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Combined effects of simulated microgravity and multistrain interactions on population dynamics of a constructed microbial community

机译:模拟微匍匐与多气体相互作用对构建微生物群落种群动态的综合影响

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Microgravity elicits different responses from various microorganisms and may alter the population dynamics of a microbial community. Four isolates from a hydroponic study were combined in experimental communities cultured in 50-mL high aspect-ratio rotating-wall vessel bioreactors (HARVs) for 10 days under either simulated microgravity (SMG) or control (1.004×g) conditions. Pseudomonas azelaica maintained a population density just above 1×10~9 CFU/mL in all treatments, but exhibited an increased percentage of a crinkled colony morphology in SMG. Abundance of Rhodotorula rubra was unaffected by either SMG or a 4-strain mixed culture environment alone; however, in a 4-strain community cultured under SMG, density of R. rubra dropped by more than two orders of magnitude. Interactive effects between SMG and presence of Pseudomonas seemed to inhibit growth of R. rubra. These interactive effects were not predictable from separate study of the components of the system. Examination of microbial interactions in microgravity is required for long-term control of hazardous microbes or maintenance of necessary microbes during extended space missions.
机译:微重力引起的各种微生物不同的响应,可以改变微生物群落的动态。从水耕研究4株混合在50-mL的培养实验社区高纵横比旋转壁容器生物反应器(HARVs)对于任一模拟失重(SMG)或控制下的10天(1.004×G)的条件。假单胞菌azelaica保持刚好高于1×10 -9 CFU / mL的人口密度在所有治疗方法,但表现出SMG一个皱菌落形态的增加的百分比。深红酵母的丰度为通过任一SMG或单独的4菌株混合培养环境的影响;然而,在SMG下培养的4 - 应变社区,R.杨梅的密度下降幅度超过两个数量级。似乎R.杨梅的抑制生长SMG和假单胞菌的存在之间的交互的效果。这些交互式效果不从系统的组件的另一项研究预测的。在微重力微生物相互作用的检查需要在延长的空间任务有害微生物或微生物所需的维护的长期控制。

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