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Reliability and resilience of populations and metabolic functions within defined microbial communities in biological reactors

机译:生物反应器中定义的微生物群落中群体的可靠性和韧性和代谢功能

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Bioregenerative components for advanced life support (ALS) systems will need to be reliable and stable for long-duration space travel. To examine the stability and resilience of microbial communities that recover nutrients from inedible wheat residues, we maintained 4 bacterial strains in mixed communities for 7 weeks. After 3 weeks of incubation, aeration was stopped for several days. Although the abundance of each isolate declined during the perturbation, all strains persisted throughout the experiments. However, only 80% of functions lost during perturbation were recovered afterward. Thus persistence of strains in a community did not guarantee the persistence of metabolic functions which those strains could perform. Niche partitioning of the heterogenous molecules in the wheat residue apparently contributed to stable coexistence of the 4 strains. A different community, composed of 4 isolates from a hydroponic study grown under either simulated microgravity or 1xg control conditions in a comparatively homogenous 1/2-TSB medium, was less stable. Increased diversity of microbial strains and complexity of the substrates upon which they were maintained seemed to increase the stability of microbial communities in ALS bioreactors.
机译:用于高级寿命支持(ALS)系统的生物根系组件对于长期空间旅行,需要可靠且稳定。为了研究从不可食用的小麦残留物中回收营养素的微生物群落的稳定性和韧性,我们在混合群体中保持了4个细菌菌株7周。孵化3周后,停止曝气数天。虽然在扰动期间每种孤立株的丰度下降,但在整个实验中仍然存在所有菌株。然而,之后只有80%的功能在扰动期间损失的函数之后被恢复。因此,社区中菌株的持续存在并不能保证那些菌株可以表现的代谢功能的持久性。小麦残留物中的异构分子的乳头划分显然有助于4株的稳定共存。由在比较均匀的1/2-TSB培养基中的模拟的微匍匐或1XG控制条件下生长的水培研究的4个分离株组成的不同群体较小。增加了微生物菌株的多样性和底物的复杂性似乎增加了ALS生物反应器中微生物群落的稳定性。

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