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Diversity, Productivity, and Stability of an Industrial Microbial Ecosystem

机译:工业微生物生态系统的多样性,生产率和稳定性

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Managing ecosystems to maintain biodiversity may be one approach to ensuring their dynamic stability, productivity, and delivery of vital services. The applicability of this approach to industrial ecosystems that harness the metabolic activities of microbes has been proposed but has never been tested at relevant scales. We used a tag-sequencing approach with bacterial small subunit rRNA (16S) genes and eukaryotic internal transcribed spacer 2 (ITS2) to measuring the taxonomic composition and diversity of bacteria and eukaryotes in an open pond managed for bioenergy production by microalgae over a year. Periods of high eukaryotic diversity were associated with high and more-stable biomass productivity. In addition, bacterial diversity and eukaryotic diversity were inversely correlated over time, possibly due to their opposite responses to temperature. The results indicate that maintaining diverse communities may be essential to engineering stable and productive bioenergy ecosystems using microorganisms.
机译:管理生态系统以维持生物多样性可能是确保其动态稳定性,生产力和重要服务交付的一种方法。已经提出了这种方法对利用微生物的代谢活性的工业生态系统的适用性,但是从未在相关规模上进行过测试。我们使用带有细菌小亚单位rRNA(16S)基因和真核内部转录间隔区2(ITS2)的标签测序方法来测量开放池中细菌和真核生物的分类学组成以及多样性,该池可管理一年以上的微藻生物能源生产。真核生物多样性高的时期与高和更稳定的生物量生产力有关。另外,细菌多样性和真核生物多样性随着时间呈负相关,这可能是由于它们对温度的相反反应。结果表明,维持多样性社区对于利用微生物工程设计稳定和生产性的生物能源生态系统可能至关重要。

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