Department of Oral Biology, Rutgers School of Dental Medicine, Newark, New Jersey, USA.
Appl Environ Microbiol. 2013 Sep;79(17):5264-71. doi: 10.1128/AEM.01193-13. Epub 2013 Jun 28.
Bdellovibrio bacteriovorus and Micavibrio aeruginosavorus are Gram-negative bacteria characterized by predatory behavior. The aim of this study was to evaluate the ability of the predators to prey in different oxygen environments. When placed on an orbital shaker, a positive association between the rate of aeration and predation was observed. To further examine the effects of elevated ambient oxygen levels on predation, a simple gasbag system was developed. Using the system, we were able to conduct experiments at ambient oxygen levels of 3% to 86%. When placed in gasbags and inflated with air, 50% O2, and 100% O2, positive predation was seen on both planktonic and biofilm-grown prey cells. However, in low-oxygen environments, predatory bacteria were able to attack only prey cells grown as biofilms. To further evaluate the gasbag system, biofilm development of Gram-positive and Gram-negative microorganisms was also measured. Although the gasbag system was found to be suitable for culturing bacteria that require a low-oxygen environment, it was not capable of supporting, with its current configuration, the growth of obligate anaerobes in liquid or agar medium.
蛭弧菌和噬藻菌是具有捕食行为的革兰氏阴性细菌。本研究旨在评估捕食者在不同氧气环境中的捕食能力。当放在摇床上时,发现通气率与捕食之间呈正相关。为了进一步研究环境氧气水平升高对捕食的影响,开发了一种简单的气囊系统。使用该系统,我们能够在环境氧气水平为 3%至 86%的条件下进行实验。当将其放置在气囊中并充气为空气、50%O2 和 100%O2 时,在浮游生物和生物膜生长的猎物细胞上都观察到了积极的捕食作用。然而,在低氧环境中,捕食细菌只能攻击生物膜生长的猎物细胞。为了进一步评估气囊系统,还测量了革兰氏阳性和革兰氏阴性微生物的生物膜发育。尽管发现气囊系统适合培养需要低氧环境的细菌,但在其当前配置下,它不能支持在液体或琼脂培养基中生长的专性厌氧菌。