Group of Atmospheric Science, Department of Computer Science, Electrical and Space Engineering, Luleå University of Technology, 97187 Luleå, Sweden.
Centro de Astrobiología (CSIC-INTA), Torrejon de Ardoz, 28850 Madrid, Spain.
Sensors (Basel). 2020 Aug 11;20(16):4479. doi: 10.3390/s20164479.
Metabolt is a portable soil incubator to characterize the metabolic activity of microbial ecosystems in soils. It measures the electrical conductivity, the redox potential, and the concentration of certain metabolism-related gases in the headspace just above a given sample of regolith. In its current design, the overall weight of Metabolt, including the soils (250 g), is 1.9 kg with a maximum power consumption of 1.5 W. Metabolt has been designed to monitor the activity of the soil microbiome for Earth and space applications. In particular, it can be used to monitor the health of soils, the atmospheric-regolith fixation, and release of gaseous species such as N, HO, CO, O, NO, NH, etc., that affect the Earth climate and atmospheric chemistry. It may be used to detect and monitor life signatures in soils, treated or untreated, as well as in controlled environments like greenhouse facilities in space, laboratory research environments like anaerobic chambers, or simulating facilities with different atmospheres and pressures. To illustrate its operation, we tested the instrument with sub-arctic soil samples at Earth environmental conditions under three different conditions: (i) no treatment (unperturbed); (ii) sterilized soil: after heating at 125 °C for 35.4 h (thermal stress); (iii) stressed soil: after adding 25% CaCl brine (osmotic stress); with and without addition of 0.5% glucose solution (for control). All the samples showed some distinguishable metabolic response, however there was a time delay on its appearance which depends on the treatment applied to the samples: 80 h for thermal stress without glucose, 59 h with glucose; 36 h for osmotic stress with glucose and no significant reactivation in the pure water case. This instrument shows that, over time, there is a clear observable footprint of the electrochemical signatures in the redox profile which is complementary to the gaseous footprint of the metabolic activity through respiration.
Metabolt 是一种便携式土壤培养箱,用于描述土壤中微生物生态系统的代谢活性。它测量电导率、氧化还原电位和特定代谢相关气体在给定风化层样本上方的顶空浓度。在当前设计中,Metabolt 及其土壤(250 克)的总重量为 1.9 公斤,最大功耗为 1.5 瓦。Metabolt 旨在监测地球和太空应用中土壤微生物组的活性。特别是,它可用于监测土壤健康状况、大气-风化层固定和释放气态物质,如 N、HO、CO、O、NO、NH 等,这些物质会影响地球气候和大气化学。它可用于检测和监测土壤中的生命特征,无论是处理过的还是未处理的,以及在类似温室设施的太空受控环境、类似厌氧室的实验室研究环境中,或在具有不同大气和压力的模拟设施中。为了说明其操作,我们在地球环境条件下,用三种不同的条件(i)未处理(未扰动);(ii)灭菌土壤:在 125°C 下加热 35.4 小时(热应激);(iii)胁迫土壤:添加 25%CaCl 盐水(渗透胁迫);有无添加 0.5%葡萄糖溶液(对照),用亚北极土壤样本测试了该仪器。所有样本均表现出一些可区分的代谢反应,然而,代谢反应的出现存在时间延迟,这取决于施加于样本的处理方式:无葡萄糖的热应激 80 小时,有葡萄糖 59 小时;有葡萄糖的渗透胁迫 36 小时,纯水情况下无明显再激活。该仪器表明,随着时间的推移,在氧化还原谱中电化学特征会留下清晰可观察的痕迹,这与通过呼吸作用产生的代谢活动的气态特征相辅相成。