Mora Maximilian, Bellack Annett, Ugele Matthias, Hopf Johann, Wirth Reinhard
Institute of Microbiology and Archaea-Centre, University of Regensburg, Regensburg, Germany.
Electronic Workshop at the Faculty of Biology, University of Regensburg, Regensburg, Germany.
Appl Environ Microbiol. 2014 Aug;80(15):4764-70. doi: 10.1128/AEM.00984-14. Epub 2014 May 23.
To date, the behavior of hyperthermophilic microorganisms in their biotope has been studied only to a limited degree; this is especially true for motility. One reason for this lack of knowledge is the requirement for high-temperature microscopy-combined, in most cases, with the need for observations under strictly anaerobic conditions-for such studies. We have developed a custom-made, low-budget device that, for the first time, allows analyses in temperature gradients up to 40°C over a distance of just 2 cm (a biotope-relevant distance) with heating rates up to ∼5°C/s. Our temperature gradient-forming device can convert any upright light microscope into one that works at temperatures as high as 110°C. Data obtained by use of this apparatus show how very well hyperthermophiles are adapted to their biotope: they can react within seconds to elevated temperatures by starting motility-even after 9 months of storage in the cold. Using the temperature gradient-forming device, we determined the temperature ranges for swimming, and the swimming speeds, of 15 selected species of the genus Thermococcus within a few months, related these findings to the presence of cell surface appendages, and obtained the first evidence for thermotaxis in Archaea.
迄今为止,嗜热微生物在其生物群落中的行为仅得到了有限的研究;在运动性方面尤其如此。缺乏相关知识的一个原因是,此类研究需要高温显微镜,而且在大多数情况下,还需要在严格厌氧条件下进行观察。我们开发了一种定制的低成本设备,该设备首次能够在仅2厘米(与生物群落相关的距离)的范围内形成高达40°C的温度梯度进行分析,加热速率高达约5°C/秒。我们的温度梯度形成设备可以将任何直立式光学显微镜转变为可在高达110°C的温度下工作的显微镜。使用该仪器获得的数据表明嗜热菌对其生物群落的适应程度非常高:即使在低温下储存9个月后,它们也能在几秒钟内通过启动运动对温度升高做出反应。通过使用温度梯度形成设备,我们在几个月内确定了15种选定的嗜热栖热菌属物种的游动温度范围和游动速度,将这些发现与细胞表面附属物的存在联系起来,并获得了古菌中存在趋温性的首个证据。