 9, Paterna, 46980, Spain.
Institute for Integrative Systems Biology I2SysBio, University of Valencia - CSIC, Catedrático José Beltrán 2, Paterna, 46980, Spain.
Microb Biotechnol. 2020 Nov;13(6):1819-1830. doi: 10.1111/1751-7915.13620. Epub 2020 Jul 1.
Solar panel surfaces can be colonized by microorganisms adapted to desiccation, temperature fluctuations and solar radiation. Although the taxonomic and functional composition of these communities has been studied, the microbial colonization process remains unclear. In the present work, we have monitored this microbial colonization process during 24 months by performing weekly measurements of the photovoltaic efficiency, carrying out 16S rRNA gene high-throughput sequencing, and studying the effect of antimicrobial compounds on the composition of the microbial biocenosis. This is the first time a long-term study of the colonization process of solar panels has been performed, and our results reveal that species richness and biodiversity exhibit seasonal fluctuations and that there is a trend towards an increase or decrease of specialist (solar panel-adapted) and generalist taxa, respectively. On the former, extremophilic bacterial genera Deinococcus, Hymenobacter and Roseomonas and fungal Neocatenulostroma, Symmetrospora and Sporobolomyces tended to dominate the biocenosis; whereas Lactobacillus sp or Stemphyllium exhibited a decreasing trend. This profile was deeply altered by washing the panels with chemical agents (Virkon), but this did not lead to an increase of the solar panels efficiency. Our results show that solar panels are extreme environments that force the selection of a particular microbial community.
太阳能电池板表面可能会被适应干燥、温度波动和太阳辐射的微生物所占据。虽然这些群落的分类和功能组成已经被研究过,但微生物的定殖过程仍然不清楚。在本工作中,我们通过每周测量光伏效率、进行 16S rRNA 基因高通量测序,并研究抗菌化合物对微生物生物群落组成的影响,来监测这一微生物定殖过程,历时 24 个月。这是首次对太阳能电池板的定殖过程进行长期研究,我们的结果表明,物种丰富度和生物多样性呈现季节性波动,并且存在着专门(适应太阳能电池板)和普通物种分别增加或减少的趋势。在前者中,极端细菌属 Deinococcus、Hymenobacter 和 Roseomonas 以及真菌 Neocatenulostroma、Symmetrospora 和 Sporobolomyces 往往占据生物群落的主导地位;而 Lactobacillus sp 或 Stemphyllium 则呈下降趋势。用化学剂(Virkon)清洗电池板会使这种情况发生深刻变化,但这并没有导致太阳能电池板效率的提高。我们的结果表明,太阳能电池板是极端环境,迫使特定微生物群落的选择。