Department of Microbiology and Cell Science, Space Life Sciences Lab, University of Florida, Merritt Island, Florida, USA.
Environ Microbiol. 2023 Dec;25(12):3269-3279. doi: 10.1111/1462-2920.16522. Epub 2023 Oct 12.
Perturbations to host-microbe interactions, such as environmental stress, can alter and disrupt homeostasis. In this study, we examined the effects of a stressor, simulated microgravity, on beneficial bacteria behaviours when colonising their host. We studied the bacterium Vibrio fischeri, which establishes a mutualistic association in a symbiosis-specific organ within the bobtail squid, Euprymna scolopes. To elucidate how animal-microbe interactions are affected by the stress of microgravity, squid were inoculated with different bacterial strains exhibiting either a dominant- or sharing-colonisation behaviour in High Aspect Ratio Vessels, which simulate the low-shear environment of microgravity. The colonisation behaviours of the sharing and dominant strains under modelled microgravity conditions were determined by counting light-organ homogenate of squids as well as confocal microscopy to assess the partitioning of different strains within the light organ. The results indicated that although the colonisation behaviours of the strains did not change, the population levels of the sharing strains were at lower relative abundance in single-colonised animals exposed to modelled microgravity compared to unit gravity; in addition, there were shifts in the relative abundance of strains in co-colonised squids. Together these results suggest that the initiation of beneficial interactions between microbes and animals can be altered by environmental stress, such as simulated microgravity.
宿主-微生物相互作用的干扰,如环境压力,会改变和破坏体内平衡。在这项研究中,我们研究了应激源,模拟微重力,对定植宿主时有益细菌行为的影响。我们研究了细菌 Vibrio fischeri,它在 Bobtail Squid Euprymna scolopes 的一个共生特定器官中建立了一种互利共生关系。为了阐明动物-微生物相互作用如何受到微重力应激的影响,用不同的细菌菌株感染鱿鱼,这些菌株在高宽比容器中表现出主导定植或共享定植行为,这些容器模拟了微重力的低剪切环境。通过对鱿鱼的光器官匀浆进行计数以及共聚焦显微镜来评估不同菌株在光器官内的分区,来确定共享和主导菌株在模拟微重力条件下的定植行为。结果表明,尽管菌株的定植行为没有改变,但与单定植动物在模拟微重力下相比,共享菌株的种群水平在单位重力下相对丰度较低;此外,共定植鱿鱼中菌株的相对丰度也发生了变化。这些结果表明,环境压力,如模拟微重力,可能会改变微生物和动物之间有益相互作用的启动。